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Theoretical modeling study of the necrotic field during high-intensity focused ultrasound surgery

机译:高强度聚焦超声手术坏死场的理论模型研究

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Background:High-intensity focused ultrasound (HIFU) is a type of micro-invasive treatment of tumor. It is important to create a guideline for the volume and position of the necrotic field by means of a theoretical model, this being one of the key problems in the clinic application of HIFU.Material/Methods: Based on cellular thermo-necrotic theory, a computational model of temperature distribution and, therefore, the necrotic field was developed. A multi-transducer system with non-interferential and self-focused property was devised to provide experimental verification of the theoretical model.Results: The necrotic field resulting from the modeling simulation did not show any evident difference from that of the experiment. The necrotic field of the same heating duration (4 seconds) was found with both modeling and experiment to be spheroid, with its center at the system’s geometric focus and a volume of 1x1x2 cm3.Conclusions: The model of this study may predict the practical volume of the necrotic field as well as the time needed for it to form.
机译:背景:高强度聚焦超声(HIFU)是一种微创治疗肿瘤的方法。重要的是要建立一个理论模型的坏死场的体积和位置的指导方针,这是HIFU临床应用中的关键问题之一。材料/方法:基于细胞热坏死理论,建立了温度分布和坏死场的计算模型。设计了一个具有非干扰性和自聚焦特性的多传感器系统,对理论模型进行了实验验证。结果:建模仿真得到的坏死场与实验没有明显差异。通过建模和实验发现,在相同加热持续时间(4秒)下的坏死场呈球状,其中心位于系统的几何焦点处,体积为1x1x2 cm3。坏死区域及其形成所需的时间。

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