Breathing Control

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Study Tools For Breathing Control

Upper Respiratory System (Image)
Respiratory Anatomy (Image)
Nervous Control of Breathing (Image)
Breathing Control & Movements (Cheatsheet)
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Outline

Overview

  1. Control of Breathing
    1. Nervous control
    2. Chemical control

Nursing Points

General

  1. Nervous control of breathing movements
    1. Centers
      1. Medulla oblongata
        1. Dorsal respiratory group (DRG)
          1. Inhalation
        2. Ventral respiratory group (VRG)
          1. Exhalation
      2. Pons
        1. Pontine respiratory group (PRG)
          1. Exhalation
        2. Apneustic center
          1. Inhalation & rate
          2. Constant signals to DRG
    2. Control of normal quiet breathing – a somewhat passive process
      1. DRG active for 2 sec → impulses to respiratory muscles → inhalation
      2. DRG inactive for 3 sec → no impulse to respiratory muscles → relax → exhalation
      3. RECAP: Inhalation with passive exhalation
    3. Control of rapid deep breathing – a more active process
      1. Apneustic center stimulates DRG
      2. DRG stimulates:
        1. Respiratory muscles → inhale
        2. PRG
        3. VRG
      3. PRG inhibits:
        1. Apneustic center
          1. Stops signals to DRG
        2. DRG
          1. Stops inhalation
      4. VRG:
        1. Stimulates respiratory muscles to relax → exhale
        2. Inhibits DRG
      5. When the DRG stops, so do all the inhibitory signals
        1. Allows apneustic center to turn the DRG back on again
        2. The cycle continues
      6. RECAP: Inhalation with forced exhalation
      7. Analogy: “The Useless Box”
        1. Apneustic center = hand flipping switch
        2. DRG = switch to turn on inhalation, PRG, and VRG
        3. PRG/VRG = turn the switch back off
          1. → Exhalation
  2. Chemical regulation of breathing rate
    1. Factors
      1. pCO2 in arterial blood
      2. [H+] in arterial blood
      3. Lack of O2 in arterial blood
      4. All based on the Carbonic Acid reaction
        1. CO2 + H2O ←→ H2CO3 ←→ H+ + HCO3
    2. Hypercapnia – pCO2 elevated above normal
      1. Carbonic acid reaction shifts to the right
      2. Increased H+ sends nerve impulses to the respiratory centers in the Medulla Oblongata
      3. Impulses sent to respiratory muscles to increase respiratory rate  (hyperpnea)
      4. More exhalation of CO2 = decreased pCO2 in blood
      5. Carbonic acid reaction reverses
      6. Decreased H+ stops nerve impulses
      7. Return to eupnea (normal breathing)
    3. Acidosis – high H+ concentration in blood
      1. Respiratory acidosis
        1. Decreased pH caused by increased pCO2 (hypercapnia)
      2. Metabolic acidosis
        1. Increased acid in blood related to metabolic (lactic acid, ketoacids, excess H+)
      3. What happens
        1. Increased H+ in blood
        2. Peripheral chemoreceptors in internal carotid artery send impulses to respiratory center in Medulla Oblongata
        3. Impulses sent to respiratory muscles to increase respiratory rate  (hyperpnea)
        4. Decreases CO2 to TRY to decrease acidity of arterial blood
        5. Respiratory acidosis – helps to solve the problem
        6. Metabolic acidosis – process continues until the source of acid is terminated
          1. Respiratory center attempts to alleviate, but can’t completely fix it
    4. Hypoxemia – lack O2 in arterial blood
      1. Detected by peripheral chemoreceptors
      2. Signals to Medulla Oblongata
        1. Increase respiratory rate and depth
        2. Increased O2 respiration
      3. Occurs at high altitudes in normal person

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Transcript

In this lesson we’re going to talk about the aspects of our body systems that actually control our breathing.

There are two main things that help control breathing. One is nervous control, which involves breathing centers in the brain stem and nerve signals to the respiratory muscles. We also see chemical regulation where our brain makes changes to our breathing based on chemical concentrations in the blood. We’re going to talk about each of these two things separately and hopefully make them a little easier to understand for you.

