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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Noninvasive method for estimation of complex elastic modulus of arterial vessels
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Noninvasive method for estimation of complex elastic modulus of arterial vessels

机译:无创估计动脉血管弹性模量的方法

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摘要

Pulse wave velocity (PWV) is widely used for estimating the stiffness of an artery. It is well-known that a stiffened artery can be associated with various diseases and with aging. Usually, PWV is measured using the "foot-to-foot" method in which the travel time of the wave is measured over a distance. The "foot" of the pressure wave is not clear due to reflected waves and blood noise. Also, PWV is an average indicator of artery stiffness between the two measuring points and, therefore, does not identify local stiffness variations. We propose producing a bending wave in the arterial wall using low-frequency, localized ultrasound radiation force and measuring the wave velocity along the arterial wall. The wave velocity can be measured accurately over a few millimeters. A mathematical model for wave propagation along the artery is developed with which the Young's modulus of the artery can be determined from measured wave velocities. Experiments were conducted on a pig carotid artery cast in a tissue-mimicking gelatin. The wave velocity was measured by the phase change at a known distance for a given frequency. The measured wave velocity is about 3 m/s at 100 Hz and 6.5 m/s at 500 Hz. The real part of complex elastic modulus of the artery is estimated to be 300 kPa.
机译:脉搏波速度(PWV)被广泛用于估算动脉的刚度。众所周知,动脉硬化可能与各种疾病和衰老有关。通常,PWV是使用“从脚到脚”的方法测量的,其中波的传播时间是在一定距离上测量的。由于反射波和血液噪声,压力波的“脚”不清楚。而且,PWV是两个测量点之间动脉僵硬度的平均指标,因此不能识别局部刚度变化。我们建议使用低频局部超声辐射力在动脉壁中产生弯曲波,并测量沿动脉壁的波速。可以精确测量几毫米的波速。建立了沿动脉波传播的数学模型,利用该模型可以从测量的波速确定动脉的杨氏模量。实验是在模仿组织明胶的猪颈动脉中进行的。对于给定的频率,通过已知距离处的相位变化来测量波速。在100 Hz下测得的波速约为3 m / s,在500 Hz下测得的波速为6.5 m / s。动脉的复数弹性模量的实部估计为300 kPa。

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