Title :
A log-linearized arterial viscoelastic model for evaluation of the carotid artery
Author :
Hirano, Harutoyo ; Horiuchi, T.K. ; Kutluk, Abdugheni ; Kurita, Yuichi ; Ukawa, T. ; Nakamura, Ryosuke ; Saeki, Noboru ; Higashi, Yu ; Kawamoto, Masashi ; Yoshizumi, M. ; Tsuji, Takao
Author_Institution :
Div. of Electr., Syst. & Math. Eng., Hiroshima Univ., Higashi-Hiroshima, Japan
Abstract :
This paper proposes a method for qualitatively estimating the mechanical properties of arterial walls on a beat-to-beat basis through noninvasive measurement of continuous arterial pressure and arterial diameter using an ultrasonic device. First, in order to describe the nonlinear relationships linking arterial pressure waveforms and arterial diameter waveforms as well as the viscoelastic characteristics of arteries, we developed a second-order nonlinear model (called the log-linearized arterial viscoelastic model) to allow estimation of arterial wall viscoelasticity. Next, to verify the validity of the proposed method, the viscoelastic indices of the carotid artery were estimated. The results showed that the proposed model can be used to accurately approximate the mechanical properties of arterial walls. It was therefore deemed suitable for qualitative evaluation of arterial viscoelastic properties based on noninvasive measurement of arterial pressure and arterial diameter.
Keywords :
biomechanics; blood pressure measurement; blood vessels; viscoelasticity; arterial diameter waveforms; arterial pressure waveforms; arterial wall viscoelasticity; carotid artery; log-linearized arterial viscoelastic model; mechanical properties; noninvasive arterial diameter measurement; noninvasive arterial pressure measurement; second-order nonlinear model; Arteries; Arteriosclerosis; Biomedical monitoring; Blood pressure; Pressure measurement; Ultrasonic variables measurement; Viscosity;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location :
Osaka
DOI :
10.1109/EMBC.2013.6610070