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Measurement of viscoelastic properties of in vivo swine myocardium using Lamb Wave Dispersion Ultrasound Vibrometry (LDUV)

机译:的粘弹性特性的测定体内猪心肌使用Lamb波色散超声Vibrometry(LDUV)

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摘要

Viscoelastic properties of the myocardium are important for normal cardiac function and may be altered by disease. Thus, quantification of these properties may aid with evaluation of the health of the heart. Lamb Wave Dispersion Ultrasound Vibrometry (LDUV) is a shear wave-based method that uses wave velocity dispersion to measure the underlying viscoelastic material properties of soft tissue with plate-like geometries. We tested this method in eight pigs in an open-chest preparation. A mechanical actuator was used to create harmonic, propagating mechanical waves in the myocardial wall. The motion was tracked using a high frame rate acquisition sequence, typically 2500 Hz. The velocities of wave propagation were measured over the 50–400 Hz frequency range in 50 Hz increments. Data were acquired over several cardiac cycles. Dispersion curves were fit with a viscoelastic, anti-symmetric Lamb wave model to obtain estimates of the shear elasticity, μ1, and viscosity, μ2 as defined by the Kelvin-Voigt rheological model. The sensitivity of the Lamb wave model was also studied using simulated data. We demonstrated that wave velocity measurements and Lamb wave theory allow one to estimate the variation of viscoelastic moduli of the myocardial walls in vivo throughout the course of the cardiac cycle.
机译:心肌的粘弹性对于正常的心脏功能很重要,并且可能会因疾病而改变。因此,这些性质的量化可以帮助评估心脏的健康。兰姆波分散超声振动测定法(LDUV)是一种基于剪切波的方法,该方法使用波速分散来测量具有板状几何形状的软组织的基本粘弹性材料特性。我们在开胸准备中对八头猪测试了该方法。机械致动器用于产生谐波,在心肌壁中传播机械波。使用高帧率采集序列(通常为2500 Hz)跟踪运动。在50-400 Hz频率范围内以50 Hz的增量测量了波的传播速度。在几个心动周期上获取数据。将分散曲线与粘弹性,非对称Lamb波模型拟合,以得到由Kelvin-Voigt流变模型定义的剪切弹性μ1和粘度μ2的估计值。还使用模拟数据研究了兰姆波模型的灵敏度。我们证明了波速测量和兰姆波理论使人们能够估计整个心动周期过程中体内心肌壁的粘弹性模量的变化。

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