热疗
高强度聚焦超声
占空比
材料科学
超声波
体内
生物医学工程
生物传热
聚焦超声
强度(物理)
血流
热电偶
热疗
医学
传热
放射科
复合材料
内科学
电压
光学
机械
物理
生物技术
量子力学
生物
作者
Juan Tu,Joo Ha Hwang,Tao Chen,Tingbo Fan,Xiasheng Guo,Lawrence A. Crum,Dong Zhang
摘要
High intensity focused ultrasound (HIFU)-induced hyperthermia is a promising tool for cancer therapy. Three-dimensional nonlinear acoustic-bioheat transfer-blood flow-coupling model simulations and in vivo thermocouple measurements were performed to study hyperthermia effects in rabbit auricular vein exposed to pulsed HIFU (pHIFU) at varied duty cycles (DCs). pHIFU-induced temperature elevations are shown to increase with increasing DC. A critical DC of 6.9% is estimated for temperature at distal vessel wall exceeding 44 °C, although different tissue depths and inclusions could affect the DC threshold. The results demonstrate clinic potentials of achieving controllable hyperthermia by adjusting pHIFU DCs, while minimizing perivascular thermal injury.
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