All (12923)
Notes (10000)
note
Minimal Pairs
Updated 437d ago
0.0(0)
note
Minimal Transcript: "Ok."
Updated 415d ago
0.0(0)
note
Minimal Transcript Note
Updated 357d ago
0.0(0)
note
Minimal Pair Approach
Updated 212d ago
0.0(0)
note
Minimal Transcript Note
Updated 357d ago
0.0(0)
note
Minimal Transcript Analysis
Updated 359d ago
0.0(0)
note
Minimal Transcript Notes
Updated 364d ago
0.0(0)
note
Minimal Transcript Notes
Updated 365d ago
0.0(0)
note
Minimal Transcript: 'Okej.'
Updated 368d ago
0.0(0)
note
Minimal Transcript Notes
Updated 349d ago
0.0(0)
note
periodic-table-minimal
Updated 11d ago
0.0(0)
note
Minimally invasive autopsy
Updated 504d ago
0.0(0)
note
Group 7 Minimalism
Updated 586d ago
0.0(0)
note
Minimal Residual disease
Updated 504d ago
0.0(0)
note
Transcript Notes (Minimal)
Updated 364d ago
0.0(0)
note
Minimal Transcript Notes
Updated 363d ago
0.0(0)
note
Minimal Transcript Analysis
Updated 189d ago
0.0(0)
note
Minimal Transcript Notes
Updated 344d ago
0.0(0)
note
Minimal Transcript Summary
Updated 401d ago
0.0(0)
Flashcards (2783)
flashcards
Mini Review
31
Updated 8h ago
0.0(0)
flashcards
Human Anatomy and Physiology Third Edition Chapter 1 Introduction to Anatomy and Physiology Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Characteristics of Living Organisms (1 of 2) Living Organisms share distinct properties •Cellular Composition—Cells are the smallest units that carry out the functions of life •Metabolism—Living organisms carry out chemical processes collectively called metabolism –“Building” processes are known as Anabolism –“Breaking down” processes are known as Catabolism •Growth—An increase in the size and/or number of cells Loading… Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Characteristics of Living Organisms (2 of 2) Living Organisms share distinct properties (continued) •Excretion—Elimination of potentially harmful waste products created by metabolic processes •Responsiveness or Irritability—Organisms sense and react to changes or stimuli in their environment •Movement—Organisms or individual cells of an organism move •Reproduction—Production of new cells during growth or repair or reproduction of new organisms Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (1 of 7) The body is constructed of a series of progressively larger “building blocks” known as the Structural Levels of Organization •Chemical Level—This is the smallest level; Chemicals range from tiny atoms to complex molecules •Cellular Level—Groups of many different types of molecules combine in specific ways to form cellular structures •Tissue Level—Two or more cell types and material outside them, called extracellular matrix, combine to perform a common function Loading… Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (2 of 7) Structural Levels of Organization (continued) •Organ Level—Two or more tissue types combine to form an organ with a recognizable shape that performs a specialized task •Organ System Level—Two or more organs that together carry out a broad function in the body –The human body has 11 organ systems •Organism Level—The organ systems function together to make up the working human body—an organism Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (3 of 7) Figure 1.5 Six structural levels of organization of the human body. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (4 of 7) Figure 1.6 The 11 organ systems of the human body Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (5 of 7) Figure 1.6 The 11 organ systems of the human body Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (6 of 7) Figure 1.6 The 11 organ systems of the human body Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Levels of Structural Organization and Body Systems (7 of 7) Figure 1.6 The 11 organ systems of the human body Loading… Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Types of Anatomy and Physiology (1 of 2) Study of Anatomy can be approached in several ways •Systemic Anatomy—Examines individual organ systems •Regional Anatomy—Examines the body in regions, such as the head and neck •Surface Anatomy—Examines surface markings •Gross Anatomy—Examines structures that can be seen with the unaided eye •Microscopic Anatomy—Examines cells (Cytology) and tissues (Histology) with the use of a microscope Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.2 Types of Anatomy and Physiology (2 of 2) Study of Physiology includes numerous subfields •Physiology subfields are classified by organ or organ systems, such as neurophysiology and cardiophysiology •Physiologists can also study other structural levels of organization of the body such as chemical, cellular, and tissue levels Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Word Parts •The language of science is built on Word Roots—core components of words with specific meanings •Word roots are combined with Prefixes and Suffixes to yield scientific terms •For example, combine the following: –Prefix an- (means without) –Word root encephala- (means brain) –Suffix -ic (means condition of) •“Anencephalic” is the condition of lacking a part of the brain Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 The Anatomical Position and Directional Terms (1 of 4) Anatomical Position—Common frame of reference from which all body parts and regions are described regardless of position –Body is standing upright –Feet are shoulder width apart –Upper limbs at the sides of trunk –Head and palms facing forward Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 The Anatomical Position and Directional Terms (2 of 4) Directional Terms—Describe the relative locations of body parts and markings to ensure accurate communication among scientists and healthcare professionals •Anterior/Posterior—Anterior refers to the front and posterior refers to the back; Can refer to body as a whole or to a body part •Superior/Inferior—Superior, or cranial, means towards the head and inferior, or caudal, means towards the tail; Used to refer to positions on head, neck, and trunk only Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 The Anatomical Position and Directional Terms (3 of 4) Directional Terms (continued) •Proximal/Distal—Proximal means closer to the point of origin and distal means further from the point of origin; Used to refer to positions on the limbs only •Medial/Lateral—Medial refers to a position closer to the middle line of the body, called the midline, and lateral refers to a position farther away from the midline •Superficial/Deep—Superficial refers to structures closer to the surface of the body and deep refers to structures farther below Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 The Anatomical Position and Directional Terms (4 of 4) Figure 1.7 Directional terms. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Medical Errors •Most medical errors occur when a patient is dispensed the wrong type or dose of medication •Occasionally, they involve surgery and are known as “wrong site” or “wrong body” procedures when the surgeon operates on the wrong part of the body or even the wrong patient •Precise communication with appropriate use of anatomical terminology is critical to prevent medical errors Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (1 of 7) Regional Terms—The body can be divided into two broad regions: Axial (head, neck, and trunk); and Appendicular (upper and lower limbs or appendages) •Each broad region can be divided into several smaller Regions •Regions may be named as nouns, such as the upper arm or brachium, or as adjective with the addition of a suffix such as -al, which is paired with the word “region” to give us the term brachial region Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (2 of 7) Figure 1.8 Regions of the body. