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Development of in vivo measurement system for temperature rise in animal tissue under exposure to ultrasound with acoustic radiation force

机译:体内测量系统的发展,该系统可在声辐射力作用下暴露于超声下动物组织中的温度升高

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Acoustic radiation force (ARF) has been recently used for the tissue elasticity measurement and imaging. On the other hand, it is predicted that the higher temperature rises occur. In vivo measurement of temperature rise in animal experiments is important, whereas the measurement using thermocouples have some problems such as position mismatch of a temperature measuring junction of thermocouple and a focal point of ultrasound and so on. Therefore, in vivo measurement system for solving the above problems was developed in this study. The feasibility of the developed system was verified by the experiments using a tissue mimicking materials (TMM), TMM with a bone mode, an extracted porcine liver and a bone of chicken. Moreover, relations between conditions of ultrasound irradiation and temperature rises were investigated using the system. These results showed that temperature rises at focus on the surface of bone may exceed an allowable temperature rise which WFUMB guideline recommends, even though the acoustic intensity is within the limits of acoustic output regulation in diagnostic ultrasound devices.
机译:声辐射力(ARF)最近已用于组织弹性测量和成像。另一方面,据预测会出现较高的温度升高。在动物实验中,体内温度升高的测量很重要,而使用热电偶的测量存在一些问题,例如热电偶的温度测量结点和超声焦点的位置不匹配等。因此,在本研究中开发了用于解决上述问题的体内测量系统。通过使用组织模拟材料(TMM),具有骨骼模式的TMM,提取的猪肝和鸡的骨骼进行的实验验证了所开发系统的可行性。此外,使用该系统研究了超声辐照条件与温度升高之间的关系。这些结果表明,即使声强在诊断超声设备的声输出调节范围之内,集中在骨表面上的温度升高也可能超过WFUMB指南建议的允许的温度升高。

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