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Instrumentation and Calibration Flashcards

7 cards from real EEG practice questions. Tap to flip, then mark Knew It or Still Learning โ€” missed cards come back until you master them.

Read the first 7 Instrumentation and Calibration flashcards as text
  1. What is the primary purpose of the 'biological calibration' signal used in EEG systems?

    Answer: To verify the amplifier gain using a known physiological signal

    Biological calibration uses a known physiological signal (such as eye blink artifact) to verify that amplifier gain and channel balance are consistent across all channels.

  2. A technologist notices that channel 3 shows a 50% smaller deflection than all other channels during the calibration square wave. The most likely cause is:

    Answer: Gain set too low on the channel 3 amplifier

    When one channel shows a consistently smaller deflection than others during a known calibration signal, the amplifier gain for that channel is set too low.

  3. Which electrode placement system uses 10% and 20% distances from skull landmarks to determine electrode positions?

    Answer: The International 10-20 system

    The International 10-20 system divides skull circumference into intervals of 10% and 20% from fixed bony landmarks to standardize electrode placement.

  4. When performing a square wave calibration, the 'tilt' or slant on the flat top of the square wave most likely indicates a problem with:

    Answer: The low-frequency filter (time constant) setting

    A tilted or slanted flat top on a square wave calibration signal indicates the low-frequency filter (time constant) is cutting off low-frequency components and distorting the sustained DC portion.

  5. The standard paper speed used in routine clinical EEG recording in the United States is:

    Answer: 30 mm/sec

    30 mm/sec is the standard paper speed for routine clinical EEG in the US, providing optimal visualization of typical brain wave frequencies.

  6. Which component of the EEG amplifier circuit is responsible for rejecting signals common to both inputs (such as 60 Hz power line noise)?

    Answer: The differential amplifier

    The differential amplifier amplifies the difference between two inputs while rejecting signals that appear equally on both (common mode), which is how 60 Hz interference is suppressed.

  7. An EEG amplifier has a CMRR of 100 dB. This means the amplifier rejects common-mode signals by a factor of approximately:

    Answer: 100,000 times

    100 dB CMRR means common-mode signals are rejected by a factor of 10^(100/20) = 100,000 times relative to the differential signal.