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (3 of 7) Figure 1.8 Regions of the body. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (4 of 7) Table 1.1 Regional Terms Region of the Trunk Pertaining To: Abdominal The abdomen Cervical The neck Gluteal The buttocks Inguinal The groin Lumbar The lower back Pelvic The pelvis Pubic The pubis Sacral The sacrum Sternal The sternum Thoracic The chest Vertebral The spinal column Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (5 of 7) Table 1.1 Regional Terms Region of the Head and Face Pertaining To: Buccal The cheek Cranial The skull Cephalic The head Frontal The forehead Mental The chin Nasal The nose Occipital The back of the head Ocular The eye Oral The mouth Otic The ear Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (6 of 7) Table 1.1 Regional Terms Region of the Upper Limb Pertaining To: Acromial The point of the shoulder Antebrachial The forearm Antecubital The anterior surface of the elbow Axillary The armpit Brachial The arm Carpal The wrist Digital The fingers (or toes) Manual The hand Metacarpal The metacarpals (bones of the hand) Palmar The palm Pollex The thumb Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Regional Terms (7 of 7) Table 1.1 Regional Terms Region of the Lower Limb Pertaining To: Coxal The hip Crural The anterior surface of the leg Femoral The thigh Hallux The great toe Metatarsal The metatarsals (bones of the foot) Patellar The anterior surface of the knee Pedal The foot Plantar The sole of the foot Popliteal The posterior surface of the knee Sural The posterior surface of the leg Tarsal The ankle Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Concept Boost: Putting Anatomical Terms Together (1 of 2) 1.Name the Region—Cervical region 2.Add Descriptive Directional Terms— On anterior side, Lateral to midline; Begins inferior to mental region; Ends superior to thoracic region 3.Describe Depth of Incision—Deep to skin and muscle; Superficial to underlying larynx 4.Put It All Together—Incision on anterior cervical region lateral to midline; Extended vertically 1 centimeter inferior to mental region to 2 centimeters superior to thoracic region; Deep to skin and muscle, but superficial to larynx Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Concept Boost: Putting Anatomical Terms Together (2 of 2) 1.Name the Region—Left Crural 2.Add Descriptive Directional Terms— On anterior and medial side; Proximal to tarsal region and distal to patellar region 3.Describe Depth of Incision—Deep to skin and muscle but superficial to bone 4.Put It All Together—Wound on left anteromedial crural region, 10 centimeters proximal to tarsal region and 6 centimeters distal to patellar region; Pellet is lodged deep to skin and muscle but superficial to bone Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Concept Boost Mini Lecture: Putting Anatomical Terms Together Use the link below to view A D A compliant video: Concept Boost Mini Lecture: Putting Anatomical Terms Together https://mediaplayer.pearsoncmg.com/assets/_video.true/bc_amerman_hap_3_concept-boost_ch1 Loading… Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Planes of Section (1 of 4) Planes of Section—Divide a body or body part for examination •Sagittal Plane—Divides body into right and left sections –Midsagittal Plane: Also called a Median Plane; Sections are equal –Parasagittal Plane: Sections are unequal Figure 1.9a Sagittal plane. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Planes of Section (2 of 4) Planes of Section (continued) •Frontal Plane—Also called a Coronal Plane; Divides body into anterior and posterior sections Figure 1.9b Frontal plane. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Planes of Section (3 of 4) Planes of Section (continued) •Transverse Plane— Also called a Horizontal Plane or Cross Section; Divides body into superior and inferior sections or proximal and distal sections •Oblique Plane—Used less frequently; Taken at an angle Figure 1.9c Transverse planes. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.3 Planes of Section (4 of 4) Study Boost: How to Learn Anatomical Terms •Flashcards are popular because research shows that they work –Make customized flashcards with Practice Anatomy Lab™ Flashcards in the Study Area of Mastering® A&P –Make handwritten flashcards •Don’t forget to “Bring It Back” by quizzing yourself and “Mix It Up” by randomizing the order Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Posterior Body Cavity Cavity—Any space within the body; Protects internal organs and allows them to move Posterior Body Cavity— Located on posterior side of body •Cranial Cavity—Within the skull; Includes the brain •Spinal Cavity—Within the vertebral column; Includes the spinal cord •Both cavities are filled with Cerebrospinal Fluid, which bathes both organs Figure 1.10a Posterior body cavity, lateral view. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (1 of 8) Anterior Body Cavity—Has two main divisions separated by the muscular diaphragm •Thoracic Cavity is superior to the diaphragm •Abdominopelvic Cavity is inferior to the diaphragm •Smaller cavities exist within the thoracic and abdominopelvic cavities formed by sheets of tissue termed Serous Membranes Figure 1.10b Anterior body cavity, anterior view. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (2 of 8) Anterior Body Cavity (continued) •Thoracic Cavity –Pleural Cavities—Surround left and right lungs –Mediastinum—Between pleural cavities; Houses heart, great vessels, trachea (windpipe), and esophagus; Not within serous membrane –Pericardial Cavity—Within mediastinum; Within serous membrane that surrounds heart Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (3 of 8) Anterior Body Cavity (continued) •Abdominopelvic Cavity—Subdivided into superior Abdominal Cavity (diaphragm to bony pelvis) and inferior Pelvic Cavity (within bony pelvis) •Contains organs from digestive, lymphatic, urinary, and reproductive systems •Peritoneal Cavity—Abdominal subcavity found within serous membranes Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (4 of 8) Abdominopelvic Cavity can be divided into segments by drawing imaginary lines through its surface •One system divides the cavity into four Quadrants –Right and left upper quadrants (R U Q and L U Q); Right and left lower quadrants (R L Q and L L Q) •A second system divides the cavity into nine Regions –Right and left hypochondriac regions, Right and left lumbar regions; Right and left iliac regions; Epigastric region; Umbilical region; Hypogastric region Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (5 of 8) Figure 1.11 The four quadrants and nine regions of the abdominopelvic cavity. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 Abdominal Pain •Abdominal pain is a common reason for people to seek health care, but the number of structures in the abdominopelvic cavity make diagnoses difficult •The four-quadrant system helps to narrow down potential diagnoses •For example, R L Q pain may be from the appendix, ovaries in female, the first part of the large intestine, or the last portion of the small intestine Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (6 of 8) Serous Membranes—Thin sheets of tissue that fold over to form continuous double-layered structures filled with Serous Fluid to lubricate organs in the cavity –Visceral Layer—Contacts the organ –Parietal Layer—Attaches to surrounding structures Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (7 of 8) Serous Membranes (continued) •Pleural Membranes—Surround the lungs; Includes parietal and visceral pleura •Pericardial Membranes—Surround the heart; Includes parietal and visceral pericardium •Peritoneal Membranes—Surround some abdominal organs (Intraperitoneal); Includes parietal and visceral peritoneum •Organs behind the parietal peritoneum are Retroperitoneal Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 The Anterior Body Cavity (8 of 8) Figure 1.13 The serous membranes of the anterior body cavities. