
Exercise Stress Test Course
Master every phase of exercise stress testing, from patient screening and ECG interpretation to emergency response and structured reporting. This course gives clinicians the clinical judgment and technical precision needed to conduct safe, diagnostically accurate stress tests. Build the skills that directly impact patient outcomes and elevate your practice.
What you will learn:
This course covers the full scope of exercise stress testing, including exercise physiology, 12-lead ECG interpretation, protocol selection, and real-time patient monitoring. You will learn to identify absolute and relative contraindications, recognize ischemic and arrhythmic ECG changes, and apply validated termination criteria without hesitation. The curriculum also addresses risk stratification tools, structured report writing, and clear communication of results to patients and referring providers. Supplementary content introduces stress echocardiography, cardiopulmonary exercise testing, emergency response, and emerging technologies including AI-assisted ECG analysis. By the end, you will be equipped to manage every stage of the stress testing process with clinical confidence.
How you study in practice Exercise Stress Test Course
How you practice Exercise Stress Test Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Exercise Physiology
Foundations of Exercise Physiology
Lesson 1 • Energy Systems and Metabolic Demand
Differentiates aerobic and anaerobic energy pathways activated at varying exercise intensities. Supports understanding of workload staging in stress test protocols.
Lesson 2 • Autonomic Nervous System and Exercise
Describes sympathetic and parasympathetic modulation of cardiac function during and after exercise. Underpins interpretation of heart rate recovery and arrhythmia risk.
Lesson 3 • Cardiovascular Response to Exercise
Covers heart rate, stroke volume, and cardiac output changes during graded exertion. Provides the physiological baseline for interpreting stress test hemodynamics.
Lesson 4 • Blood Pressure Dynamics Under Load
Analyzes systolic and diastolic pressure responses to progressive exercise intensity. Establishes normal versus abnormal pressure patterns used in test interpretation.
Lesson 5 • Respiratory Adaptations During Exertion
Examines ventilation, gas exchange, and oxygen uptake kinetics during increasing workloads. Links pulmonary physiology to aerobic capacity assessment.
Chapter 2HideHide detailsSee detailsECG Fundamentals for Stress Testing
ECG Fundamentals for Stress Testing
Lesson 1 • Artifact Recognition and Signal Quality
Distinguishes true ECG findings from motion, electrode, and electrical artifacts during exercise. Ensures clinicians act only on valid signal data throughout the test.
Lesson 2 • ECG Waveform Anatomy and Intervals
Reviews P wave, QRS complex, T wave, and key intervals in a resting tracing. Establishes the morphological baseline against which exercise changes are measured.
Lesson 3 • Lead Placement and Configuration
Teaches correct 12-lead electrode placement and Mason-Likar exercise modification. Accurate lead placement is critical for valid exercise ECG data collection.
Lesson 4 • Recognizing Baseline ECG Abnormalities
Identifies pre-existing ECG findings that affect stress test interpretability. Prepares clinicians to flag tracings that limit ischemia detection accuracy.
Lesson 5 • Normal ECG Changes During Exercise
Describes expected waveform changes as heart rate increases during graded exercise. Provides the normal reference frame for detecting pathological deviations.
Chapter 3HideHide detailsSee detailsIndications, Contraindications, and Patient Selection
Indications, Contraindications, and Patient Selection
Lesson 1 • Relative Contraindications and Risk Stratification
Examines conditions requiring physician judgment before proceeding with testing. Teaches a structured risk-benefit framework for borderline patient cases.
Lesson 2 • Special Populations and Considerations
Addresses modified screening criteria for elderly, pediatric, and deconditioned patients. Prepares clinicians to adapt standard protocols to diverse patient needs.
Lesson 3 • Absolute and Relative Indications
Identifies clinical scenarios where stress testing provides essential diagnostic or prognostic value. Connects indication categories to specific patient presentations.
Lesson 4 • Pre-Test Patient Screening Process
Outlines the clinical history, physical exam, and resting ECG review required before testing. Integrates screening steps into a reproducible pre-test workflow.
Lesson 5 • Absolute Contraindications
Lists conditions that prohibit stress testing due to immediate life-threatening risk. Ensures clinicians recognize when testing must not proceed under any circumstance.
Chapter 4HideHide detailsSee detailsStress Test Protocols and Equipment
Stress Test Protocols and Equipment
Lesson 1 • Pharmacological Stress Protocols
Introduces vasodilator and chronotropic agents used when patients cannot exercise adequately. Connects pharmacological stress to imaging modalities for ischemia detection.
Lesson 2 • Treadmill Protocols and Workload Staging
Compares Bruce, modified Bruce, Naughton, and ramp treadmill protocols by speed and grade increments. Guides protocol selection based on patient fitness and clinical goals.
Lesson 3 • Target Heart Rate and Test Endpoints
Defines age-predicted maximum heart rate targets and symptom-limited endpoints. Teaches clinicians to balance achieving diagnostic adequacy with patient safety.
Lesson 4 • Cycle Ergometer Protocols
Covers upright and supine cycle ergometer protocols with watt-based workload increments. Addresses when cycling is preferred over treadmill testing clinically.
