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Title: AE-Adult-Echocardiography Latest Test Format & AE-Adult-Echocardiography Exa [Print This Page]

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Title: AE-Adult-Echocardiography Latest Test Format & AE-Adult-Echocardiography Exa
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ARDMS AE-Adult-Echocardiography Exam Syllabus Topics:
TopicDetails
Topic 1
  • Clinical Care and Safety: This section of the exam measures skills of adult echocardiography technicians in applying clinical care principles and safety protocols. It includes evaluating patient history and external data, preparing patients including fasting state and intravenous line management, proper patient positioning, EKG lead placement, blood pressure measurement, and ergonomic techniques. Candidates are expected to identify critical echocardiographic findings, know contraindications for procedures, and be able to respond and manage medical emergencies that may arise during echocardiographic exams.
Topic 2
  • Pathology: This section of the exam measures skills of adult echocardiography technicians and focuses on identifying and evaluating abnormal physiology and perfusion and postoperative conditions. It includes assessment of ventricular aneurysms, aortic and valve abnormalities, arrhythmias, cardiac masses, diastolic dysfunction, endocarditis, ischemic diseases, cardiomyopathies, congenital anomalies, and postoperative valve repair or replacement and intracardiac devices. Candidates must demonstrate ability to recognize abnormal Doppler signals, EKG changes, wall motion abnormalities, and a wide range of cardiac pathologies including pulmonary hypertension and septal defects.
Topic 3
  • Anatomy and Physiology: This section of the exam measures skills of adult echocardiography technicians and covers knowledge and abilities related to normal cardiac anatomy and physiology. It includes assessing great vessels like the aorta and pulmonary arteries, recognizing anatomic variants of the heart, and evaluating cardiac chambers, pericardium, valve structures, and vessels of arterial and venous return. Candidates must document normal systolic and diastolic function, normal valve function and measurements, the phases of the cardiac cycle, normal Doppler changes with respiration, and appearance of arterial and venous waveforms. This also involves assessing the normal hemodynamic response to stress testing and maneuvers such as Valsalva, respiratory, handgrip, and postural changes.
Topic 4
  • Instrumentation, Optimization, and Contrast: This section of the exam measures skills of adult echocardiography technicians related to use and optimization of ultrasound instrumentation and the application of contrast agents. Candidates should recognize imaging artifacts, utilize non-imaging transducers, and adjust ultrasound console settings for optimal imaging and Doppler recordings. Knowledge of harmonic imaging, principles of contrast agents, and the safe and effective use of saline and echo-enhancing contrast agents is essential. Candidates must also be able to optimize images when using contrast agents to ensure diagnostic quality.
Topic 5
  • Measurement Techniques, Maneuvers, and Sonographic Views: This section of the exam measures skills of adult echocardiography technicians in performing accurate cardiac measurements, conducting provocative maneuvers, and obtaining optimized sonographic imaging views. It involves applying 2D, 3D, M-mode, and Doppler techniques to measure heart valves, chambers, and vessels, including the aortic valve, mitral valve, left and right ventricles, atria, pulmonary artery, and shunt ratios. Candidates must instruct patients in maneuvers such as Valsalva, cough, sniff, and squat. They should also be proficient in acquiring standard echocardiographic views including apical, parasternal, subcostal, and suprasternal notch views.

ARDMS AE Adult Echocardiography Examination Sample Questions (Q18-Q23):NEW QUESTION # 18
Which pathology is consistent with the left ventricular strain pattern shown in this image?

Answer: A
Explanation:
The strain imaging shown is a classic example of the "apical sparing" pattern, highly characteristic of cardiac amyloidosis. In cardiac amyloidosis, the basal and mid segments of the left ventricle show markedly reduced longitudinal strain (represented here by more positive or less negative strain values), while the apical segments retain relatively preserved strain (more negative strain values). This "cherry on top" or "bull's eye" pattern with apical strain preserved distinguishes amyloidosis from other causes of LV dysfunction.
This pattern is not typical of apical hypertrophy, which would show focal thickening and abnormal strain limited to the apex. Non-ischemic cardiomyopathy generally has a more diffuse and uniform reduction in strain without the apical sparing. Right coronary artery infarcts affect the inferior and posterior walls and would have segmental strain abnormalities corresponding to the infarct distribution, not the typical apical sparing.
The left ventricular global longitudinal strain (GLS) in amyloidosis is typically severely reduced, but the relative preservation of apical strain is a hallmark useful for diagnosis, as described in the "Textbook of Clinical Echocardiography, 6e" (Chapter on strain imaging and infiltrative cardiomyopathies) .