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 Medical Imaging (1 of 2) •Used to look inside patients without surgery; Different forms of radiation form images of internal structures often along specific planes •X-Ray uses ionizing radiation; Chest image is shown (top) •Computed Tomography Scan (C T) uses ionizing radiation; 3-D image is computer generated from data; Transverse section of abdominopelvic and peritoneal cavities is shown (bottom) Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.4 Medical Imaging (2 of 2) •Magnetic Resonance Imaging (M R I) involves the body being placed within a magnetic field; 3-D image is computer generated from data; Transverse section of the abdominopelvic cavity is shown Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Core Principles in Anatomy and Physiology Core Principles—Set of basic concepts of anatomy and physiology that are revisited repeatedly in the text; They are related to maintaining the body’s internal environment •Feedback Loops •Relationship of Structure and Function •Gradients •Cell-Cell Communication Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Overall Theme: Physiological Processes Operate to Maintain the Body’s Homeostasis •Homeostasis—The condition in which the body develops and maintains a relatively stable internal environment –Homeostatic Imbalances—Disturbances in homeostasis can lead to disease or death if uncorrected –Regulated Variables—Variables in the internal environment, such as temperature, blood sugar, and many others, are controlled to stay close to a particular normal value –Controlled Variables—Variables that are manipulated to maintain the regulated variables, such as the process that increases blood sugar from stored carbohydrates Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (1 of 8) Feedback Loops—A change in a regulated variable causes effects that feed back and in turn affect that same variable •Made up of a series of events that lead to an output •As the loops continue, this output then influences the events of the loops themselves •Negative Feedback Loops—Oppose the initial change and reduce the output •Positive Feedback Loops—Reinforce the initial change and increase the output Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (2 of 8) Negative Feedback Loops—Promote stability; Negating any stimulus that moves a variable away from homeostasis •Each variable has a Set Point that includes a Normal Range around that set point •The range differs for individual variables Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (3 of 8) Steps of a Negative Feedback Loop 1.Stimulus—Information that a regulated variable is outside the normal range 2.Receptor or Sensor—Cellular structure that registers the stimulus 3.Control Center—Stimulus is sent to the control center (brain or gland) by the nervous or endocrine systems 4.Effector—The cells or organ that will react 5.Responses—Effector causes the response that will return the variable to the normal range Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (4 of 8) Figure 1.14 Control of room temperature by a negative feedback loop. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (5 of 8) Figure 1.15 Control of body temperature by a negative feedback loop. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (6 of 8) Study Boost: Keeping Track of the Body’s Feedback Loops •Feedback loops occur in all body systems so there are many to remember •As you learn new feedback loops, add them to the Feedback Loops Master List page at the front of the Active-Learning Workbook •Use the list to quiz yourself “Bring It Back,” review feedback loops from other chapters “Space It Out,” and have a friend quiz you from the list in a random order “Mix It Up” Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (7 of 8) Positive Feedback Loops—Less common than negative feedback loops; Increases the response to a stimulus; Reinforces the initial stimulus •Will eventually shut off in response to an external stimulus or some outside event that is not part of the positive feedback loop •Positive feedback loops are often found within a negative feedback loop to produce a quicker response Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Feedback Loops Are a Key Mechanism Used to Maintain Homeostasis (8 of 8) Figure 1.16 Control of blood clotting by a positive feedback loop. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Common Misconceptions about Homeostasis (1 of 2) •Misconception 1: Negative feedback is bad for the body; Positive feedback is good –Under normal circumstances, both types of feedback loops promote homeostasis •Misconception 2: Maintaining homeostasis means the body’s internal environment is static or unchanging –Maintenance of normal ranges does not mean the internal environment is unchanging; Changes are normal and are occurring constantly Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Common Misconceptions about Homeostasis (2 of 2) •Misconception 3: Regulatory mechanisms and feedback loops are either “on” or “off,” like a switch –The internal environment is dynamic so feedback loops always exhibit some degree of activity •Misconception 4: Any physiological variable can be controlled –Variables can only be controlled through feedback loops if receptors exist to detect changes in the set point Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 BioFlix: Homeostasis Use the link below to view A D A compliant video: BioFlix: Homeostasis https://mediaplayer.pearsoncmg.com/assets/loMS4qosEmL53haP3z1Z_eWMupIkyIFv Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Childbirth, Pitocin, and Positive Feedback Loops •Childbirth begins when a woman goes into labor, which occurs by a positive feedback loop •Baby’s head stretches the cervix (stimulus); Data from nerves in the cervix (receptors) are sent to the brain (control center); Uterus (effector) produces hormone oxytocin which stimulates uterine contractions (response); This continues and is amplified until the baby is born, which stops the feedback loop •Pitocin is a synthetic version of oxytocin that is used when labor needs to be artificially started, or induced Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Structure and Function are Related at All Levels of Organization Principle of Complementarity of Structure and Function •The form of a structure is such that it best suits its function; Applies to all levels of organization Figure 1.17 The relationship between structure and function. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Gradients Drive Many Physiological Processes Gradients are present any time more of something exists in one area than another and the two areas are connected •Gradients drive many of our physiological processes Figure 1.18 Examples of gradients. Copyright © 2025, 2019, 2016 Pearson Education, Inc. All Rights Reserved 1.5 Cell-Cell Communication is Required to Coordinate Body Functions •Cells communicate with each other to maintain homeostasis •Electrical Signals are transmitted between neighboring cells •Chemical Messengers released from cells may work on neighboring cells or move to other cells through body fluids Figure 1.19 Communication between a nerve cell and a muscle cell.
4
Updated 18h ago
0.0(0)
flashcards
gen chem mini exam 1
212
Updated 21h ago
0.0(0)
flashcards
8/26/26 Mini Quiz
4
Updated 1d ago
0.0(0)
flashcards