Lesson 5 • Equipment Setup and Calibration
Details treadmill, ergometer, ECG system, and emergency equipment setup before each test. Proper calibration ensures data accuracy and patient safety throughout testing.
Chapter 5HideHide detailsSee detailsTest Conduct and Patient Monitoring
Test Conduct and Patient Monitoring
Lesson 1 • Blood Pressure and Symptom Assessment
Standardizes blood pressure measurement technique and symptom rating scales during exercise. Integrates hemodynamic and symptomatic data into a unified monitoring record.
Lesson 2 • Documentation and Data Recording
Establishes standards for recording all test data in a structured, reproducible format. Accurate documentation supports interpretation, reporting, and medicolegal requirements.
Lesson 3 • Continuous ECG Monitoring During Exercise
Teaches real-time ECG surveillance across all 12 leads during each protocol stage. Ensures timely detection of ischemic, arrhythmic, and conduction changes.
Lesson 4 • Pre-Test Preparation and Baseline Recording
Covers patient positioning, electrode attachment, and baseline vital sign and ECG recording. Establishes the reference data required for valid exercise comparison.
Lesson 5 • Recovery Phase Monitoring
Defines active versus passive recovery protocols and monitoring requirements post-exercise. Recovery data are essential for detecting delayed ischemia and arrhythmias.
Chapter 6HideHide detailsSee detailsECG Interpretation During Exercise
ECG Interpretation During Exercise
Lesson 1 • Conduction Changes During Exercise
Identifies rate-dependent bundle branch blocks and AV conduction abnormalities during exertion. Distinguishes benign from pathological conduction changes affecting test validity.
Lesson 2 • Ischemic versus Non-Ischemic ST Changes
Differentiates true ischemic ST changes from rate-related, positional, and drug-induced variants. Reduces false-positive interpretations that lead to unnecessary downstream testing.
Lesson 3 • Exercise-Induced Arrhythmia Interpretation
Classifies ventricular and supraventricular arrhythmias provoked by exercise and their clinical significance. Connects arrhythmia type and timing to risk stratification decisions.
Lesson 4 • Integrating ECG with Hemodynamic Data
Combines ST findings with heart rate, blood pressure, and workload data for comprehensive interpretation. Demonstrates how multiparameter integration improves diagnostic accuracy.
Lesson 5 • ST Segment Analysis Methodology
Teaches precise measurement of ST depression and elevation relative to the isoelectric line. Establishes the quantitative criteria that define a positive ischemic response.
Chapter 7HideHide detailsSee detailsIndications for Test Termination
Indications for Test Termination
Lesson 1 • Post-Termination Patient Management
Outlines immediate steps after stopping the test, including positioning, monitoring, and escalation. Ensures patient stability is secured before transitioning to reporting.
Lesson 2 • Absolute Termination Criteria
Identifies ECG, hemodynamic, and symptomatic findings that mandate immediate test cessation. Ensures clinicians never delay stopping when patient safety is at risk.
Lesson 3 • Recognizing Ischemic Endpoints
Focuses on ECG and symptomatic ischemia markers that signal myocardial oxygen demand exceeds supply. Links ischemic endpoint recognition to downstream diagnostic conclusions.
Lesson 4 • Arrhythmia-Based Termination Decisions
Distinguishes benign from dangerous exercise-induced arrhythmias requiring test cessation. Prepares clinicians to act on rhythm findings without overreacting to benign variants.
Lesson 5 • Relative Termination Criteria
Covers findings that may warrant stopping based on clinical context and physician judgment. Teaches a structured decision process for borderline termination scenarios.
Chapter 8HideHide detailsSee detailsTest Reporting, Risk Stratification, and Clinical Decision-Making
Test Reporting, Risk Stratification, and Clinical Decision-Making
Lesson 1 • Defining Test Positivity and Negativity
Establishes criteria for positive, negative, equivocal, and non-diagnostic test results. Reduces interpretive variability by applying consistent, evidence-based definitions.
Lesson 2 • Communicating Results to Patients and Referrers
Covers verbal and written communication of stress test results to patients and referring providers. Ensures clarity, accuracy, and appropriate urgency in all result communications.
Lesson 3 • Clinical Decision-Making After Testing
Maps risk stratification outcomes to specific management pathways including further imaging, catheterization, or medical therapy. Integrates pre-test probability with test results for final decisions.
Lesson 4 • Structured Stress Test Report Components
Defines the required elements of a complete stress test report, from indication to conclusion. Ensures every report communicates findings clearly to referring clinicians.
Lesson 5 • Risk Stratification Using Test Results
Applies validated scoring tools and multiparameter findings to classify patients into low, intermediate, and high risk. Guides downstream management intensity based on risk category.
Your valid completion certificate
This course is for you:
Cardiac technicians: seeking formal training to match their hands-on lab experience.
Registered nurses: expanding into cardiology roles that include stress test monitoring.
Exercise physiologists: adding clinical diagnostic competency to their existing fitness expertise.
Physician assistants: building confidence in ordering and interpreting stress test results.
Medical students: preparing for cardiology rotations with a structured procedural foundation.
Allied health graduates: transitioning into cardiac diagnostics from a general clinical background.
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