First, let’s look at the main breathing centers in the brain. Remember, these breathing centers are in the two parts of the brainstem called the medulla oblongata and the pons. In the medulla we have the dorsal respiratory group or DRG and the ventral respiratory group or VRG. In the pons, we have the pontine respiratory group or PRG and the apneustic center. Now, in this image you’ll see that the apneustic center sends signals to the DRG – which sends signals to the external intercostals and the diaphragm. Remember from the breathing movements lesson that those are the muscles involved in inhalation and normal at rest exhalation. The DRG also sends signals to the VRG if necessary to control the accessory respiratory muscles like the abdominal muscles and the internal intercostals – this would be for rapid or forceful exhalation, like during exercise. You’ll also notice that the pontine respiratory group also sends inhibitory signals back down to the DRG – this becomes a little negative feedback loop to help with our respiratory cycle. So let’s look closer at how these different centers work together for breathing.

Now – during normal quiet breathing, we don’t see that much happening. Basically the DRG is active for 2 seconds, allowing those respiratory muscles to contract, then it’s inactive for 3 seconds, allowing them to relax. Remember that in normal, quiet breathing, our relaxation is actually a passive process. We contract to inhale, then simply relax to exhale. All of this is controlled in the medulla by the dorsal respiratory group. But – if we start to have more active, rapid, deep breathing, we’ve got to do things a little differently.

That’s where the rest of the breathing centers come into play. In rapid, deep breathing, the apneustic center basically starts sending constant signals to the DRG. When the DRG gets stimulated, it sends signals to the respiratory muscles to inhale, just like it normally would. But it is also going to send signals to the PRG and the VRG – so let’s look at what those two centers do. The PRG will actually turn around and inhibit the apneustic center AND the DRG. So basically, the apneustic center turned on the switch (which is the DRG) and the PRG turns right back around and turns them both off again. In just a minute I’m going to give you an illustration that will make this make so much more sense, but remember the DRG also stimulated the VRG, so let’s look at what the VRG is doing. The VRG will stimulate those OTHER respiratory muscles, the abdominal muscles and internal intercostals, to force a more rapid exhalation. And, it, TOO, will turn around and inhibit the DRG. So what the heck – the apneustic center turns on the DRG, the DRG tells us to breathe, and turns on the PRG and VRG, which both turn around and turn the dang DRG off again. Well, again – this is our negative feedback loop. As soon as the DRG is off, these inhibitory signals will also stop – which allows the apneustic center’s constant signals to turn the DRG back on again – it’s a cycle! Let me give you an illustration that will help…

Some of you may have seen this before, or something like it. The hand turns on the switch, the switch makes the box open and the arm come out, which then turns the switch back off. If you google “useless box” or “useless machine” you’ll find dozens of videos, some of them are pretty funny. So how does this relate? The apneustic center turns on the DRG – we inhale (that’s the box opening). That turns on the PRG and VRG (which is the little arm) – which turns the DRG back off again (the switch) and let’s us exhale (the box closes) – then, the apneustic center is now able to turn the drg back on again!

So – the hand is the apneustic center. The switch is the DRG. The box opening is inhalation. The arm is the PRG and VRG. And the box closing is exhalation. Let’s watch it one more time – but you can always come back and watch this over and over to get it!

Breathe in. Breathe out. Breathe in. Breathe out. Remember the apneustic center signals are constant, so once it’s no longer inhibited, it just turns the DRG right back on again! Breathe in. Breathe out. Breathe in. Breathe out. I hope that helped! I love this little box!

Okay, now that you’ve got that. Let’s talk about chemical regulation of breathing. There are three main things that the body will respond to. Changes in the partial pressure of carbon dioxide, written pCO2, changes in hydrogen ion concentration – so this would be like acidosis or alkalosis – and a lack of oxygen. The main factor here for all of this is the carbonic acid reaction. You may have seen this before in chemistry, but this is the basis for most of our acid-base balance in the body. We start with CO2 which gets added to water or H2O. Those together become H2CO3, which is carbonic acid. But, carbonic acid is unstable and will immediately break apart into hydrogen and bicarbonate. As you can see, this reaction could go either way depending on the situation. If we have too much CO2 it will shift to the right to make hydrogen and bicarb. If we want to make more CO2 to try to exhale it, it shifts to the left. So let’s look at a couple of examples of what happens to our breathing because of these reactions.

