DocumentCode
333585
Title
The absolute sensitivity characteristics of lung-sound transducers coupled to chest wall
Author
Suzuki, Akifumi ; Nakayama, Kiyoshi
Author_Institution
Fac. of Sci. & Technol., Sophia Univ., Tokyo, Japan
Volume
4
fYear
1998
fDate
29 Oct-1 Nov 1998
Firstpage
1727
Abstract
The authors studied the absolute sensitivity characteristics of an air-coupled microphone and an accelerometer when they were coupled to the chest wall. The frequency responses of these transducers were theoretically predicted based on an equivalent circuit model and verified by model experiment. The experimental results were well agreed with the theoretical predictions. Due to the capacitive impedance of the air-chamber the pressure response of air-coupled microphone shows low-pass characteristics. It is important to set the air-chamber dimension as small as possible, however, practically it is difficult to have the act-off frequency above 1 kHz. An accelerometer acts, on the chest wall, as a pressure sensor rather than an acceleration sensor, because the mechanical impedance of the accelerometer is much higher than that of the chest wall. The authors can measure stop-surface sound pressure on the chest wall either by air-coupled microphone or by accelerometer. Accordingly they can quantitatively compare the data measured by air-coupled microphones with the data measured by accelerometers
Keywords
bioacoustics; biomedical transducers; lung; 1 kHz; absolute sensitivity characteristics; air-chamber dimension; air-coupled microphone; chest wall; equivalent circuit model; low-pass characteristics; lung-sound transducers; mechanical impedance; model experiment; Accelerometers; Acoustic sensors; Coupling circuits; Frequency; Impedance; Mechanical sensors; Microphones; Predictive models; Sensor phenomena and characterization; Transducers;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society, 1998. Proceedings of the 20th Annual International Conference of the IEEE
Conference_Location
Hong Kong
ISSN
1094-687X
Print_ISBN
0-7803-5164-9
Type
conf
DOI
10.1109/IEMBS.1998.746917
Filename
746917
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