Absolutely. Your list is very broad, so the best way to study it is not to memorize every disease. We can turn it into a high-yield nursing reviewer based on: What is it? → What will I see? → What should I assess? → What should I do? → What medications/treatments matter? → What is the priority/emergency? → What should I teach? Below is a condensed master reviewer. I’ll keep it nursing-focused and use simple language. ⸻ 🩺 MEDICAL-SURGICAL NURSING REVIEWER 1. ENDOCRINE SYSTEM Diabetes Mellitus Type 1 Type 2 Main problem Little/no insulin Insulin resistance + progressive insulin deficiency Usually Younger onset, but can occur any age More common in adults Treatment Insulin required Lifestyle + oral/injectable meds ± insulin Major acute problems DKA HHS Signs of hyperglycemia “3 Ps” * Polyuria – urinating frequently * Polydipsia – excessive thirst * Polyphagia – excessive hunger Other: * Fatigue * Blurred vision * Slow wound healing * Recurrent infections Hypoglycemia Think FAST: * F – Feeling shaky * A – Altered behaviour/confusion * S – Sweating * T – Tachycardia Treatment if conscious: 15 g fast carbohydrate → recheck glucose in 15 min → repeat if necessary. Examples: * Glucose tablets * Juice * Regular pop If unconscious/severe: * Glucagon if appropriate * IV dextrose in a healthcare setting DKA Usually associated with Type 1. Think: Hyperglycemia + ketones + metabolic acidosis Signs: * Dehydration * Abdominal pain * Nausea/vomiting * Fruity/acetone breath * Kussmaul respirations * Altered LOC Priority treatment: 1. IV fluids 2. Insulin 3. Monitor/correct electrolytes, especially potassium 4. Monitor glucose and acid-base status HHS Usually Type 2. * Extremely high glucose * Severe dehydration * Altered LOC * Little/no significant ketoacidosis Major nursing priority: fluid replacement and monitoring. Diabetes teaching Remember: * Foot care * Inspect feet daily * Proper footwear * Don’t walk barefoot * Don’t cut corns/calluses yourself * Monitor blood glucose * Know signs of hypo/hyperglycemia * Medication adherence * Sick-day management * Regular eye/kidney/foot assessments ⸻ ❤️ 2. CARDIOVASCULAR SYSTEM Stroke Two major types: * Ischemic → blocked blood vessel * Hemorrhagic → bleeding Recognize stroke: BE FAST B – Balance loss E – Eye/vision changes F – Face drooping A – Arm weakness S – Speech difficulty T – Time to call emergency services Nursing priorities * ABCs * Determine last known well * Neurological assessment * Blood glucose * Prepare for CT/imaging * Swallow assessment before oral food/fluids/medications * Prevent aspiration * Maintain safety Do not give food or water until swallowing is assessed. ⸻ Myocardial Infarction (MI) Think: “Time = muscle.” Common symptoms: * Chest pressure/pain * Radiation to arm/jaw/back * Dyspnea * Diaphoresis * Nausea * Anxiety Some patients, especially older adults and people with diabetes, may have atypical or minimal pain. Nursing priorities * ABCs * ECG * Vital signs * Cardiac monitoring * IV access * Blood work including cardiac biomarkers * Oxygen if hypoxemic/clinically indicated * Administer prescribed medications promptly Common medications: * Aspirin * Nitroglycerin * Antiplatelet drugs * Anticoagulants * Beta blockers * Statins Nitroglycerin Can cause: * Hypotension * Headache * Dizziness Never combine nitrates with PDE-5 inhibitors because of potentially severe hypotension. ⸻ Heart Failure Left-sided Think Lungs * Dyspnea * Crackles * Orthopnea * Pulmonary edema * Pink/frothy sputum in severe pulmonary edema Right-sided Think Body * Peripheral edema * Weight gain * JVD * Hepatomegaly * Ascites Nursing priorities * Daily weight * I&O * Respiratory assessment * Edema assessment * Fluid/sodium management as ordered * Medication adherence Sudden weight gain can indicate fluid retention. Common drugs: * Diuretics * ACE inhibitors/ARBs/ARNI * Beta blockers * Mineralocorticoid antagonists * SGLT2 inhibitors * Digoxin in selected patients Digoxin Watch for: * Bradycardia * Nausea/vomiting * Visual disturbances * Dysrhythmias Low potassium increases risk of digoxin toxicity. ⸻ Peripheral Vascular Disease Arterial Think: “Pain + Pale + Pulseless + Cold” * Cool extremity * Weak pulses * Pale colour * Pain with activity * Poor wound healing Venous Think: “Swollen + Warm + Edema” * Edema * Warm skin * Aching * Venous ulcers often near ankles ⸻ 🩸 3. HEMATOLOGY Anemia Reduced oxygen-carrying capacity. Signs: * Fatigue * Pallor * Weakness * Dyspnea * Tachycardia * Dizziness Iron-deficiency anemia May see: * Low hemoglobin * Low ferritin * Microcytic/hypochromic RBCs Iron teaching: * Take as directed * Vitamin C can improve absorption * Dark stools are common * Constipation can occur * Liquid iron may stain teeth ⸻ Leukemia Cancer of blood-forming tissues. Possible findings: * Infection → abnormal WBC function * Anemia → fatigue/pallor * Bleeding → low platelets * Bone/joint pain Think: Leukemia = infection + anemia + bleeding Nursing priorities: * Infection prevention * Bleeding precautions when indicated * Monitor CBC * Oral care * Avoid unnecessary invasive procedures * Monitor treatment adverse effects ⸻ 🍽️ 4. GASTROINTESTINAL SYSTEM Crohn’s vs Colitis Crohn’s Ulcerative Colitis Can affect anywhere mouth → anus Colon/rectum “Skip lesions” Continuous inflammation Transmural Mainly mucosal Fistulas common Bloody diarrhea common Strictures possible Toxic megacolon risk Crohn’s Watch for: * Diarrhea * Abdominal pain * Weight loss * Malnutrition * Fistulas Ulcerative colitis Watch for: * Bloody diarrhea * Abdominal cramps * Urgency * Risk of toxic megacolon ⸻ Diverticulitis Inflammation/infection of diverticula. Signs: * Usually LLQ abdominal pain * Fever * Change in bowel habits During acute inflammation: * Follow prescribed bowel-rest/diet plan * Monitor pain, fever and abdominal status * Watch for perforation/peritonitis ⸻ Colorectal Cancer Red flags: * Change in bowel habits * Blood in stool * Unexplained weight loss * Iron-deficiency anemia * Abdominal discomfort Important: Screening is important even before symptoms occur. ⸻ Constipation Risk factors: * Opioids * Immobility * Low fluid intake * Low fibre * Some medications Management: * Fluids if not contraindicated * Fibre * Activity * Bowel routine * Appropriate laxatives/stool softeners ⸻ Diarrhea Priority concerns: Fluid + electrolytes + cause Assess: * Frequency * Stool characteristics * Blood * Fever * Abdominal pain * Hydration * Recent antibiotics/travel/exposure ⸻ Peptic Ulcer Disease Major complications: * Bleeding * Perforation * Gastric outlet obstruction Warning signs: * Hematemesis * Melena * Sudden severe abdominal pain * Rigid abdomen Common causes: * H. pylori * NSAIDs ⸻ Appendicitis Classic: * Pain may begin around umbilicus and migrate to RLQ * Fever * Nausea/vomiting * Rebound/guarding may occur Priority Prevent rupture. Avoid: * Laxatives * Enemas * Applying heat to abdomen ⸻ 🚰 5. RENAL SYSTEM UTI Symptoms: * Dysuria * Frequency * Urgency * Suprapubic discomfort If infection reaches kidneys: * Fever * Flank pain * Chills * Nausea/vomiting Nursing * Obtain urine specimen correctly * Culture before antibiotics when ordered/appropriate * Encourage fluids if not contraindicated * Complete antibiotics ⸻ Renal Failure Major problems: Think: * Fluid overload * Electrolyte imbalance * Acid-base imbalance * Uremia * Anemia Possible findings: * Edema * Hypertension * Fatigue * Decreased urine output * Nausea * Confusion Particularly important: Hyperkalemia can cause life-threatening dysrhythmias. ⸻ Dialysis Hemodialysis Blood is filtered through a machine. Assess: * Weight * BP * Fluid status * Access site AV fistula Remember: “Feel + Hear” * Thrill → feel it * Bruit → hear it Protect the access: * No BP on that arm * No blood draws on that arm when avoidable * Don’t compress unnecessarily ⸻ Incontinence Types: Stress → coughing/sneezing Urge → sudden strong urge Overflow → bladder doesn’t empty Functional → can’t get to toilet Mixed → combination Management depends on cause. ⸻ 🫁 6. RESPIRATORY SYSTEM COPD Includes chronic bronchitis and emphysema. Common: * Dyspnea * Chronic cough * Sputum * Wheezing * Reduced exercise tolerance Nursing: * Position upright * Pursed-lip breathing * Energy conservation * Smoking cessation * Oxygen as prescribed * Inhaler technique Don’t automatically assume oxygen should be withheld from COPD patients. Oxygen is prescribed/titrated according to the patient’s clinical status and target saturation. ⸻ Asthma Usually reversible airway obstruction/inflammation. Symptoms: * Wheezing * Cough * Dyspnea * Chest tightness Rescue medication Short-acting bronchodilator, e.g. salbutamol. Controller Often: Inhaled corticosteroid Severe attack Red flags: * Difficulty speaking * Severe respiratory distress * Exhaustion * Altered LOC * Silent chest Silent chest = very serious. ⸻ Pneumonia Signs: * Fever * Cough * Sputum * Dyspnea * Crackles * Pleuritic chest pain Nursing: * Oxygen if needed * Antibiotics if bacterial/ordered * Hydration if appropriate * Mobilization * Cough/deep breathing * Monitor respiratory status ⸻ Lung Cancer Risk factors: * Smoking * Environmental/occupational exposures Symptoms: * Persistent cough * Hemoptysis * Weight loss * Dyspnea * Chest pain ⸻ Tuberculosis Classic: * Persistent cough * Fever * Night sweats * Weight loss * Possible hemoptysis Nursing priority Airborne precautions for suspected/confirmed infectious pulmonary TB according to institutional policy. ⸻ Atelectasis Collapsed alveoli, often after surgery. Prevention: * Deep breathing * Coughing * Incentive spirometry * Early mobilization * Adequate pain control ⸻ Pneumothorax Air in pleural space → lung collapse. Possible: * Sudden dyspnea * Chest pain * Decreased/absent breath sounds Tension pneumothorax Emergency. May cause: * Severe respiratory distress * Hypotension * Distended neck veins * Tracheal deviation * Cardiovascular collapse Requires immediate emergency treatment. ⸻ Hemothorax Blood in pleural space. Think: Respiratory compromise + blood loss. Chest tube may be required. ⸻ 🦴 7. MUSCULOSKELETAL Osteoporosis Loss of bone density. Risk: * Fractures * Vertebral compression * Hip fracture Prevention: * Weight-bearing activity * Calcium/vitamin D as appropriate * Fall prevention * Avoid smoking * Limit excessive alcohol ⸻ Fractures Priority: ABCs → bleeding → neurovascular status Assess the 6 Ps: * Pain * Pallor * Pulselessness * Paresthesia * Paralysis * Poikilothermia/coolness Neurovascular assessment is critical. ⸻ Arthritis Osteoarthritis Think: Wear and tear * Pain with activity * Stiffness * Often affects weight-bearing joints Rheumatoid arthritis Think: Autoimmune * Symmetrical joint involvement * Morning stiffness * Systemic effects ⸻ Scoliosis Abnormal lateral curvature of spine. Assess: * Posture * Shoulder/hip asymmetry * Spinal curvature * Respiratory effects if severe ⸻ Multiple Sclerosis Autoimmune demyelinating disease affecting CNS. Possible: * Weakness * Fatigue * Visual disturbances * Sensory changes * Balance problems * Bladder dysfunction Important nursing concept: Fatigue and heat can worsen symptoms. ⸻ 🦠 8. INFECTION/IMMUNE SYSTEM MRSA Methicillin-resistant Staphylococcus aureus. Key: * Resistant to several antibiotics * Contact precautions may be required * Strict hand hygiene ⸻ VRE Vancomycin-resistant enterococci. Key: * Resistant organism * Contact precautions according to facility policy * Hand hygiene * Environmental cleaning ⸻ C. difficile Often associated with antibiotic exposure. Symptoms: * Frequent watery diarrhea * Abdominal cramping * Fever VERY IMPORTANT Soap and water handwashing is preferred because alcohol-based hand sanitizer does not reliably kill C. difficile spores. Use appropriate contact/spore precautions according to facility policy. ⸻ Influenza * Fever * Cough * Myalgias * Fatigue * Headache Prevention: Annual vaccination + respiratory hygiene. ⸻ Sepsis Think: Infection + organ dysfunction Potential signs: * Fever or hypothermia * Tachycardia * Tachypnea * Altered mental status * Hypotension * Reduced urine output * Elevated lactate Nursing priority Recognize early and escalate rapidly. Expect: * Cultures * Lactate * IV fluids when indicated * Prompt antimicrobials when sepsis is suspected * Source control * Frequent reassessment ⸻ 🔬 9. DIAGNOSTIC TESTS Don’t memorize only the test. For every test ask: 1. Why is it being done? 2. What does it tell me? 3. What does the nurse do before? 4. What does the nurse do after? 5. What complications should I watch for? ⸻ CT Uses X-rays to create detailed cross-sectional images. Contrast may be used. Nursing: * Check allergies/previous contrast reactions * Assess kidney function when appropriate * Follow contrast-specific instructions ⸻ MRI Uses magnetic field. NO metal/unsafe metallic objects. Assess: * Implanted devices * Metal fragments * Claustrophobia ⸻ X-ray Useful for: * Fractures * Chest conditions * Some abdominal problems ⸻ Ultrasound Uses sound waves. Common: * Pregnancy * Abdomen * Pelvis * Blood vessels No ionizing radiation. ⸻ Mammogram Breast imaging for screening/assessment. ⸻ Endoscopy Allows direct visualization of GI tract. Nursing: * Usually NPO beforehand * Sedation may be used * Monitor airway and vital signs afterward * Ensure gag/swallow reflex has returned before oral intake when applicable ⸻ Bronchoscopy Visualizes airways. Post-procedure: * Monitor respiratory status * Watch for bleeding * Keep NPO until protective reflexes return if sedated/topical anesthetic used ⸻ Pulmonary Function Tests Measure lung function. Important for: * Asthma * COPD * Other pulmonary disorders ⸻ 🧪 10. LABORATORY VALUES For exams, know what the lab means, not just the number. CBC Hemoglobin/Hematocrit Think: oxygen-carrying capacity Low → anemia/bleeding/etc. WBC Think: infection/inflammation/immune response Platelets Think: clotting Low → bleeding risk. ⸻ INR Measures effect of warfarin therapy. Higher INR generally = increased anticoagulation and bleeding risk. Monitor for: * Bleeding * Bruising * Hematuria * Melena ⸻ Glucose Think: current blood glucose ⸻ HbA1c Think: “3-month-ish glucose picture.” Used for longer-term diabetes management. ⸻ BUN + Creatinine Think: Kidney function. Creatinine is particularly useful when evaluating renal function. ⸻ GFR Estimates kidney filtration. Lower GFR generally = worse kidney function. ⸻ Electrolytes Sodium Think: water balance + neurological function Potassium Think: heart rhythm Abnormal potassium can cause dangerous dysrhythmias. Calcium Think: bones + muscles + nerves ⸻ Cholesterol LDL “Lousy” cholesterol Higher LDL → increased cardiovascular risk. HDL “Healthy” cholesterol Generally protective. ⸻ Urinalysis Can help identify: * UTI * Protein * Blood * Glucose * Ketones * Kidney problems ⸻ Culture & Sensitivity Culture = What organism? Sensitivity = Which antibiotic is effective? ⸻ 💊 11. PHARMACOLOGY For every medication, memorize: Class → Why given → Major adverse effects → Contraindications/precautions → Nursing assessments → Patient teaching ⸻ Acetaminophen (Tylenol) Used for: * Pain * Fever Major concern: Liver toxicity with excessive dosing. ⸻ NSAIDs Examples: * Ibuprofen * Naproxen Watch for: * GI bleeding * Kidney injury * Fluid retention * Cardiovascular risks ⸻ Morphine Opioid. Watch: * Respiratory depression * Sedation * Hypotension * Constipation * Nausea Antidote for opioid-induced respiratory depression: Naloxone ⸻ Antibiotics