First we’ll talk about hypercapnia, which is a high partial pressure of carbon dioxide or pCO2. Partial pressure is just the fancy way we measure concentrations of gases. So – if I have a lot of CO2, the carbonic acid reaction or C-A-R shifts to the right. That leads to more hydrogen ion concentration in the blood. THAT sends a signal to the medulla oblongata (which we just talked about) and tells it to increase the respiratory rate. A faster respiratory rate means I’m exhaling more CO2, so my CO2 levels drop. The C-A-R can reverse or stop, so we stop having too much hydrogen, the signals to the medulla stop, and our respiratory rate can return to normal – which remember is called eupnea. So it’s basically a feedback loop, too – too much CO2 – create more hydrogen – tells the brain to breathe faster to get rid of the CO2 – I stop creating more hydrogen – brain signals stop – breathing goes back to normal.

Another time we see basically the same reaction is in acidosis. Acidosis is when we have too much hydrogen in the blood. The only difference here is that that excess hydrogen may not be from this reaction – it might be because of OTHER acids in the blood. Ultimately we see the same response – a signal to the medulla to increase the respiratory rate – and a decrease in CO2 because we’re breathing it all off. The goal here is to shift this back to the left, decrease the acids, and return to normal breathing. But again – remember that this could actually be from a totally different source of acids – so if we don’t actually correct the original problem, then this fast breathing (or tachypnea) will just continue and continue. So – remember in acidosis NOT caused by too much CO2, we always have to correct the source of the problem to fix the patient!

Lastly, the body has peripheral chemoreceptors that respond pretty strongly to low oxygen levels in the tissues, or hypoxia. This will also send signals to the medulla to increase our respiratory rate to try to help us get more oxygen into our system. Now – one thing to note is that at high altitudes, the atmosphere tends to just have less oxygen in it. So when people go up to higher altitudes, like if they’re climbing a mountain or something, we’ll see their respiratory rate increase to try to help them get more oxygen. This is a normal response. Over time, the body will acclimate and the respiratory rate will come down a little – but generally speaking, it stays higher than it would at sea level. I can tell you this from personal experience. I recently moved from South Carolina to Colorado and holy moly. I am always breathing really fast, especially when I work out, just to try to get oxygen!! I went from about 100 feet above sea level to 6500 feet! Definitely feeling the effects of less oxygen, that’s for sure!
Okay, let’s recap. Remember that our bodies have both nervous control and chemical control of our breathing. We have 4 main breathing centers in the medulla oblongata and the pons – the apneustic center, and the dorsal, ventral, and pontine respiratory groups. These help to create a negative feedback loop as the signals cycle around to help create our respiratory cycle of inhalation and exhalation. And the main chemical factors are changes in pCO2, changes in hydrogen concentration, and a lack of oxygen – and a huge contributor to all of this is the carbonic acid reaction. We’re going to talk more about the role of the carbonic acid reaction in the lesson on the respiratory functions of blood, so make sure you check that out.

And check out all of the other resources attached to this lesson as well. Now, go out and be your best selves today. And, as always, happy nursing!

