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Standoff tracking of medical interventional devices using non-contact microwave thermoacoustic detection

机译:使用非接触式微波热声检测的医疗介入设备的对峙跟踪

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Tracking of medical interventional devices is performed using non-contact microwave-induced thermoacoustic detection. The interventional device is modeled with an exposed tip coaxial probe in an agar phantom and it uses the inherent microwave excitation to generate modulated thermoacoustic signals. The resulting ultrasound signal is detected by custom designed capacitive micromachined ultrasonic transducers (CMUTs) at a standoff and without any contact with the target. The dependency of the specific absorption rate (SAR) profile on the excitation frequency and probe tip length is examined in order to determine optimal operating conditions for resolution and signal level. An excitation frequency of 2.35 GHz is chosen and is amplitude-modulated with a 72 kHz pulse train to match the center frequency of the CMUTs. A two transducer system is employed to achieve cm-scale resolution via 2-dimensional location tracking using a modified trilateration technique.
机译:使用非接触式微波感应热声检测执行医疗介入设备的跟踪。该干预设备在琼脂模型中以暴露的尖端同轴探针进行建模,并使用固有的微波激励来产生调制的热声信号。通过定制设计的电容式微机械超声换能器(CMUT),可以在对峙时且与目标无任何接触的情况下检测所得的超声信号。为了确定分辨率和信号电平的最佳工作条件,检查了比吸收率(SAR)曲线对激励频率和探针尖端长度的依赖性。选择2.35 GHz的激励频率,并用72 kHz脉冲序列进行幅度调制,以匹配CMUT的中心频率。采用两个换能器系统,使用改进的三边测量技术通过二维位置跟踪来实现厘米级分辨率。

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