In this letter, we deal with the microcomputer-based ultrasonic pulsed Doppler flowmeter system developed to detect the blood flow in human heart noinvasively. This system provides a new and necessary tool for accurate quantitative measurements in study of cardiovascular disease.
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Kunihiro CHIHARA, Yoshifumi SAKURAI, Masaaki HIRAYAMA, Masato ASAO, Hirohide MATSUO, Hiroshi ABE, "The Microcomputer-Based Ultrasonic Pulsed Doppler Flowmeter System" in IEICE TRANSACTIONS on transactions,
vol. E63-E, no. 5, pp. 351-352, May 1980, doi: .
Abstract: In this letter, we deal with the microcomputer-based ultrasonic pulsed Doppler flowmeter system developed to detect the blood flow in human heart noinvasively. This system provides a new and necessary tool for accurate quantitative measurements in study of cardiovascular disease.
URL: https://global.ieice.org/en_transactions/transactions/10.1587/e63-e_5_351/_p
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@ARTICLE{e63-e_5_351,
author={Kunihiro CHIHARA, Yoshifumi SAKURAI, Masaaki HIRAYAMA, Masato ASAO, Hirohide MATSUO, Hiroshi ABE, },
journal={IEICE TRANSACTIONS on transactions},
title={The Microcomputer-Based Ultrasonic Pulsed Doppler Flowmeter System},
year={1980},
volume={E63-E},
number={5},
pages={351-352},
abstract={In this letter, we deal with the microcomputer-based ultrasonic pulsed Doppler flowmeter system developed to detect the blood flow in human heart noinvasively. This system provides a new and necessary tool for accurate quantitative measurements in study of cardiovascular disease.},
keywords={},
doi={},
ISSN={},
month={May},}
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TY - JOUR
TI - The Microcomputer-Based Ultrasonic Pulsed Doppler Flowmeter System
T2 - IEICE TRANSACTIONS on transactions
SP - 351
EP - 352
AU - Kunihiro CHIHARA
AU - Yoshifumi SAKURAI
AU - Masaaki HIRAYAMA
AU - Masato ASAO
AU - Hirohide MATSUO
AU - Hiroshi ABE
PY - 1980
DO -
JO - IEICE TRANSACTIONS on transactions
SN -
VL - E63-E
IS - 5
JA - IEICE TRANSACTIONS on transactions
Y1 - May 1980
AB - In this letter, we deal with the microcomputer-based ultrasonic pulsed Doppler flowmeter system developed to detect the blood flow in human heart noinvasively. This system provides a new and necessary tool for accurate quantitative measurements in study of cardiovascular disease.
ER -