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Study Plan Lessons

Anatomy & Physiology Course Introduction
Blood Pressure (BP) Control
Breathing Control
Bowel Elimination
Bone Structure
Drawing Blood from the IV
Gastrointestinal (GI) Course Introduction
Formation & Excretion of Urine
Inserting a Foley (Urinary Catheter) – Male
Male Reproductive Anatomy (Anatomy and Physiology)
Nursing Care Plan (NCP) for Bronchoscopy (Procedure)
Skeletal Muscle
Skin Structure & Function
Small Intestine
Stomach Video
Types of Epithelial (Skin) Tissue
Urinary System Anatomy (Anatomy and Physiology)
Development of Bones
Drawing Blood
Female Reproductive Anatomy (Anatomy and Physiology)
Intro to Circulatory System
Large Intestine
Liver & Gallbladder
Muscle Contraction
Muscle Physiology
Nervous System Anatomy
Renal (Kidney) Structure & Function
Respiratory A&P Module Intro
Respiratory Functions of Blood
Respiratory Structure & Function
Selecting THE vein
Sensory Basics
Skeletal Anatomy
The Heart
ABG Course (Arterial Blood Gas) Introduction
Adrenal Gland
Arterial Pressure Monitoring
Blood Grouping
Blood Plasma
Blood Vessels
Breathing Movements
Calculating Heart Rate
Cardiac (Heart) Physiology
Cardiac A&P Module Intro
Connective Tissues
Digestion & Absorption
Digestive System Anatomy
Body Image Changes Throughout Development
Cultural Awareness and Influences on Development
Cultural Considerations (Interpretive Services, Privacy, Decision Making) for Certified Emergency Nursing (CEN)
Day in the Life of a Hospice, Palliative Care Nurse
Developmental Considerations for End of Life Care
Developmental Considerations for the Hospitalized Individual
Developmental Stages and Milestones
End of Life for Progressive Care Certified Nurse (PCCN)
End-of-Life and Palliative Care (Organ and Tissue Donation, Advance Directives, Care Withholding, Family Presence) for Certified Emergency Nursing (CEN)
Environmental and Genetic Influences on Growth & Development
Erikson’s Theory of Psychosocial Development
Family Structure and Impact on Development
Geriatric: IV Insertion
Growth & Development – Neonate
Growth & Development – Toddlers
Growth & Development – Early Adulthood
Growth & Development – Infants
Growth & Development – Late Adulthood
Growth & Development – Middle Adulthood
Growth & Development – Preschoolers
Growth & Development – School Age- Adolescent
Growth & Development – Toddlers
Growth & Development -Transitioning to Adult Care
Growth and Development – Prenatal
Handling Death and Dying
Human Growth & Development Course Introduction
Kohlberg’s Theory of Moral Development
Overview of Childhood Growth & Development
Overview of Developmental Theories
Pain Management for the Older Adult – Live Tutoring Archive
Palliative Care for Progressive Care Certified Nurse (PCCN)
Piaget’s Theory of Cognitive Development
Postmortem Care
Self Concept
54 Common Medication Prefixes and Suffixes
Alpha-fetoprotein (AFP) Lab Values
Carboxyhemoglobin Lab Values
Cardiac Terminology
Diagnostic Testing Course Introduction
Diagnostics Terminology
Digestive Terminology
Gamma Glutamyl Transferase (GGT) Lab Values
Growth Hormone (GH) Lab Values
Hematology Oncology & Immunology Terminology
Integumentary (Skin) Terminology
Mean Corpuscular Volume (MCV) Lab Values
Mean Platelet Volume (MPV) Lab Values
Medical Terminology Course Introduction
MedTerm Basic Word Structure
MedTerm Body as a Whole
MedTerm Prefixes
MedTerm Suffixes
Metabolic & Endocrine Terminology
Methemoglobin (MHGB) Lab Values
Musculoskeletal Terminology
Myoglobin (MB) Lab Values
Neuro Terminology
Pharmacology Terminology
Prealbumin (PAB) Lab Values
Procedural Terminology
Psychiatry Terminology
Reproductive Terminology
Respiratory Terminology
Sensory Terminology
Urinary Terminology
01.01 CCRN Test Overview for CCRN Review
12 Points to Answering Pharmacology Questions
5 Rules for Powerpoint
5 Things You Never Knew About The NCLEX – Live Tutoring Archive
9 Easy Steps to Passing Every Nursing School Test | With Jon Haws, BSN, RN, Founder of NURSING.com
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Advanced Critical Thinking
Alcoholism – Outcomes Nursing Mnemonic (BAD)
Alkalosis and Acidosis Nursing Mnemonic (Kick Up, Drop Down)
Anatomy of an NCLEX Question
Anticholinergics – Side Effects Nursing Mnemonic (4 Can’ts)
