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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Two-dimensional ultrasound receive array using an angle-tuned Fabry-Perot polymer film sensor for transducer field characterization and transmission ultrasound imaging
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Two-dimensional ultrasound receive array using an angle-tuned Fabry-Perot polymer film sensor for transducer field characterization and transmission ultrasound imaging

机译:使用角度调谐的Fabry-Perot聚合物膜传感器的二维超声接收阵列,用于换能器场表征和透射超声成像

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A 2-D optical ultrasound receive array has been investigated. The transduction mechanism is based upon the detection of acoustically induced changes in the optical thickness of a thin polymer film acting as a Fabry-Perot sensing interferometer (FPI). By illuminating the sensor with a large-area laser beam and mechanically scanning a photodiode across the reflected output beam, while using a novel angle-tuned phase bias control system to optimally set the FPI working point, a notional 2-D ultrasound array was synthesized. To demonstrate the concept, 1-D and 2-D ultrasound field distributions produced by planar 3.5-MHz and focused 5-MHz PZT ultrasound transducers were mapped. The system was also evaluated by performing transmission ultrasound imaging of a spatially calibrated target. The "array" aperture, defined by the dimensions of the incident optical field, was elliptical, of dimensions 16 /spl times/ 12 mm and spatially sampled in steps of 0.1 mm or 0.2 mm. Element sizes, defined by the photodiode aperture, of 0.8, 0.4, and 0.2 mm were variously used for these experiments. Two types of sensor were evaluated. One was a discrete 75-/spl mu/m-thick polyethylene terephthalate FPI bonded to a polymer backing stub which had a wideband peak noise-equivalent pressure of 6.5 kPa and an acoustic bandwidth 12 MHz. The other was a 40-/spl mu/m Parylene film FPI which was directly vacuum-deposited onto a glass backing stub and had an NEP of 8 kPa and an acoustic bandwidth of 17.5 MHz. It is considered that this approach offers an alternative to piezoelectric ultrasound arrays for transducer field characterization, transmission medical and industrial ultrasound imaging, biomedical photoacoustic imaging, and ultrasonic nondestructive testing.
机译:已经研究了二维光学超声接收阵列。该转导机制基于对充当Fabry-Perot传感干涉仪(FPI)的聚合物薄膜光学厚度的声学感应变化的检测。通过使用大面积激光束照射传感器并在反射的输出光束上机械扫描光电二极管,同时使用新颖的角度调谐相位偏置控制系统来最佳地设置FPI工作点,从而合成了二维二维超声阵列。为了证明这一概念,绘制了平面3.5MHz和聚焦的5MHz PZT超声换能器产生的1-D和2-D超声场分布图。该系统还通过执行空间校准目标的透射超声成像进行评估。由入射光场的尺寸定义的“阵列”孔径为椭圆形,尺寸为16 / spl乘以/ 12 mm,并且以0.1 mm或0.2 mm的步长在空间上采样。由光电二极管孔径定义的元素大小分别为0.8、0.4和0.2 mm,用于这些实验。评价了两种类型的传感器。一种是离散的75- / splμ/ m / m厚的聚对苯二甲酸乙二醇酯FPI,粘结在聚合物背衬短管上,其宽带峰值当量等效压力为6.5 kPa,声带宽为12 MHz。另一个是40- / splμm/ m的聚对二甲苯薄膜FPI,该薄膜直接真空沉积在玻璃衬托上,NEP为8 kPa,声带宽为17.5 MHz。人们认为,这种方法为压电超声阵列提供了一种替代方案,用于换能器场表征,传输医学和工业超声成像,生物医学光声成像以及超声无损检测。

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