Key nursing principle: Complete the prescribed course unless directed otherwise. Watch: * Allergic reactions * Diarrhea * Superinfection * C. difficile ⸻ Warfarin (Coumadin) Anticoagulant. Monitor: INR Major complication: Bleeding Teaching: * Consistent vitamin K intake rather than suddenly changing intake * Drug interactions matter * Report unusual bleeding ⸻ Heparin Anticoagulant. Monitor: * Bleeding * Platelets * aPTT for unfractionated heparin, depending on protocol Major complication: Bleeding Important adverse reaction: HIT – heparin-induced thrombocytopenia ⸻ Insulin Major adverse effect: HYPOGLYCEMIA Know: * Onset * Peak * Duration * Administration technique * Glucose monitoring ⸻ Nitroglycerin Used for angina. Can cause: * Headache * Hypotension * Dizziness Avoid with PDE-5 inhibitors. ⸻ Digoxin Remember: “Slow heart + low potassium = danger.” Monitor: * Apical pulse * Potassium * Signs of toxicity ⸻ Diuretics Example: Furosemide (Lasix) Causes: * Increased urine output * Decreased fluid volume Watch: * BP * Electrolytes * Dehydration * Potassium ⸻ Corticosteroids Example: Prednisone Long-term effects: * Infection risk * Hyperglycemia * Osteoporosis * Fluid retention * Skin changes * Adrenal suppression Do not abruptly stop long-term corticosteroids without medical direction. ⸻ Bronchodilators Example: Salbutamol Can cause: * Tremor * Tachycardia * Nervousness ⸻ Inhaled corticosteroids Important: Rinse mouth after use. Helps prevent oral candidiasis. ⸻ Statins Example: Atorvastatin Used to lower cholesterol. Watch: * Muscle pain/weakness * Liver-related adverse effects ⸻ Stool medications Psyllium Bulk-forming. Requires adequate fluid intake unless contraindicated. Docusate Stool softener. Stimulant laxatives Increase intestinal motility. ⸻ 🧠 12. NEUROLOGICAL Seizure During seizure: Protect, don’t restrain. * Protect from injury * Turn to side if possible * Protect airway * Remove nearby hazards * Don’t put anything in mouth * Time the seizure After: * Assess airway * Vital signs * Neurological status * Document characteristics Status epilepticus Emergency. ⸻ Increased Intracranial Pressure Think: Headache + vomiting + decreased LOC + pupil changes Late sign: Cushing’s triad * Increased BP/widened pulse pressure * Bradycardia * Irregular respirations Nursing: * Elevate head as ordered * Maintain neutral neck alignment * Avoid unnecessary stimulation * Monitor neurological status * Prevent hypoxia/hypercapnia ⸻ Parkinson’s Disease Classic: TRAP T – Tremor R – Rigidity A – Akinesia/bradykinesia P – Postural instability Nursing: * Fall prevention * Mobility support * Medication timing * Swallowing assessment * Nutrition ⸻ Spinal Cord Injury Priority: Airway + breathing + immobilization + neurological assessment Possible complications: * Neurogenic shock * Autonomic dysreflexia * Respiratory compromise * Loss of bowel/bladder control * Pressure injuries Autonomic dysreflexia Usually associated with injuries at/above T6. Signs: * Sudden severe hypertension * Headache * Flushing/sweating above injury * Bradycardia Priority: Sit patient upright and identify/remove the trigger. ⸻ 👁️ 13. SENSORY Cataracts Clouding of lens. Symptoms: * Blurred vision * Glare * Reduced visual acuity Treatment: Surgical removal when significantly affecting vision. ⸻ Glaucoma Optic nerve damage often associated with increased intraocular pressure. Key distinction: Glaucoma → pressure/optic nerve Cataract → cloudy lens Acute angle-closure glaucoma: * Severe eye pain * Headache * Halos * Nausea/vomiting * Red eye Emergency. ⸻ Hearing Loss Conductive Problem with sound transmission through outer/middle ear. Sensorineural Problem involving inner ear/auditory nerve. Communication: * Face patient * Speak clearly * Don’t shout * Reduce background noise * Verify understanding ⸻ 🔥 14. BURNS Think: Airway → Breathing → Circulation Inhalation injury Red flags: * Facial burns * Soot * Singed nasal hairs * Hoarseness * Stridor * Carbonaceous sputum Airway edema can worsen rapidly. ⸻ Burn priorities * Airway * Breathing * Circulation * Fluid resuscitation for significant burns * Pain management * Infection prevention * Temperature control * Nutrition * Wound care ⸻ 15. WOMEN’S & MEN’S HEALTH Menopause Decrease in estrogen. Common: * Hot flashes * Night sweats * Sleep problems * Vaginal dryness * Mood changes Long-term: * Bone loss * Cardiovascular considerations ⸻ Birth Control Know: * Effectiveness * How it is used * Contraindications * STI protection Most hormonal birth control does NOT protect against STIs. Condoms help reduce STI transmission. ⸻ STIs Examples: * Chlamydia * Gonorrhea * Syphilis * HPV * Herpes * HIV Nursing: * Testing * Treatment adherence * Partner notification/treatment when appropriate * Safer sex education * Prevention ⸻ Breast Cancer Warning signs: * New breast lump * Skin changes * Nipple changes/discharge * Axillary lymph node changes Know current screening recommendations and individual risk factors. ⸻ Prostate Cancer Possible: * Urinary hesitancy * Weak stream * Frequency * Hematuria Important: Early prostate cancer may have no symptoms. ⸻ 🚨 16. EMERGENCY NURSING Shock Basic concept: Tissues aren’t receiving enough oxygen/perfusion. Signs: * Tachycardia * Hypotension * Altered LOC * Cool/clammy skin in many shock states * Decreased urine output * Tachypnea Major types Hypovolemic → blood/fluid loss Cardiogenic → pump failure Distributive → vasodilation (e.g., septic/anaphylactic) Obstructive → obstruction to circulation Priority: ABCs + identify/treat cause + restore perfusion. ⸻ Hemorrhage Look for: * Tachycardia * Hypotension * Pallor * Weakness * Decreased LOC * Decreased urine output Priority: Control bleeding + support circulation + escalate. ⸻ Anaphylaxis Severe allergic reaction. Signs: * Airway swelling * Wheezing * Dyspnea * Hypotension * Hives * GI symptoms FIRST-LINE MEDICATION: IM epinephrine Do not delay epinephrine while waiting for other treatments. ⸻ 💧 17. FLUID & ELECTROLYTES Dehydration Signs: * Thirst * Dry mucous membranes * Tachycardia * Hypotension * Poor skin turgor * Decreased urine output * Weight loss ⸻ Fluid overload Signs: * Edema * Crackles * Dyspnea * Weight gain * JVD * Hypertension ⸻ Potassium Hypokalemia Think: Weak + irregular heart Causes: * Diuretics * GI losses Hyperkalemia Think: Dangerous heart rhythm Causes: * Renal failure * Tissue breakdown * Certain medications ⸻ Acid-Base Use: ROME Respiratory = Opposite Metabolic = Equal Examples: Respiratory acidosis CO₂ ↑ → pH ↓ Respiratory alkalosis CO₂ ↓ → pH ↑ Metabolic acidosis HCO₃ ↓ → pH ↓ Metabolic alkalosis HCO₃ ↑ → pH ↑ ⸻ 👶 MATERNAL-CHILD NURSING Prenatal Care Monitor: * Maternal vital signs * Weight * Blood pressure * Urine * Fetal growth * Fetal heart rate * Laboratory screening * Risk factors Important warning signs: * Vaginal bleeding * Severe headache * Visual changes * Severe abdominal pain * Fluid leakage * Decreased fetal movement * Sudden swelling/other signs of hypertensive disorders ⸻ Fetal Development High-yield concept: First trimester → organ formation Second trimester → growth and development Third trimester → maturation and preparation for birth ⸻ Labour Stage 1 Onset of true labour → complete cervical dilation. Stage 2 Complete dilation → birth of baby. Stage 3 Birth of baby → delivery of placenta. Stage 4 Immediate postpartum recovery. ⸻ Apgar At approximately 1 and 5 minutes. A P G A R A – Appearance P – Pulse G – Grimace A – Activity R – Respiration Each scored 0–2. Apgar helps assess newborn adaptation; it does not by itself diagnose asphyxia or determine long-term prognosis. ⸻ Newborn Assessment Assess: * Respiratory effort * Heart rate * Temperature * Colour * Tone * Feeding * Reflexes * Weight * Head circumference * Urine/stool ⸻ Breastfeeding Benefits: * Nutrition * Immune protection * Bonding Signs of effective feeding: * Good latch * Audible swallowing * Appropriate wet/dirty diapers * Expected weight pattern ⸻ 👶 PEDIATRIC NURSING Development General progression: Head → toe Simple → complex Large muscles → fine motor Always consider developmental stage when communicating with children. ⸻ Pediatric Safety Big priorities: * Falls * Choking * Burns * Poisoning * Drowning * Car-seat safety * Medication dosing * Safe sleep Medication principle Pediatric medications are often based on: weight (kg) Always verify calculations and concentrations. ⸻ Pediatric Asthma Same basic principles as adults: * Bronchodilator for acute symptoms * Controller medications for long-term control * Trigger avoidance * Asthma action plan ⸻ RSV Common in infants/young children. Signs: * Rhinorrhea * Cough * Wheezing * Increased work of breathing * Poor feeding Priority: Respiratory assessment and hydration. ⸻ Croup Classic: Barking cough + stridor Often worse at night. Severe respiratory distress requires urgent intervention. ⸻ Cystic Fibrosis Thick secretions affect lungs and GI system. Think: “Thick mucus + lung infections + malabsorption.” Nursing: * Airway clearance * Nutrition * Pancreatic enzymes when prescribed * High-calorie/high-protein nutrition * Infection prevention ⸻ Gastroenteritis Major concern: Dehydration. Assess: * Wet diapers/urine * Mucous membranes * Tears * Capillary refill * Weight * Activity/LOC ⸻ Pyloric Stenosis Classic: Projectile, non-bilious vomiting Often occurs in young infants. Possible: * Hunger after vomiting * Dehydration * Weight loss ⸻ ASD vs VSD ASD Hole between atria. VSD Hole between ventricles. VSD can produce: A significant murmur and increased pulmonary blood flow. ⸻ Sickle Cell Disease Problem: Abnormal hemoglobin → sickled RBCs → vaso-occlusion and hemolysis. Crisis triggers: * Dehydration * Infection * Hypoxia * Stress Management: * Hydration * Oxygen if hypoxemic * Pain management * Treat infection * Rest * Disease-specific therapies ⸻ Meningitis Think: Fever + headache + stiff neck + altered mental status May also have: * Photophobia * Vomiting * Seizures Emergency. Use appropriate isolation precautions according to suspected organism and institutional policy. ⸻ Hydrocephalus Excess CSF. Infants may have: * Increasing head circumference * Bulging fontanelle * Irritability * Poor feeding * “Sunsetting” eyes Older children: * Headache * Vomiting * Visual changes * Altered LOC ⸻ 🧠 MENTAL HEALTH NURSING Therapeutic Communication DO: * Use open-ended questions * Listen * Reflect * Clarify * Validate feelings * Maintain appropriate boundaries DON’T: * Give false reassurance * Judge * Argue * Give excessive advice * Say “everything will be fine” ⸻ Depression Symptoms: * Persistent sadness * Anhedonia * Sleep changes * Appetite changes * Fatigue * Poor concentration * Feelings of worthlessness * Suicidal thoughts Nursing priority: Assess suicide risk directly. ⸻ Bipolar Disorder Mania * Elevated/irritable mood * Increased energy * Decreased need for sleep * Rapid speech * Impulsivity * Grandiosity Nursing: * Reduce stimulation * Maintain safety * Set clear limits * Encourage nutrition/hydration * Administer medications as prescribed ⸻ Schizophrenia Positive symptoms: * Hallucinations * Delusions * Disorganized speech/behaviour Negative symptoms: * Flat affect * Social withdrawal * Reduced motivation Communication Don’t argue with delusions. Instead: Acknowledge the patient’s feelings while presenting reality. ⸻ OCD Obsessions: Intrusive thoughts Compulsions: Repetitive behaviours/mental acts ⸻ Eating Disorders Watch: * Electrolytes * Cardiac rhythm * Nutrition * Weight * Refeeding complications * Psychological safety ⸻ Substance Use Priorities: * Airway/breathing/circulation * Overdose recognition * Withdrawal * Safety * Nonjudgmental communication ⸻ 🧪 HIGH-YIELD DIAGNOSTIC TEST THINKING When you see a test question, ask: “Why are they ordering this?” Examples: CT head after sudden neurological deficit → looking for bleeding/structural abnormalities. MRI → detailed soft tissue/neurological/musculoskeletal imaging. ECG → electrical activity/ischemia/dysrhythmia. Troponin → myocardial injury. HbA1c → long-term glucose control. Creatinine/GFR → kidney function. INR → warfarin effect. Culture and sensitivity → organism + effective antimicrobial. Pulmonary function test → lung function/obstruction/restriction. ⸻ 💊 PHARMACOLOGY MASTER MEMORY MAP Instead of memorizing 100 medications individually, memorize the danger associated with each class: Drug/Class Think Insulin Hypoglycemia Opioids Respiratory depression Warfarin Bleeding + INR Heparin Bleeding + HIT Furosemide Fluid/electrolyte loss Digoxin Bradycardia/toxicity ACE inhibitors Hyperkalemia + cough/angioedema Beta blockers Bradycardia/hypotension Steroids Hyperglycemia + infection NSAIDs GI bleeding + kidney injury Statins Muscle/liver effects Bronchodilators Tachycardia/tremor Inhaled steroids Oral candidiasis Antibiotics Allergy + C. diff ⸻ 🚨 THE “PRIORITY QUESTION” METHOD When you’re stuck on an exam question, ask: 1. Is the airway threatened? If yes → AIRWAY 2. Is breathing compromised? If yes → BREATHING 3. Is circulation/perfusion compromised? If yes → CIRCULATION 4. Is there an acute neurological deterioration? Think neurological emergency. 5. Is there a safety risk? Falls, suicide, aspiration, seizures, etc. 6. Which patient is deteriorating? Unstable beats stable. ⸻ ⭐ TOP THINGS I WOULD MEMORIZE FIRST If you have limited study time, prioritize these: 🚨 Emergencies * Anaphylaxis → IM epinephrine * Stroke → BE FAST + last known well * MI → ECG + rapid intervention * Sepsis → early recognition + rapid treatment * Tension pneumothorax → emergency * Severe hypoglycemia → rapid glucose treatment * Status epilepticus → emergency * Increased ICP → neurological deterioration * Hemorrhage → control bleeding + perfusion * Severe burns → ABCs 💊 Medications * Insulin → hypoglycemia * Morphine → respiratory depression * Warfarin → INR/bleeding * Heparin → bleeding/HIT * Digoxin → pulse/potassium/toxicity * Furosemide → fluid/electrolytes * Nitroglycerin → hypotension + PDE-5 interaction * Steroids → infection/hyperglycemia * Antibiotics → allergy/C. diff * Inhaled steroids → rinse mouth 🧪 Labs * Hb → oxygen carrying * WBC → infection/immune response * Platelets → bleeding/clotting * INR → warfarin * Glucose → current sugar * HbA1c → long-term glucose * Creatinine/GFR → kidney * K⁺ → heart rhythm * Na⁺ → neurological/fluid balance * Culture → organism * Sensitivity → antibiotic choice 🩺 Nursing skills * Infection control * Medication administration * IVs * Oxygen * Suction * Tracheostomy * Chest tubes * Urinary catheter * Wound care * Ostomy care * Vital signs * Neurovascular assessment * Respiratory assessment ⸻ 📚 How I’d recommend studying this huge syllabus Don’t try to study all of these diseases in one sitting. Use system blocks: Day 1: Diabetes + cardiovascular Day 2: Respiratory + renal Day 3: GI + liver Day 4: Hematology + immune/infection Day 5: Neuro + musculoskeletal Day 6: Maternal/newborn Day 7: Pediatrics Day 8: Mental health Day 9: Pharmacology Day 10: Labs + diagnostics + clinical skills Day 11: Emergency/priority questions Day 12: Full mixed practice exam + review weak areas For each condition, make yourself answer only 5 questions: 1. What is happening? 2. What will I assess? 3. What is the biggest complication? 4. What will I do first? 5. What do I teach the patient? That approach will help you think like a nurse rather than memorize isolated facts, which matches the study framework you were given.