Arterial Blood Gases Nursing Mnemonic (ROME)
Ask Questions
Assessment for Myasthenic Crisis Nursing Mnemonic (BRISH)
Avoiding Alarm Fatigue
Backwards and Forwards
Bacterial Endocarditis – Symptoms Nursing Mnemonic (Be Joan Of Arc)
Be a Mix Tape (Rewind and Fast-Forward)
Beta 1 and Beta 2 Nursing Mnemonic (1 Heart, 2 Lungs)
Bloom’s Taxonomy
C – Content
Can You Draw It
Canes Nursing Mnemonic (COAL)
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Caring Licensed Practical Nurse Nursing Mnemonic (CLPN)
Caring Practices for Progressive Care Certified Nurse (PCCN)
Causes of Dyspnea Nursing Mnemonic (The 6 P’s)
Causes of Poor Gas Exchange Nursing Mnemonic (All People Can Value Lungs)
Chance’s Story on His Personal Journey
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CHO, CHO, CHON Nursing Mnemonic (CHO, CHO, CHON)
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Common Signs of Parkinson’s Nursing Mnemonic (SMART)
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Complications of Thoracentesis Nursing Mnemonic (Patients Sometimes Bleed Internally)
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Cor Pulmonale – Signs & Symptoms Nursing Mnemonic (Please Read His Text)
Course Introduction to Nursing School Preparation
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Degree Restrictions in Career Growth
Denying Feelings
Dig for the Why
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Drugs for Bradycardia & Low Blood Pressure Nursing Mnemonic (IDEA)
Duplicate Facts
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Electrolytes – Location in Body Nursing Mnemonic (PISO)
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Evaluation of Irregular Moles Nursing Mnemonic (ABCDE)
Exercise Guidelines Nursing Mnemonic (FIT)
Explaining the “Why”
Exporting and Uploading to Frame.io
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Fetal Wellbeing Assessment Tests Nursing Mnemonic (ALONE)
Fire Safety 1 Nursing Mnemonic (PASS)
Fire Safety 2 Nursing Mnemonic (RACE)
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Getting Started with Tech
Gluten Free Diet Nursing Mnemonic (BROW)
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HESI® Prep Course Introduction
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How to Write a Nursing Care Plan
Hyperkalemia – Causes Nursing Mnemonic (MACHINE)
Hyperkalemia – Management Nursing Mnemonic (AIRED)
Hyperkalemia – Signs and Symptoms Nursing Mnemonic (Murder)
Hypernatremia – Causes Nursing Mnemonic (MODEL)
Hypoglycemia – Signs and Symptoms Nursing Mnemonic (TIRED)
IADLS (Instrumental Activities of Daily Living) Nursing Mnemonic (SCUM)
Identifying Interventions per Nursing Diagnoses for Certified Perioperative Nurse (CNOR)
Identifying Measurable Patient Outcomes for Certified Perioperative Nurse (CNOR)
Increase MAP Nursing Mnemonic (VAK)
Inflammation- Signs and Symptoms Nursing Mnemonic (HIPER)
Interventions for Aphasia Nursing Mnemonic (PROP)
Interviewing for Nursing School
Introduction to CCMM
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Keep it Short
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Lidocaine Toxicity – Signs and Symptoms Nursing Mnemonic (SAMS)
Management of Pressure Ulcers (Pressure Injuries) Nursing Mnemonic (SKIN)
MAO Inhibitors Nursing Mnemonic (TIPS)
Marie’s Story on Her Personal Nursing Journey
Medications to Prevent Seizures Nursing Mnemonic (Pretty Little Liars Forever)
Miriam’s Story on Her Personal Journey
Mnemonic for Organ Systems (MR DICE RUNS)
MSN (Masters) vs. DNP (Doctorate)
Multiple Sclerosis Symptoms Nursing Mnemonic (DEMYELINATION)
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Need Help Making A Study Plan? – Live Tutoring Archive
NRSNG | Closing Thoughts
NRSNG Live | 5 Things You Never Knew About NCLEX Questions
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NRSNG Live | AMA Student Panel – How I Survive (Barely) Nursing School
NRSNG Live | How I Went From Nursing School Dropout to Passing NCLEX in 75 and Teaching 18 Million Nurses
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NRSNG Live | My Super Secret Note Taking Method
NRSNG Live | The Core Content Mastery Method and How to Use it Throughout Your Nursing Journey
