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In vivo assessment of renal tissue viscoelasticity during acute and gradual renal ischemia

机译:在急性和渐进肾缺血期间的肾组织粘弹性体内评估

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Elasticity imaging methods have been used to study kidney mechanical properties and have demonstrated that kidney elasticity changes with disease state. Moreover, recent studies have demonstrated that kidney elasticity is affected by renal blood flow. The purpose of this study is to evaluate the feasibility of Shearwave Dispersion Ultrasound Vibrometry (SDUV) for in vivo measurements of viscoelasticity in healthy swine kidney and to demonstrate that kidney viscoelasticity is affected by renal blood flow. A total of five female pigs were used in these acute in vivo experiments. Shear wave speed dispersion was studied by exciting shear waves in the renal cortex with a mechanical actuator and with acoustic radiation force. Kidney viscoelasticity was studied at baseline renal blood flow (RBF) and 25, 50, 75 and 100% of baseline RBF. In this study we show that shear wave speed is affected by RBF. As a consequence, shear elastic moduli is affected by RBF. The data from this study did not show a clear relation between viscosity and renal blood flow. Moreover, the data from this study indicates that other variables such as local blood flow, pressure, and volume as well as method accuracy need to be measured to illustrate the relationship between shear elasticity and viscosity with acute and chronic kidney processes.
机译:弹性成像方法已经用于研究肾脏机械性能,并证明肾弹性随疾病状态而变化。此外,最近的研究表明,肾弹性受肾血流量的影响。本研究的目的是评估避难波色散超声振动器(SDUV)在健康猪肾中粘弹性的体内测量的可行性,并证明肾血流受肾血流量的影响。在体内实验中,在这些急性实验中使用了5种雌性猪。通过用机械致动器和声学辐射力激发肾皮层中的剪切波来研究剪切波速分散。在基线肾血流(RBF)和25,50,75和100%的基线RBF中研究了肾脏粘弹性。在这项研究中,我们表明剪切波速受RBF的影响。因此,剪切弹性模量受RBF的影响。本研究的数据没有显示粘度和肾血流之间的明确关系。此外,来自该研究的数据表明,需要测量诸如局部血流,压力和体积以及方法精度的其他变量,以说明剪切弹性和粘度与急性和慢性肾的粘度之间的关系。

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