10
Updated 1d ago
0.0(0)
flashcards
Lap 1 Am Hist. Mini Test 1
25
Updated 2d ago
0.0(0)
flashcards
Calculus AB Mini Quiz
10
Updated 2d ago
0.0(0)
flashcards
bio mini quiz wk.1
7
Updated 5d ago
0.0(0)
flashcards
parts. PART I — Multiple Choice 1. Which statement best describes soil fertility? A. The ability of soil to produce maximum yield under any condition B. The soil’s ability or potential to supply essential nutrients needed by plants C. The ability of soil to prevent erosion D. The ability of soil to retain only water 2. Which statement correctly describes soil productivity? A. The ability of soil to supply nutrients only B. The ability of soil to produce a good crop yield under a given management system C. The amount of organic matter in soil D. The ability of soil to retain water 3. Which statement is correct regarding soil fertility and productivity? A. All fertile soils are productive B. All productive soils are fertile, but not all fertile soils are productive C. Fertility and productivity are exactly the same D. Productive soils do not need nutrients 4. Soil fertility is best described as the soil’s: A. Performance B. Potential or inherent capability to supply nutrients C. Rate of erosion D. Amount of sand 5. Soil productivity depends on: A. Soil fertility only B. Fertility and other factors including management C. Soil color only D. Soil texture only 6. What are edaphic factors? A. Factors related to climate B. Factors related to animals C. Factors related to soil that affect plant growth D. Factors related to sunlight only 7. Soil texture refers to the relative amounts of: A. Organic matter, water, and air B. Sand, silt, and clay C. Nitrogen, phosphorus, and potassium D. Roots, microorganisms, and water 8. Which soil generally holds more water? A. Sandy soil B. Clayey soil C. Gravelly soil D. Rocky soil 9. Soil structure refers to: A. The color of soil B. The amount of sand in soil C. How soil particles group together into aggregates D. The amount of water in soil 10. Which practice can improve soil structure? A. Excessive tillage B. Continuous heavy machinery use C. Adding organic matter D. Repeated soil compaction 11. Soil aeration refers to: A. The amount of water in soil B. The amount of air in spaces between soil particles C. Soil temperature D. Soil acidity 12. What happens to soil aeration when soil becomes compacted? A. Air spaces increase B. Air spaces decrease C. Nutrients automatically increase D. Root growth improves 13. Soil temperature directly affects: A. Seed germination and root growth B. Soil texture C. Soil classification only D. Amount of sand 14. Soil pH affects: A. Nutrient availability and microorganism activity B. Only soil color C. Only soil temperature D. Crop spacing 15. Which condition can restrict root growth? A. Loose soil B. Well-aerated soil C. Soil compaction D. Good soil structure 16. Which is a common cause of soil compaction? A. Crop rotation B. Heavy machinery and repeated traffic C. Adding organic matter D. Leaving crop residues 17. Beneficial soil microorganisms are important because they: A. Stop all plant diseases B. Decompose organic matter and help release nutrients C. Remove all water from soil D. Cause soil erosion 18. Organic matter can improve: A. Water-holding capacity B. Soil structure C. Nutrient availability D. All of the above 19. Which two elements are important sources of food/nutrients involved in microbial activity and decomposition? A. Carbon and nitrogen B. Calcium and iron C. Potassium and sulfur D. Sodium and chlorine 20. Which cropping system involves growing the same crop repeatedly? A. Crop rotation B. Monocropping C. No-tillage D. Minimum tillage 21. Which is an example of crop rotation? A. Corn → corn → corn B. Corn → soybean → corn C. Rice → rice → rice D. Corn → corn → soybean only once 22. One advantage of crop rotation is that it can: A. Always eliminate all pests B. Help maintain soil fertility and reduce some pests and diseases C. Increase soil compaction D. Always increase erosion 23. Conventional tillage generally involves: A. No soil disturbance B. Repeated plowing and harrowing C. Leaving all soil untouched D. Planting without any preparation 24. Minimum tillage: A. Uses less soil disturbance than conventional tillage B. Uses more plowing than conventional tillage C. Always removes crop residues D. Completely prevents erosion 25. No-tillage means: A. Soil is heavily plowed before planting B. Crops are planted with minimal soil disturbance C. Soil is completely removed D. Crops are never planted 26. Soil erosion is: A. The addition of nutrients to soil B. The removal and movement of soil by water or wind C. The movement of water into soil D. The decomposition of organic matter 27. Why is soil erosion harmful to soil fertility? A. It removes fertile topsoil containing nutrients and organic matter B. It increases all nutrients C. It increases soil organic matter D. It improves root growth ⸻ PART II — True or False 28. A fertile soil is always a productive soil. 29. All productive soils are fertile. 30. Soil fertility is one factor that affects soil productivity. 31. Soil productivity considers the crop yield obtained under a given management system. 32. Soil texture refers to the amount of sand, silt, and clay. 33. Sandy soil generally drains water faster than clayey soil. 34. Soil structure refers to how individual soil particles group together into aggregates. 35. Soil structure can never be changed by management practices. 36. Good soil structure promotes movement of air and water and supports root growth. 37. Compacted soil usually has fewer pore spaces. 38. Plants need soil water for germination, nutrient absorption, and growth. 39. Soil pH has no effect on nutrient availability. 40. Very acidic or very alkaline soils can make some nutrients unavailable. 41. Soil microorganisms help in decomposition and nutrient cycling. 42. Having more microorganisms automatically means the soil is always more fertile. 43. Organic matter can improve water-holding capacity and soil structure. 44. Monocropping means growing different crops in sequence. 45. Crop rotation can help maintain soil fertility. 46. Minimum tillage causes more soil disturbance than conventional tillage. 47. No-tillage minimizes soil disturbance. 48. Soil erosion can remove nutrient-rich topsoil. ⸻ PART III — Identification 49. Ability of soil to supply essential nutrients needed by plants. 50. Ability of soil to produce a good crop yield under a given management system. 51. Factors related to soil that affect plant growth. 52. The relative amounts of sand, silt, and clay in soil. 53. The arrangement or grouping of soil particles into aggregates. 54. The amount of air present in the spaces between soil particles. 55. The pressing of soil particles closely together, reducing pore spaces. 56. Dead plants, animals, and other organic materials present in or added to soil. 57. Growing the same crop repeatedly on the same land. 58. Growing different crops in sequence on the same land. 59. A tillage system involving more intensive soil disturbance such as repeated plowing and harrowing. 60. A tillage system that uses less soil disturbance than conventional tillage. 61. A system where crops are planted with minimal soil disturbance and crop residues are often left on the surface. 62. The removal and movement of soil by water or wind. ⸻ PART IV — Situational Questions 63. A farmer has soil that contains enough nutrients, but the soil is heavily compacted. The roots cannot penetrate properly and the crop grows poorly. Is the soil fertile, productive, or both? Explain. 64. A clayey field retains a lot of water, while a sandy field drains water quickly. Which soil property is responsible for this difference? 65. A farmer repeatedly uses heavy machinery on the same field. The soil becomes dense, roots struggle to grow, and water movement decreases. What soil condition has developed? 66. A farmer adds organic matter to the soil. After some time, the soil has better structure, improved water-holding capacity, and increased nutrient cycling. What soil component caused these improvements? 67. A farmer plants corn every year on the same land: Corn → Corn → Corn → Corn. What cropping system is being practiced? 68. Another farmer plants Corn → Soybean → Corn → Soybean. What cropping system is this? 69. A farmer reduces plowing and harrowing to protect the soil from erosion. What tillage system is being practiced? 70. A farmer plants crops without conventional plowing and leaves crop residues on the soil surface. What management system is this? 71. A field has good fertility and sufficient nutrients, but poor drainage, severe compaction, and poor management result in low crop yield. What does this demonstrate about soil fertility and productivity? 72. Heavy rainfall causes the removal of the nutrient-rich topsoil from a field. Which soil management problem is occurring? ⸻ PART V — Challenge Questions 73. Why is a fertile soil not necessarily a productive soil? 74. Why is soil fertility considered a potential or inherent capability, while soil productivity refers more to actual performance or yield? 75. Explain how soil texture, soil structure, soil water, and soil aeration work together to affect plant growth. 76. Explain how soil compaction can lead to stunted plant growth. 77. Explain why organic matter is important in maintaining soil fertility. 78. Compare monocropping and crop rotation in terms of soil fertility and management. 79. Compare conventional tillage, minimum tillage, and no-tillage. 80. Explain how soil erosion can cause both soil fertility decline and reduced soil productivity. Quick distinction to memorize Soil Fertility = POTENTIAL → ability to supply essential nutrients. Soil Productivity = PERFORMANCE → ability to produce a good crop yield under a given management system.
10
Updated 6d ago
0.0(0)
flashcards
Korean Book Minis 12
16
Updated 6d ago
0.0(0)
flashcards
Mini Quiz Questions
28
Updated 7d ago
0.0(0)
flashcards
periodic-table-minimal
4
Updated 11d ago
0.0(0)
flashcards
FFM2 Mini 2
68
Updated 19d ago
0.0(0)
flashcards
mini sac KK9 and 10
14
Updated 21d ago
0.0(0)
flashcards
Mini Food Test Part 4 Study
19
Updated 23d ago
0.0(0)
Users (140)