NRSNG Live | The Successful State of Mind
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Nursing Care Plans Course Introduction
Nursing Case Study Introduction
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Nursing School Application Essay
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Opposite or the Same – Live Tutoring Archive
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Pharmacokinetics Nursing Mnemonic (ADME)
Pictures
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Planning Community Health Interventions Nursing Mnemonic (PRECEDE-PROCEED)
Post-Partum Assessment Nursing Mnemonic (BUBBLE)
Prioritization
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Questions To Ask Before Applying To A Nursing Program
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SATA like a BOSS – Live Tutoring Archive
SATA like a BOSS 2 – Live Tutoring Archive
SBAR Communication Nursing Mnemonic (SBAR)
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Seizure Documentation Nursing Mnemonic (TDOC)
Share the Wealth
Shock – Signs and symptoms Nursing Mnemonic (TV SPARC CUBE)
SSRI’s Nursing Mnemonic (Effective For Sadness, Panic, and Compulsions)
Start and End with the Linchpin
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Steps in the Nursing Process 2 Nursing Mnemonic (AAPIE)
Steps In The Nursing Process 3 Nursing Mnemonic (SOAPIE)
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Trauma – Complications Nursing Mnemonic (TRAUMATIC)
Trauma Surgery – Medical History Nursing Mnemonic (AMPLE)
Triage Nursing Mnemonic (START)
Trusting your Gut
Two pathways of the peripheral nervous system Nursing Mnemonic (SAME)
Using Nursing Care Plans in Clinicals
Vasospasm Therapy Nursing Mnemonic (Triple H Therapy)
VEAL CHOP Nursing Mnemonic (Fetal Accelerations and Decelerations) (VEAL CHOP)
Vitamins – Fat Soluble Nursing Mnemonic (All Dogs Eat Kibble)
Vitamins – Water Soluble Nursing Mnemonic (Birth Control)
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Cefdinir (Omnicef) Nursing Considerations
Cell Membrane Permeability
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CHO, CHO, CHON Nursing Mnemonic (CHO, CHO, CHON)
Disposal of Medical Waste
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Hazardous Material Handling and Disposition (Chemo, Radioactive) for Certified Perioperative Nurse (CNOR)
Hb (Hepatitis) Vaccine
Healthcare-Acquired Infections: Central-Line-Associated Infections (CLABSI) for Progressive Care Certified Nurse (PCCN)
Homeostasis
Host defenses
Human Biology Course Introduction
Infection or Inflammation? The Quick & Dirty on CBCs – Live Tutoring Archive
Infection or Inflammation? The Quick & Dirty on CBCs 2 – Live Tutoring Archive
Infection Stages
Infectious Diseases: Multidrug-Resistant Organisms (MRSA, VRE, CRE, ESBL) for Progressive Care Certified Nurse (PCCN)
Inflammation- Signs and Symptoms Nursing Mnemonic (HIPER)
Intro to Cell Metabolism
Intro to Ions & Molecules
Key Nutrients in the Prevention of Chronic Disease
Lipids, Carbohydrates & Proteins
Macro and Micronutrients
Mechanisms of Antimicrobial Agents
Meiosis & Mitosis
Membranous Organelles
Molecular vs Serological Diagnosis
Multi-Drug Resistant Organisms (MRSA, VRE) for Certified Emergency Nursing (CEN)
Mycotoxins and Mycotoxicosis
Needle Safety
Non-Membranous Organelles
Nursing Care Plan (NCP) for Infection
Nursing Care Plan (NCP) for West Nile Virus
Nutrition Course Introduction
Nystatin (Mycostatin) Nursing Considerations
Parasites and Parasite Replication
Protein Synthesis & Nucleic Acids
Tonicity of Solutions – Live Tutoring Archive
Viral Reproduction
Viruses & Fungi
12 Points to Answering Pharmacology Questions
6 Rights of Medication Administration
ACLS (Advanced cardiac life support) Drugs
Adenosine (Adenocard) Nursing Considerations
Amiodarone (Pacerone) Nursing Considerations
Anesthetic Agents
Anti-Infective – Antifungals
Anti-Platelet Aggregate
Antianxiety Meds
Antidepressants
Atenolol (Tenormin) Nursing Considerations
Atropine (Atropen) Nursing Considerations
Barbiturates
Bariatric: IV Insertion
Basics of Calculations
Benztropine (Cogentin) Nursing Considerations
Bisacodyl (Dulcolax) Nursing Considerations
Buspirone (Buspar) Nursing Considerations
Carbidopa-Levodopa (Sinemet) Nursing Considerations
