Question 1
What is the most likely sensitivity setting for the EEG in a polysomnogram?
Correct Answer:
7 uV/mm
Explanation:
Sensitivity is how much voltage is needed to move the EEG trace a certain amount vertically. In a sleep study you want to clearly see both large waves and smaller, transient features like sleep spindles and K-complexes without clipping or losing detail. A middle-ground setting of seven microvolts per millimeter is commonly used because it provides enough vertical resolution to display typical EEG amplitudes and those transient features, while keeping the trace within the recorder’s dynamic range. If the gain is set too high (more sensitive, like one or three µV/mm), large waves or artifacts can saturate the trace and obscure interpretation. If the gain is too low (less sensitive, like fifteen µV/mm), small but important features become hard to see, making accurate sleep staging more difficult.
Question 2
During calibration, the technician verifies electrode response commands. Which option lists an equivalent way to phrase this?
Correct Answer:
Electrode response commands
Explanation:
The main idea is confirming that the system correctly recognizes and responds to the signals from the electrodes when prompted. Verifying electrode response commands means you’re checking that the electrodes produce the expected responses to calibration prompts, ensuring the device properly interprets those signals and that the leads are functioning and contacting correctly. This is essentially the same concept as the stem’s statement, just stated in the term that directly describes the signals from the electrodes. Why the other options don’t fit: keyboard calibration would relate to input devices, not to electrode signals. Bed calibration targets the physical bed setup, not the electrode system. ECG polarity verification focuses on the directionality of the ECG leads, not on whether the electrode signals themselves respond to calibration commands.
Question 3
An artifact that results in salt bridges is most likely caused by
Correct Answer:
All of these answer choices
Explanation:
Salt bridges form when a conductive path links two electrode sites through moisture or electrolyte, creating an artifact that can mimic or distort the signal. If the skin prep area is too large, conductive gel or electrolyte can spread and reach neighboring electrodes, bridging them. Tape or gauze from different locations touching can also create a conductive bridge between contacts. An incorrect measuring/setup can place electrodes too closely or allow materials to contact them improperly, further enabling a bridge. Because each of these scenarios can produce the conductive connection that defines a salt bridge, all of these factors together explain why this artifact occurs. Prevent by keeping prep areas small, preventing cross-contact with tape/gauze, and ensuring proper electrode placement and impedance checks.
Question 4
Which of the following is NOT a potential cause of central sleep apnea?
Correct Answer:
Obesity
Explanation:
Central sleep apnea results from a disruption in the brain’s ability to send the proper signals to breathe. It’s driven by problems with the central respiratory control centers or their regulation, not by the anatomy of the airway. That’s why congestive heart failure can contribute—Cheyne-Stokes-type patterns reflect instability in central drive and circulation. Brain stem injury can directly damage the medullary centers that control breathing, and neurological diseases affecting central respiratory control can also cause central apneas. Obesity, on the other hand, is a major risk factor for obstructive sleep apnea, where the airway collapses during sleep due to excess soft tissue and reduced airway caliber. It’s also linked to obesity hypoventilation syndrome, which is about inadequate ventilation rather than failure of central drive. Therefore obesity is not a typical cause of central sleep apnea.
Question 5
Which action best describes a recommended step if you have not fallen asleep after 20 minutes?
Correct Answer:
Get up and do something relaxing
Explanation:
If you haven’t fallen asleep after about 20 minutes, the best move is to get out of bed and do something relaxing until you feel sleepy again. This approach helps break the pattern of wakefulness being tied to the bed, reducing anxiety about not sleeping and preserving the association between your bed and sleep. It keeps your overall sleep pressure from being harmed and makes it more likely you’ll fall asleep quickly when you return to bed. Staying still in bed can teach the brain that the bed is for lying awake, which can lengthen wakefulness. Turning on the TV, especially at high volume, is stimulating and bright, which wakes you up rather than relaxing you. Taking a long nap right away reduces the body's need for sleep at night by lowering sleep pressure, making it harder to sleep when you want to later.
Question 1
Exam overview

About this Exam

Prepare with the AASM Sleep Technologist Practice Test practice quiz. This question bank includes 10 questions covering sleep, electrode, mask, aasm, and technologist. Use it to review important concepts, identify knowledge gaps, and build confidence for the related exam, course, or assessment.

More details

Additional Information

AASM Sleep Technologist Practice Test

This practice set contains 10 questions from the matching question bank and focuses on sleep, electrode, mask, aasm, and technologist. Work through each question carefully, review the provided solutions, and revisit topics that need more study before your next attempt.

This is an independent study resource intended for practice and review; it is not an official examination or an endorsement by any organization named in the title.

Quiz information

Frequently Asked Questions

The complete question count is available after full access is unlocked.
No fixed duration is currently configured for this quiz.
Question explanations are included where they are available in the quiz content, helping you review the reasoning after answering.
Yes. You can retake the practice test again as you continue studying during your available access period.
After your access is confirmed, you can continue into the complete practice exam from this quiz flow.
Unless explicitly stated otherwise, this page provides independent practice material for study and exam preparation and is not the official examination itself.
Keep studying

Related Questions