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Shearwave dispersion ultrasound vibrometry (SDUV) for measuring tissue elasticity and viscosity

机译:剪切波分散超声振动法(SDUV)用于测量组织的弹性和粘度

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Characterization of tissue elasticity (stiffness) and viscosity has important medical applications because these properties are closely related to pathological changes. Quantitative measurement is more suitable than qualitative measurement (i.e., mapping with a relative scale) of tissue viscoelasticity for diagnosis of diffuse diseases where abnormality is not confined to a local region and there is no normal background tissue to provide contrast. Shearwave dispersion ultrasound vibrometry (SDUV) uses shear wave propagation speed measured in tissue at multiple frequencies (typically in the range of hundreds of Hertz) to solve quantitatively for both tissue elasticity and viscosity. A shear wave is stimulated within the tissue by an ultrasound push beam and monitored by a separate ultrasound detect beam. The phase difference of the shear wave between 2 locations along its propagation path is used to calculate shear wave speed within the tissue. In vitro SDUV measurements along and across bovine striated muscle fibers show results of tissue elasticity and viscosity close to literature values. An intermittent pulse sequence is developed to allow one array transducer for both push and detect function. Feasibility of this pulse sequence is demonstrated by in vivo SDUV measurements in swine liver using a dual transducer prototype simulating the operation of a single array transducer.
机译:组织弹性(硬度)和粘度的表征具有重要的医学应用,因为这些特性与病理变化密切相关。定量测量比组织粘弹性的定性测量(即以相对比例绘制)更适合用于诊断弥漫性疾病,其中异常不局限于局部区域,并且没有正常的背景组织可以提供对比度。剪切波分散超声振动测定法(SDUV)使用在组织中以多个频率(通常在数百赫兹的范围内)测量的剪切波传播速度来定量地解决组织的弹性和粘性。超声推力束在组织内刺激剪切波,并通过单独的超声检测束进行监测。沿其传播路径的两个位置之间的剪切波的相位差用于计算组织内的剪切波速度。沿牛横纹肌纤维和跨牛横纹肌纤维的体外SDUV测量显示组织弹性和粘度的结果接近文献值。开发了一个间歇性脉冲序列,以使一个阵列换能器既具有推动功能又具有检测功能。通过使用模拟单个阵列换能器操作的双换能器原型在猪肝中进行体内SDUV测量,证明了该脉冲序列的可行性。

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