Cefdinir (Omnicef) Nursing Considerations
Celecoxib (Celebrex) Nursing Considerations
Codeine (Paveral) Nursing Considerations
Combative: IV Insertion
Complex Calculations (Dosage Calculations/Med Math)
Cyclosporine (Sandimmune) Nursing Considerations
Dark Skin: IV Insertion
Dimensional Analysis Nursing (Dosage Calculations/Med Math)
Diphenoxylate-Atropine (Lomotil) Nursing Considerations
Drawing Blood from the IV
Drawing Up Meds
Drug Interactions Nursing Mnemonic (These Drugs Can Interact)
Epoetin Alfa
Eye Prophylaxis for Newborn
Fentanyl (Duragesic) Nursing Considerations
Geriatric: IV Insertion
Giving Medication Through An IV Set Port
Glipizide (Glucotrol) Nursing Considerations
Guaifenesin (Mucinex) Nursing Considerations
Hanging an IV Piggyback
How to Remove (discontinue) an IV
How to Secure an IV (chevron, transparent dressing)
Hydralazine
Hydrocodone-Acetaminophen (Vicodin, Lortab) Nursing Considerations
Hydromorphone (Dilaudid) Nursing Considerations
IM Injections
Injectable Medications
Insulin
Insulin – Long Acting (Lantus) Nursing Considerations
Insulin – Mixtures (70/30)
Insulin Drips
Insulin Mixing
Interactive Pharmacology Practice
Interactive Practice Drip Calculations
IV Catheter Selection (gauge, color)
IV Complications (infiltration, phlebitis, hematoma, extravasation, air embolism)
IV Drip Administration & Safety Checks
IV Drip Therapy – Medications Used for Drips
IV Infusions (Solutions)
IV Insertion Angle
IV Insertion Course Introduction
IV Placement Start To Finish (How to Start an IV)
IV Pump Management
IV Push Medications
Ketorolac (Toradol) Nursing Considerations
Labeling (Medications, Solutions, Containers) for Certified Perioperative Nurse (CNOR)
Lidocaine (Xylocaine) Nursing Considerations
Magnesium Sulfate
Magnesium Sulfate in Pregnancy
Maintenance of the IV
Mannitol (Osmitrol) Nursing Considerations
MAOIs
Medication Errors
Medication Reconciliation Review for Certified Perioperative Nurse (CNOR)
Medications in Ampules
Meds for Postpartum Hemorrhage (PPH)
Meperidine (Demerol) Nursing Considerations
Methadone (Methadose) Nursing Considerations
Methylergonovine (Methergine) Nursing Considerations
Metoclopramide (Reglan) Nursing Considerations
Montelukast (Singulair) Nursing Considerations
Mood Stabilizers
Nalbuphine (Nubain) Nursing Considerations
Needle Safety
Neostigmine (Prostigmin) Nursing Considerations
NG Tube Med Administration (Nasogastric)
NG Tube Medication Administration
Nitro Compounds
NRSNG Live | The S.O.C.K Method for Mastering Nursing Pharmacology and Never Forgetting a Medication Again
Nystatin (Mycostatin) Nursing Considerations
OB Pharm and What Drugs You HAVE to Know – Live Tutoring Archive
Olanzapine (Zyprexa) Nursing Considerations
Opioid Analgesics in Pregnancy
Oral Medications
Oxycodone (OxyContin) Nursing Considerations
Pain Management for the Older Adult – Live Tutoring Archive
Pain Management Meds – Live Tutoring Archive
Parasympathomimetics (Cholinergics) Nursing Considerations
Patient Controlled Analgesia (PCA)
Pediatric Dosage Calculations
Pentobarbital (Nembutal) Nursing Considerations
Pharmacodynamics
Pharmacokinetics
Pharmacokinetics Nursing Mnemonic (ADME)
Pharmacology Course Introduction
Phenobarbital (Luminal) Nursing Considerations
Phytonadione (Vitamin K) for Newborn
Pill Crushing & Cutting
Positioning
Procainamide (Pronestyl) Nursing Considerations
Propofol (Diprivan) Nursing Considerations
Quetiapine (Seroquel) Nursing Considerations
Ranitidine (Zantac) Nursing Considerations
Rh Immune Globulin in Pregnancy
Sedatives-Hypnotics
Sedatives-Hypnotics
Selecting THE vein
Spiking & Priming IV Bags
Starting an IV
Streptokinase (Streptase) Nursing Considerations
Struggling with Dimensional Analysis? – Live Tutoring Archive
SubQ Injections
Supplies Needed
Tattoos IV Insertion
TCAs
The SOCK Method – C
The SOCK Method – K
The SOCK Method – O
The SOCK Method – Overview
The SOCK Method – S
The SOCK Method of Pharmacology 1 – Live Tutoring Archive
The SOCK Method of Pharmacology 2 – Live Tutoring Archive
The SOCK Method of Pharmacology 3 – Live Tutoring Archive
Tips & Tricks
Tips & Advice for Newborns (Neonatal IV Insertion)
Tips & Advice for Pediatric IV
Understanding All The IV Set Ports
Using Aseptic Technique
Verapamil (Calan) Nursing Considerations