NEW QUESTION # 19
Which critical finding is most likely to require immediate surgical intervention?
Answer: A
Explanation:
Comprehensive and Detailed Explanation From Exact Extract:
A pseudoaneurysm (false aneurysm) of the heart or great vessels is a contained rupture of the vessel or myocardial wall with a narrow neck and high risk of rupture, making it a surgical emergency. Unlike true aneurysms, pseudoaneurysms lack all vessel wall layers and have a fragile wall prone to catastrophic rupture.
True aneurysms involve all wall layers and generally have a lower immediate risk. Severe aortic or mitral stenosis are serious conditions often requiring intervention but not immediate emergency surgery unless complicated.
Therefore, pseudoaneurysm is the critical finding that mandates urgent surgical repair.
This distinction and management urgency are detailed in the "Textbook of Clinical Echocardiography, 6e", Chapter on Aneurysms and Cardiac Emergencies#20:385-390Textbook of Clinical Echocardiography#.

NEW QUESTION # 20
Which coronary artery is identified by the arrow on this image?

Answer: A
Explanation:
The arrow points to the left anterior descending (LAD) coronary artery, which runs in the anterior interventricular groove toward the apex of the heart. It supplies the anterior wall of the left ventricle.
The right coronary artery runs in the right atrioventricular groove. The left main coronary artery is proximal to the LAD and circumflex arteries. The circumflex artery runs in the left atrioventricular groove posteriorly.
This identification is detailed in the "Textbook of Clinical Echocardiography, 6e", Chapter on Coronary Artery Anatomy and Echocardiographic Visualization#20:150-155Textbook of Clinical Echocardiography#.

NEW QUESTION # 21
What is the significance of a mitral B-bump seen on M-mode?
Answer: B
Explanation:
The mitral B-bump on M-mode echocardiography represents a distinct anterior motion or thickening of the anterior mitral leaflet during atrial systole. It is associated with elevated left atrial systolic pressure.
The B-bump is a marker of increased left atrial pressure transmitted to the mitral valve, often seen in diastolic dysfunction and conditions causing elevated left atrial pressure.
It is not a direct indicator of left ventricular end-diastolic pressure, hypertrophic obstructive cardiomyopathy, or mitral stenosis.
This phenomenon is described in the "Textbook of Clinical Echocardiography, 6e", Chapter on Diastolic Function and Mitral Valve Motion#20:215-220Textbook of Clinical Echocardiography#.

NEW QUESTION # 22
Which mitral valve filling pattern is characterized by a long deceleration time and an E/A ratio of 0.6?
Answer: C
Explanation:
The mitral valve filling pattern characterized by a long deceleration time and a reduced E/A ratio (less than 1, such as 0.6) is consistent with impaired relaxation. This pattern is typically seen in early diastolic dysfunction, where there is slowed ventricular relaxation, resulting in reduced early diastolic filling (E wave) and a compensatory increase in atrial contraction contribution (A wave).
Impaired relaxation pattern shows:
E/A ratio < 1 (e.g., 0.6)
Prolonged deceleration time (>200 ms)
Prolonged isovolumic relaxation time (IVRT)
This pattern differs from restrictive filling, which has a high E/A ratio (>2), shortened deceleration time (<150 ms), and elevated left atrial pressures. Pseudonormal filling has a normal or near-normal E/A ratio but elevated filling pressures that mask underlying dysfunction and requires further evaluation with tissue Doppler or pulmonary venous flow for diagnosis. Normal filling has a typical E/A ratio around 1 to 1.5 with normal deceleration times.
The textbook details that impaired relaxation is the earliest sign of diastolic dysfunction and describes the prolongation of the deceleration time and reduced E/A ratio as hallmark findings of this stage.

NEW QUESTION # 23
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