The Real-Time Monitoring System of Blood Flow Velocity Using Doppler Ultrasound for Healthcare Application

Author:

Zulaika Hamdon1,Akutagawa Masatake2,Emoto Takahiro2,Kinouchi Yohsuke2,Rasyada A Rahman3,Azhim Azran3

Affiliation:

1. Department of Electronic Systems Engineering, Malaysia-Japan International Institute of Technology

2. Department of Life System, Institute of Technology and Science, Tokushima University

3. Department of Biotechnology, Kulliyyah of Science, International Islamic University Malaysia

Publisher

Research Institute of Signal Processing, Japan

Reference10 articles.

1. [1] Malaysia Ministry of Health, National Health & Morbidity Survey: Non-communicable disease, Institute for Public Health (IPH), Vol. 2, pp. 15-24, 2011.

2. [2] W.W. Nichols and M.F. O'Rourke: McDonald's Blood Flow in Arteries: Theoretic, Experimental and Clinical Principles, 5th ed., Hodder Arnold, London, 2005.

3. [3] A. Azhim, M. Katai, M. Akutagawa, Y. Hirao, K. Yoshizaki, S. Obara, M. Nomura, H. Tanaka, H. Yamaguchi and Y. Kinouchi: Exercise improved age-associated changes in the carotid blood velocity waveforms, J. Biomedical Pharm. Eng., Vol. 1, pp. 17-26, 2007.

4. [4] A. Azhim, A. Ueno, M. Tanaka, A. Masatake and Y. Kinouchi: Evaluation of BFV envelope in common carotid artery for reference data, J. Biomedical Signal Process. and Control, Vol. 6, pp. 209-215, 2011.

5. [5] J. J. Baskett, M. G. Beasley, G. J. Murphy, D.E. Hyams and R.G. Gosling: Screening for carotid junction disease by spectral analysis of Doppler signals, Cardiovascular Research, Vol. 11, pp. 147-155, 1977.

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