Pitfalls Using Doppler Ultrasound to Transduce Blood Flow
Stephen W. Flax, John G. Webster, Stuart J. Updike
Abstract
Stephen W. Flax, John G. Webster, Stuart J. Updike
Abstract
General testing procedures which will ascertain whether a Doppler ultrasonic blood flowmeter is correctly designed and operating properly are presented. A commercial Doppler ultrasonic blood flowmeter using the procedure is evaluated. Two pitfalls were encountered which prevented its proper operation. High-frequency response was inadequate, which introduced a nonlinearity into the input-output calibration curve. Low-frequency gain was too high, resulting in wall-motion artifacts. These problem areas are described in detail, and a remedy for each is suggested.
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General testing procedures which will ascertain whether a Doppler ultrasonic blood flowmeter is correctly designed and operating properly are presented. A commercial Doppler ultrasonic blood flowmeter using the procedure is evaluated. Two pitfalls were encountered which prevented its proper operation. High-frequency response was inadequate, which introduced a nonlinearity into the input-output calibration curve. Low-frequency gain was too high, resulting in wall-motion artifacts. These problem areas are described in detail, and a remedy for each is suggested.
Key concepts: Doppler effect, Ultrasonic flow meter, Flow measurement, Blood flow, Ultrasonic sensor, Calibration, Doppler ultrasound, Acoustics