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Effects of blood flow on high intensity focused ultrasound ablation

机译:血流对高强度聚焦超声消融的影响

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With the benefits of high accuracy and non-invasive implementation, high intensity focused ultrasound (HIFU) is a promising medical procedure to heat and destroy pathogenic tissue rapidly. However, the relation between the power emitted by the ultrasound transducer and the energy arriving at the target area is complex, interfered by several factors such as the properties of tissue, obstacles of hard tissues or vascularization. In this study, a finite element model was used to simulate the propagation process of focused ultrasound inside tissue phantom and passing the perfused vascular. Then, the resultant sound pressure distribution provided the heat source for heat transfer process simulation. The simulation results were validated with thermocouple measurements in egg white phantoms. This study demonstrated an efficient methodology for estimating the thermal effects in HIFU hyperthermia therapy, especially in the region with large blood vessel. This study will be useful in minimizing difficulties and risks in HIFU induced hyperthermia treatment and facilitate the extension from laboratory to clinic use.
机译:凭借高精度和无创实施的优势,高强度聚焦超声(HIFU)是一种有前途的医疗程序,可以快速加热和破坏病原组织。然而,由超声换能器发射的功率与到达目标区域的能量之间的关系是复杂的,受到诸如组织的性质,硬组织的障碍或血管形成的多种因素的干扰。在这项研究中,使用有限元模型来模拟聚焦超声在组织体模内部传播并通过灌注血管的传播过程。然后,所得的声压分布为传热过程模拟提供了热源。仿真结果通过蛋白体模中的热电偶测量进行了验证。这项研究展示了一种有效的方法,可用于评估HIFU热疗中的热效应,尤其是在大血管区域。这项研究将有助于最大程度地减少HIFU引起的高温治疗的困难和风险,并有助于从实验室扩展到临床使用。

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