Breathing Movements

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Study Tools For Breathing Movements

Gas Exchange (Cheatsheet)
Visceral & Parietal Pleura (Image)
Breathing Control & Movements (Cheatsheet)
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Outline

Overview

  1. Terminology
    1. Eupnea – normal quiet breathing
    2. Apnea – no breathing movements
    3. Hyperpnea – rapid deep breathing
    4. Dyspnea – labored breathing
      1. In diseased conditions like pneumonia

Nursing Points

General

  1. Relationship of lungs to thoracic cavity
    1. Parietal pleura
      1. Lines internal intercostals and ribs
      2. Covers top of diaphragm
    2. Visceral pleura—covers lungs
    3. Pleural space—between pleurae
      1. Pleural fluid in pleural space
        1. “Glue” – lungs maintain contact with thoracic wall and diaphragm
    4. If volume of thoracic cavity increases, causes lung volume to increase
  2. Breathing movements
    1. Inhalation at rest AND vigorous exercise
      1. Cause:
        1. Contraction of external intercostals
          1. Ribs move forward and upward
        2. Contraction of diaphragm
          1. Becomes flatter
      2. Effect:
        1. Increases volume in thoracic cavity → lungs expand
          1. Air pressure in alveoli decreases (becomes negative)
          2. Air outside pulled into lungs → INHALATION
    2. Exhalation at rest
      1. Cause:
        1. Relaxation of external intercostals
          1. Ribs move down and back
        2. Relax diaphragm
          1. More dome-shaped
      2. Effect:
        1. Decreases volume in thoracic cavity → lung volume decreases
          1. Air pressure in alveoli increases (becomes positive)
          2. Air inside pushed out → EXHALATION
    3. Exhalation during vigorous exercise
      1. Cause:
        1. Contraction of internal intercostals
          1. Thoracic cage down and back
        2. Abdominal muscles contract
          1. Compresses abdominal contents
      2. Effect:
        1. Decreases volume of thoracic cavity → lung volume decreases
          1. Air pressure in alveoli increases
          2. Air inside forcefully pushed out → EXHALATION
  3. Lung Volumes
    1. Tidal Volume – volume exchanged with each normal breath
      1. Male and Female – 500cc
    2. IRV – “inspiratory reserve volume” – max air intake possible after normal breath
      1. Male – 3000cc
      2. Female – 2100cc
    3. ERV – “expiratory reserve volume” – max exhalation after normal exhale
      1. Male – 1200cc
      2. Female – 800cc
    4. Vital Capacity – ERV + IRV + TV
      1. Male – 4700cc
      2. Female – 3400cc
    5. Residual Volume – air remaining in lungs after forced expiration (past ERV)
      1. Male – 1200cc
      2. Female – 1000cc
    6. Total Lung Capacity – RV + ERV + IRV + TV
      1. Male – 5900cc
      2. Female – 4400cc
    7. Dead Space Air – “anatomical dead space” – air from nostrils to terminal bronchioles – no gas exchange occurs here
      1. Male and Female – 150cc

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Transcript

Okay guys, in this lesson we’re going to talk about the movements associated with breathing. You’ll remember in the respiratory structure and function lesson we talked about the lungs being inside the thoracic cavity – what we’re going to see here is how that plays a role in our actual ability to breathe.

Some basic things you need to be aware of before you can understand breathing movements is the anatomy of the thoracic cavity as it relates to lungs. We talked about these membranes in the membranes lesson if you want a little refresher. Any time we’re talking about the lungs or the thoracic cavity, we’re going to use the word pleura or pleural. So let’s remind ourselves of this – we have the parietal pleura, which lines the thoracic cavity, then we have the visceral pleura around the lungs themselves. Then, in the space between those, we have pleural fluid – that pleural fluid contains surfactant and basically serves to stick the two pleural membranes together. SO – what we see is that if the thoracic cavity expands – it pulls the lungs out with it. If it contracts, the lungs will also contract down. So – let’s see what that looks like when we’re actually breathing.

Let’s talk about inhalation or inspiration first. Now no matter whether we are breathing normally at rest or heavily during exercise, inspiration always happens the same way. First thing we’re going to see is the external intercostal muscles and the diaphragm contract. When that happens the ribs will move up and forward – go ahead and breathe in – you’ll see your ribs move up and forward! Normally the diaphragm is in this dome shape, but when it contracts it flattens out and moves down. So with those two movements happening, the volume of the thoracic cavity expands – and like we just said – when the cavity expands, so do the lungs. Now, here’s the part you need to get. When the ribcage pulls the lungs open like this, it actually creates a sucking action by causing a negative pressure inside the alveoli. Try this – put your hand over your open mouth and try to breathe in through your mouth – you’ll feel that sucking pressure. So when we breathe in, we are actually PULLING air into our lungs because of that negative pressure going on.

Now, let’s look at the opposite process. Exhalation can happen differently depending on whether we are at rest or in exercise. At rest, it’s more of a passive process. Basically we just reverse the actions we just saw with inhalation. We relax the external intercostals and relax the diaphragm. that allows the ribs to move back and down to where they were and the diaphragm comes back up to that dome shape. So – the overall volume of the cavity decreases. Now, think about if you had an inflated balloon and you let it go – the elasticity starts to make the balloon smaller… so, what happens to the pressure inside? It goes up, right? And what happens to the air? It gets pushed out of the hole. Same thing happens here – we let these muscles relax back down, so it creates positive pressure and pushes the air back out of the lungs. It’s a relatively passive process. Contract to inhale, but just relax to exhale.

