首页> 外文期刊>Ultrasound in Medicine and Biology >Ultrasound Doppler monitoring of soft tissues in vitro and tissue phantoms heating and thermal destruction induced by acoustic remote palpation.
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Ultrasound Doppler monitoring of soft tissues in vitro and tissue phantoms heating and thermal destruction induced by acoustic remote palpation.

机译:超声多普勒监测在体外软组织以及由声波远端触诊引起的组织体模加热和热破坏。

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摘要

The rise of shear strain value under temperature increase in biological tissue samples in vitro and tissue phantoms was studied and the range of shear modulus and viscosity calculated. It has been shown that the acoustic radiation force-based methods with the usage of ultrasound Doppler probing provides the potential ability of noninvasive real-time monitoring of tissues' ultrasound thermal destruction process. At that, the thermal destruction is possible under action of wave beam that creates the radiation force and local tissue displacements so that tissue ablation and acoustic remote palpation could be realized by means of the same ultrasound transducer. The experiments were performed using gelatin-based tissue-mimicking phantoms and freshly excised samples of bovine muscle tissue. It was determined also that fluctuating pattern of detected displacement amplitude variation is the indicator of the phase transitions beginning in the heated field of soft tissue or tissue phantom.
机译:研究了体外和组织模型中生物组织样品温度升高时剪切应变值的升高情况,并计算了剪切模量和粘度范围。已经表明,基于声辐射力的方法以及超声多普勒探测技术提供了潜在的无创实时监测组织超声热破坏过程的能力。那时,在产生辐射力和局部组织位移的光束作用下,热破坏是可能的,从而可以通过相同的超声换能器实现组织消融和声学远端触诊。使用基于明胶的组织模拟体模和新鲜切除的牛肌肉组织样品进行实验。还确定的是,检测到的位移幅度变化的波动模式是从软组织或体模的加热场开始的相变的指示。

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