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Rapid spatial mapping of the acoustic pressure in high intensity focused ultrasound fields at clinical intensities using a novel planar Fabry-Pérot interferometer

机译:使用小型平面Fabry-Pérot干涉仪在临床强度下高强度聚焦超声场的声压的快速空间映射

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Measurement of high acoustic pressures is necessary in order to fully characterise clinical high-intensity focused ultrasound (HIFU) fields, and for accurate validation of computational models of ultrasound propagation. However, many existing methods are unable to withstand the extreme pressures generated in these fields, and those that can often have high noise levels. Here, a robust sensor, based on a planar Fabry-Pe?rot interferometer with hard dielectric spacer and mirrors, was used to measure acoustic pressure in the field of a 3.3 MHz single element spherically focused bowl transducer. In preliminary measurements, peak positive pressures of 27 MPa, and peak negative pressures of 14 MPa were measured. The noise equivalent pressure scaled with the adjustable dynamic range of the system between 50 kPa for pressures up to 8 MPa and 235 kPa for measurements up to 70 MPa. This makes the system suitable for measuring low pressure regions of the field as well as the high focal pressures. The -3 dB bandwidth of the sensor was 600 MHz, and the effective element size was 25 μm, which makes the sensor well suited to the measurement of the highly nonlinear and localised high-pressure focal regions generated in HIFU fields. Waveforms were acquired at a rate of 200 Hz, several orders of magnitude faster than can be achieved with a hydrophone scanning system. This sensor represents a critical improvement in measurement capability for HIFU fields in terms of dynamic range, bandwidth, noise equivalent pressure, and acquisition speed.
机译:高声学压力的测量是必要的,以便完全表征临床高强度聚焦超声(HIFU)领域,以及用于超声传播的计算模型的准确验证。然而,许多现有方法无法承受在这些字段中产生的极端压力,并且那些通常具有高噪声水平的压力。这里,使用具有硬介质间隔物和反射镜的平面法布里-PEα腐烂干涉仪的鲁棒传感器来测量3.3MHz单元素球形聚焦碗传感器的场上的声压。在初步测量中,测量27MPa的峰值正压力和14MPa的峰值负压。噪声等效压力缩放,系统的可调动力范围为50kPa,用于高达8MPa的压力和235kPa,用于测量高达70MPa。这使得系统适用于测量场的低压区域以及高焦点压力。传感器的-3 dB带宽为600 MHz,有效元件尺寸为25μm,使得传感器非常适合测量在HIFU字段中产生的高度非线性和局部高压焦点区域。以200Hz的速率获取波形,比通过水听力扫描系统更快的数量级。该传感器代表了在动态范围,带宽,噪声等效压力和采集速度方面的HIFU字段测量能力的关键改进。

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