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Measurement of pressure and assessment of cavitation for a 22.5‐kHz intra‐arterial angioplasty device

机译:用于动脉内动脉血管成形术装置的22.5 kHz气相压力和评估

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摘要

This study was performed to understand better the mechanisms of action of an (22.5 kHz) ultrasonic wire catheter device used to remove atheromatous plaque in diseased blood vessels (ultrasonic angioplasty). During a clinical procedure, the wire acts as an acoustic waveguide to transfer acoustic energy from a generator outside the body to the ball tip of the wire, which is inserted in the blood vessel. The acoustic field radiated by the vibrating ball tip (1.5- to 3.0-mm diameter), was mapped in a relatively large (600 L) water tank and compared to the field from a well-characterized simple source. A dipolelike radiation pattern due to the translating ball tip was observed. At low power settings, standing wave effects in a smaller cylindrical volume (200-mm diameter, 350-mm height), which was used to simulate anthropometric dimensions, increase relative to the larger tank measurements. The standing wave ratio is dependent upon the pc characteristics of the medium and the dimensions of the volume, rather than on the absorption at this frequency. At high power-settings of the device, cavitation at the tip of the wire was measured using a 20-MHz passive cavitation detection scheme.
机译:进行该研究以了解(22.5kHz)超声线导管装置的作用机制,以了解用于去除患病血管(超声血管成形术)中的椎管斑块的动作机制。在临床过程中,线用作声波珠,以将声能从主体外部的发电机传递到导线的球尖端,该导线插入血管中。由振动球尖端(直径为1.5至3.0毫米)辐射的声场被映射在相对较大的(600升)水箱中,并与来自特征在于特征的简单来源的场。观察到由于平移球尖端的倾角辐射图案。在低功率设置下,用于模拟人类测量尺寸的较小圆柱体积(直径为350毫米高度,350毫米高度)的驻波效果,相对于较大的罐测量,增加。驻波比取决于介质的PC特性和体积的尺寸,而不是在该频率的吸收上。在装置的高功率设置下,使用20-MHz被动空化检测方案测量导线尖端的空化。

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