Nursing Care and Pathophysiology for Cardiomyopathy

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Nichole Weaver
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Included In This Lesson

Study Tools For Nursing Care and Pathophysiology for Cardiomyopathy

Cardiomyopathy Pathochart (Cheatsheet)
Types of Cardiomyopathy Chart (Cheatsheet)
Cardiomyopathy Cardiac (Image)
Cardiomyopathy Four Types (Image)
Cardiomegaly (Image)
Hypertrophic Cardiomyopathy Mechanisms (Picmonic)
Hypertrophic Cardiomyopathy Signs, Symptoms and Treatment (Picmonic)
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Outline

Overview

  1. Abnormality of the heart muscle leads to functional changes
Pathophysiology: Dilated cardiomyopathy occurs when the myocardium will dilate, thin, and undergo hypertrophy. This is caused by viral infections, toxins, connective tissue processes, or genetics. Hypertrophic cardiomyopathy occurs when the ventricle muscle thickens and this causes contraction of the heart to be stiff. The thicking overcrowds the space so there is less space to fill and fluid backs up. Restrictive occurs when the ventricles become rigid and cannot fully stretch to fill.


Nursing Points

General

  1. Types
    1. Dilated
      1. 4 chambers enlarged
      2. Walls thin, less force
      3. ↓ contractility, ↓ CO
    2. Hypertrophic
      1. Thick ventricle muscle
      2. Stiff contraction
      3. Less space to fill
      4. ↓ Preload, ↓ CO
    3. Restrictive
      1. Ventricles rigid
      2. Can’t stretch to fill
      3. ↓ SV, ↓ CO
  2. Causes
    1. Prolonged untreated hypertension
    2. Congestive Heart Failure
    3. Congenital disorders

Assessment

  1. s/s Heart Failure
    1. Fatigue
    2. SOB
    3. Dysrhythmias
    4. Extra heart sounds (S3/S4)
    5. Poor perfusion
    6. Volume overload
      1. JVD
      2. Pulmonary Edema
  2. Echocardiogram or Chest X-ray
    1. Visibly enlarged or thickened

Therapeutic Management

  1. No cure, only supportive
  2. Encourage frequent rest
  3. Minimize Stress
  4. Manage HTN
    1. DASH diet
    2. ACE-Inhibitors
    3. ARB’s
    4. Beta Blockers
      1. ↓ force of contraction
      2. ↓ workload
      3. ↓ O2 demands
  5. Ventricular Assist Devices
    1. Help eject blood from LV to aorta
    2. Bridge to heart transplant

Patient Education

  1. Frequent rest periods
  2. Cluster activities
  3. Take medications as prescribed
  4. Monitor blood pressure
  5. DASH diet
  6. Exercise when possible

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Transcript

We’re going to talk about cardiomyopathy. It’s a relatively simple topic and isn’t tested often, but if you’ve got a basic understanding of cardiac anatomy and hemodynamics, it’s really easy to understand. We can even break down the terminology here – so we know that “pathy” means disease, “myo” means muscle, and “cardio” means heart – so this is a disease of the heart muscle.

So, by definition cardiomyopathy is an abnormality of heart muscle that leads to functional changes in the heart. You can see here in this image that the muscle of the ventricles is super thick. This makes it really hard for it to contract and relax like it should. The most common causes are Hypertension and Heart Failure – the heart is working overtime and the ventricular muscle starts to change in response to that. There are three types, dilated, hypertrophic – which is what’s pictured here – and restrictive.

In dilated cardiomyopathy, you can see the muscles of the ventricles have enlarged and ballooned out. This muscle gets stretched out and really thin, like an overused rubberband. It’s so stretched that it can’t fully contract like it should. So you get decreased contractility – which leads to a decreased cardiac output.

In hypertrophic cardiomyopathy, you can see the ventricular muscle has gotten super thick. When it’s that thick it’s really stiff and doesn’t have much give. But also, you can see that the space in the ventricle where the blood would fill up is decreased. So you get a decreased preload, which of course leads to a decreased cardiac output.

Then, finally we have restrictive cardiomyopathy. In this type, the walls are normal size and it can contract okay, but the muscle is actually super rigid. Because it’s so rigid, it has NO stretch. If it can’t stretch, it struggles to fill and get a good amount of blood out to the body. So you get a decreased stroke volume and therefore a decreased cardiac output.

So dilated is a contractility problem, hypertrophic is a thick wall preload problem, and restrictive is a filling issue.

When we assess a patient with cardiomyopathy, we’re going to see those signs of heart failure – it almost mimics it. Decreased cardiac output means poor peripheral perfusion – so you’ll see the fatigue, shortness of breath, and dysrhythmias. It can also lead to volume overload because the blood is backing up so you may see JVD or pulmonary edema, or hear extra heart sounds (S3, and S4). Jump back to the heart failure lessons if you need a refresher on those symptoms. You’ll also see an enlarged heart on imaging – either in an echocardiogram or on an X-ray like this one showing how large the heart is, it’s taking up all this space here where the left lung should be. So you can imagine how they may also struggle to breathe because of this.