Now – this process is a little different if we’re doing vigorous exercise. Instead of a passive process, it becomes an active, more forceful process. So we will still relax the external intercostals and diaphragm just like before, but we will ALSO contract the internal intercostals, which forces or pulls the ribs down and back faster than just relaxing the other muscles. We also contract our abdominal muscles, which increases the pressure in the abdominal cavity, which will force more pressure upward into the thoracic cavity. So instead of just relaxing, we’re actually FORCING this cavity to be much smaller, much faster. So rather than just passively pushing air out, we’re actually FORCEFULLY pushing the air out of the lungs. That allows us to breathe faster and deeper during exercise, but to still get the ventilation and respiration we need.

Now, quickly I just want to cover some terminology when it comes to breathing. It all has to do with how quickly and deeply we are breathing. For all of these you’re going to see the suffix p-n-e-a. That suffix refers to breathing. It’s different than -penia which would mean too little cells, like in thrombocytopenia. The first one is eupnea – think of the word “euphoria” – this is like wonderful, perfect breathing. So eupnea is normal rate, normal depth – normal breathing. Tachy means fast and brady means slow. So Tachypnea is fast breathing and bradypnea is slow breathing. Apnea – remember an ‘a’ in front of something means absent or none – so Apnea is a LACK of breathing – this is literally when someone is NOT breathing. We may also say they’re apneic. Hyperpnea – you know hyper means high or a lot, right? So hyperpnea is fast, heavy, deep breathing. This is more than just tachypnea – they are also taking super deep breaths, not just breathing fast. And last is dyspnea – think “dysfunction” – this is irregular or labored breathing – usually found with some sort of disease process.

The other thing you need to understand with this breathing process is the various lung volumes. I’m going to draw a quick little diagram here for you to understand this better. The first term is Tidal Volume – sometimes written TV, sometimes written VT . This is the total volume of a normal breath – when I breathe in and out fully, how much volume did I move with each breath. Then we have what are called residual volumes, both inspiratory and expiratory – that’s the extra volume we COULD pull even after a normal breath. Try this – take a normal breath in and hold it. Then without exhaling, breathe even deeper – that’s your inspiratory reserve. Then take a normal breath and breathe out normally, then try to blow more air out – that’s your expiratory reserve. All of that volume together – the tidal volume plus reserves is our vital capacity. We also have a little bit of air left in our lungs after that, which is called residual volume – and when you add that to everything else, you get total lung capacity. The only other thing to be aware of is what’s called Dead space Air – that’s the air in our upper respiratory tract that just always stays there because it’s always open.

So let’s recap the key points here. Remember that pnea and pleura refer to the lungs and breathing – medical terminology is super helpful for these things, so make sure you review that. Remember that when the thoracic cavity expands, the lungs also expand, and vice versa. So what we see is that those movements of the thoracic cavity will change the pressure inside the lungs which is what either pulls air in or pushes it out. And remember that exhalation during vigorous exercise is a more forceful exhale by contracting those internal intercostals and abdominal muscles to really force the air out harder and faster. And make sure you review the volumes – the big ones you need to know are tidal volume and residual volumes, which together make up our vital capacity.

As you are breathing in and out today – pay attention to which muscles you’re using! That will help this to all click for you! And, as you start learning about disease process, think about how anything that impacts these muscles could impact our ability to breathe. Now, go out and be your best selves today. And, as always, happy nursing!

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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
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Digestive System Anatomy
Body Image Changes Throughout Development
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Cultural Considerations (Interpretive Services, Privacy, Decision Making) for Certified Emergency Nursing (CEN)
Day in the Life of a Hospice, Palliative Care Nurse
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Developmental Considerations for the Hospitalized Individual
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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
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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
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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
Absolute Words
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Addiction – Behavioral Problems Nursing Mnemonic (The 5 D’s)
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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)
Care Plan Review (Addresses Patient Considerations) for Certified Perioperative Nurse (CNOR)
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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Child Abuse/Neglect – Warning Signs Nursing Mnemonic (CHILD ABUSE)
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)
Concept Map Course Introduction
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Degree Restrictions in Career Growth
Denying Feelings
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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)
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Gluten Free Diet Nursing Mnemonic (BROW)
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HESI® Prep Course Introduction
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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)
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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)
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Lidocaine Toxicity – Signs and Symptoms Nursing Mnemonic (SAMS)
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Marie’s Story on Her Personal Nursing Journey
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Miriam’s Story on Her Personal Journey
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Nursing Care Plans Course Introduction
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Pharmacokinetics Nursing Mnemonic (ADME)
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Planning Community Health Interventions Nursing Mnemonic (PRECEDE-PROCEED)
Post-Partum Assessment Nursing Mnemonic (BUBBLE)
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Same
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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
Steps in the Nursing Process 1 Nursing Mnemonic (ADPIE)
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Trauma Surgery – Medical History Nursing Mnemonic (AMPLE)
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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)
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Walkers Nursing Mnemonic (Wandering Wilma Always Late)
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Welcome to NURSING.com
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Cefdinir (Omnicef) Nursing Considerations
Cell Membrane Permeability
Cell Structure
Cellular Energy Conversion
CHO, CHO, CHON Nursing Mnemonic (CHO, CHO, CHON)
Disposal of Medical Waste
Fungal Infections
Genetic Basics
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Hb (Hepatitis) Vaccine
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Human Biology Course Introduction
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Inflammation- Signs and Symptoms Nursing Mnemonic (HIPER)
Intro to Cell Metabolism
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Key Nutrients in the Prevention of Chronic Disease
Lipids, Carbohydrates & Proteins
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Mycotoxins and Mycotoxicosis
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Nutrition Course Introduction
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Protein Synthesis & Nucleic Acids
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Dark Skin: IV Insertion
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Drawing Blood from the IV
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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