So when it comes to therapeutic management, one thing to note is that in most cases there’s no cure. Once the damage is done, it’s difficult to reverse. So our primary focus is on supportive care. That involves similar things we would do for a heart failure patient like encouraging rest and minimizing stress. We also want to treat their hypertension. this could be a DASH diet, ACE Inhibitors, or ARB’s, but the one that makes the most difference in this case is Beta Blockers. They will decrease the workload on the heart by decreasing force of contraction. This helps decrease the oxygen demand in the heart so it doesn’t have to keep working so hard – which could cause more damage. Then, in the late stages of cardiomyopathy, it’s possible that the patient could get a ventricular assist device like the one pictured here. The purpose is to help pull the blood out of the left ventricle and push it into the aorta since the ventricle itself is unable to do that. Usually these are used as a bridge to heart transplant.

So to sum up, cardiomyopathy is an abnormality of the heart muscle which leads to functional changes. There are three types – dilated, hypertrophic, and restrictive. Because it causes decreased cardiac output, the symptoms will mimic heart failure – poor peripheral perfusion and possibly volume overload. And finally remember there’s no real cure, we just need to provide supportive care, treat their hypertension, and manage their symptoms.

So, like we said, it’s pretty straight forward. If you understand basic cardiac physiology and hemodynamics, you can understand how this cardiac muscle disease will affect the patient. We hope you learned something! Now, go out and be your best selves today and, as always, happy nursing!

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Concepts Covered:

  • Circulatory System
  • Urinary System
  • Noninfectious Respiratory Disorder
  • Respiratory System
  • Integumentary Disorders
  • Respiratory Disorders
  • Labor Complications
  • Disorders of Pancreas
  • Pregnancy Risks
  • Cardiac Disorders
  • Eating Disorders
  • Respiratory Emergencies
  • Infectious Respiratory Disorder
  • Emergency Care of the Cardiac Patient
  • Vascular Disorders
  • Shock
  • Medication Administration
  • Upper GI Disorders
  • Fundamentals of Emergency Nursing
  • Understanding Society
  • Adulthood Growth and Development
  • Oncologic Disorders
  • Postoperative Nursing
  • Renal Disorders
  • Microbiology
  • Intraoperative Nursing
  • Shock
  • Tissues and Glands
  • Newborn Care

Study Plan Lessons

EKG (ECG) Course Introduction
Fluid & Electrolytes Course Introduction
Respiratory Course Introduction
Electrical A&P of the Heart
Respiratory A&P Module Intro
Electrolytes Involved in Cardiac (Heart) Conduction
Fluid Pressures
Lung Sounds
Alveoli & Atelectasis
Alveoli & Atelectasis
Fluid Shifts (Ascites) (Pleural Effusion)
Gas Exchange
Gas Exchange
Isotonic Solutions (IV solutions)
Hypotonic Solutions (IV solutions)
Hypertonic Solutions (IV solutions)
Preload and Afterload
Performing Cardiac (Heart) Monitoring
Lung Diseases Module Intro
The EKG (ECG) Graph
Nursing Care and Pathophysiology of Angina
Nursing Care and Pathophysiology for Asthma
EKG (ECG) Waveforms
Sodium-Na (Hypernatremia, Hyponatremia)
Calcium-Ca (Hypercalcemia, Hypocalcemia)
Calculating Heart Rate
Nursing Care and Pathophysiology of COPD (Chronic Obstructive Pulmonary Disease)
Nursing Care and Pathophysiology of Myocardial Infarction (MI)
Nursing Care and Pathophysiology of COPD (Chronic Obstructive Pulmonary Disease)
Chloride-Cl (Hyperchloremia, Hypochloremia)
Restrictive Lung Diseases (Pulmonary Fibrosis, Neuromuscular Disorders)
Nursing Care and Pathophysiology of Coronary Artery Disease (CAD)
Magnesium-Mg (Hypomagnesemia, Hypermagnesemia)
Nursing Care and Pathophysiology of Acute Respiratory Distress Syndrome (ARDS)
Nursing Care and Pathophysiology for Pulmonary Edema
Phosphorus-Phos
Normal Sinus Rhythm
Normal Sinus Rhythm
Respiratory Infections Module Intro
Nursing Care and Pathophysiology for Heart Failure (CHF)
Nursing Care and Pathophysiology for Influenza (Flu)
Sinus Bradycardia
Sinus Bradycardia
Sinus Tachycardia
Sinus Tachycardia
Nursing Care and Pathophysiology for Tuberculosis (TB)
Atrial Flutter
Pacemakers
Nursing Care and Pathophysiology of Pneumonia
Atrial Fibrillation (A Fib)
Atrial Fibrillation (A Fib)
Coronavirus (COVID-19) Nursing Care and General Information
Premature Atrial Contraction (PAC)
Supraventricular Tachycardia (SVT)
Premature Ventricular Contraction (PVC)
Premature Ventricular Contraction (PVC)
Ventricular Tachycardia (V-tach)
Ventricular Tachycardia (V-tach)
Ventricular Fibrillation (V Fib)
Ventricular Fibrillation (V Fib)
1st Degree AV Heart Block
2nd Degree AV Heart Block Type 1 (Mobitz I, Wenckebach)
2nd Degree AV Heart Block Type 2 (Mobitz II)
3rd Degree AV Heart Block (Complete Heart Block)
Oxygen Delivery Module Intro
Hierarchy of O2 Delivery
Nursing Care and Pathophysiology of Hypertension (HTN)
Artificial Airways
Artificial Airways
Airway Suctioning
Airway Suctioning
Nursing Care and Pathophysiology for Cardiomyopathy
Nursing Care and Pathophysiology for Thrombophlebitis (clot)
Respiratory Trauma Module Intro
Blunt Chest Trauma
Nursing Care and Pathophysiology for Hypovolemic Shock
Nursing Care and Pathophysiology for Cardiogenic Shock
Chest Tube Management
Nursing Care and Pathophysiology for Distributive Shock
Nursing Care and Pathophysiology for Pulmonary Embolism
Respiratory Procedures Module Intro
ABG (Arterial Blood Gas) Interpretation-The Basics
ABG (Arterial Blood Gas) Oxygenation
ABG Course (Arterial Blood Gas) Introduction
ABGs Nursing Normal Lab Values
ABGs Tic-Tac-Toe interpretation Method
Acute Coronary Syndrome (ACS) Module Intro
Bariatric: IV Insertion
Base Excess & Deficit
Blood Flow Through The Heart
Bronchoscopy
Cardiac A&P Module Intro
Cardiac Anatomy
Cardiac Course Introduction
Cardiovascular Disorders (CVD) Module Intro
Chest Tube Management
Combative: IV Insertion
Coronary Circulation
Dark Skin: IV Insertion
Drawing Blood from the IV
Fluid Compartments
Geriatric: IV Insertion
Giving Medication Through An IV Set Port
Heart (Cardiac) Failure Module Intro
Heart (Cardiac) Failure Therapeutic Management
Heart (Cardiac) Sound Locations and Auscultation
Hemodynamics
Hemodynamics
How to Remove (discontinue) an IV
How to Secure an IV (chevron, transparent dressing)
Isolation Precautions (MRSA, C. Difficile, Meningitis, Pertussis, Tuberculosis, Neutropenia)
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 Insertion Angle
IV Insertion Course Introduction
IV Placement Start To Finish (How to Start an IV)
Lactic Acid
Lung Sounds
Maintenance of the IV
Metabolic Acidosis (interpretation and nursing diagnosis)
Metabolic Alkalosis
MI Surgical Intervention
Needle Safety
Nursing Care and Pathophysiology for Aortic Aneurysm
Nursing Care and Pathophysiology for Arterial Disorders
Nursing Care and Pathophysiology for Asthma
Nursing Care and Pathophysiology for Cardiogenic Shock
Nursing Care and Pathophysiology for Cardiomyopathy
Nursing Care and Pathophysiology for Distributive Shock
Nursing Care and Pathophysiology for Heart Failure (CHF)
Nursing Care and Pathophysiology for Hypovolemic Shock
Nursing Care and Pathophysiology for Influenza (Flu)
Nursing Care and Pathophysiology for Pneumothorax & Hemothorax
Nursing Care and Pathophysiology for Thrombophlebitis (clot)
Nursing Care and Pathophysiology for Tuberculosis (TB)
Nursing Care and Pathophysiology for Valve Disorders
Nursing Care and Pathophysiology of Angina
Nursing Care and Pathophysiology of Coronary Artery Disease (CAD)
Nursing Care and Pathophysiology of Endocarditis and Pericarditis
Nursing Care and Pathophysiology of Hypertension (HTN)
Nursing Care and Pathophysiology of Myocardial Infarction (MI)
Nursing Care and Pathophysiology of Myocarditis
Nursing Care and Pathophysiology of Pneumonia
Pacemakers
Performing Cardiac (Heart) Monitoring
Positioning
Potassium-K (Hyperkalemia, Hypokalemia)
Preload and Afterload
Respiratory Acidosis (interpretation and nursing interventions)
Respiratory Alkalosis
ROME – ABG (Arterial Blood Gas) Interpretation
Selecting THE vein
Shock Module Intro
Supplies Needed
Tattoos IV Insertion
Thoracentesis
Tips & Tricks
Tips & Advice for Newborns (Neonatal IV Insertion)
Tips & Advice for Pediatric IV
Understanding All The IV Set Ports
Using Aseptic Technique
Venous Disorders (Chronic venous insufficiency, Deep venous thrombosis/DVT)
Vent Alarms