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Characterization of a Broadband All-Optical Ultrasound Transducer—From Optical and Acoustical Properties to Imaging

机译:宽带全光超声换能器的表征-从光学和声学特性到成像

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摘要

A broadband all-optical ultrasound transducer has been designed, fabricated, and evaluated for high-frequency ultrasound imaging. The device consists of a 2-D gold nanostructure imprinted on top of a glass substrate, followed by a 3 μm PDMS layer and a 30 nm gold layer. A laser pulse at the resonance wavelength of the gold nanostructure is focused onto the surface for ultrasound generation, while the gold nanostructure, together with the 30 nm thick gold layer and the PDMS layer in between, forms an etalon for ultrasound detection, which uses a CW laser at a wavelength far from resonance as the probing beam. The center frequency of a pulse-echo signal recorded in the far field of the transducer is 40 MHz with -6 dB bandwidth of 57 MHz. The signal to noise ratio (SNR) from a 70 μm diameter transmit element combined with a 20 μm diameter receive element probing a near perfect reflector positioned 1.5 mm from the transducer surface is more than 10 dB and has the potential to be improved by at least another 40 dB. A high-frequency ultrasound array has been emulated using multiple measurements from the transducer while mechanically scanning an imaging target. Characterization of the device’s optical and acoustical properties, as well as preliminary imaging results, strongly suggest that all-optical ultrasound transducers can be used to build high-frequency arrays for real-time high-resolution ultrasound imaging.
机译:宽带全光超声换能器已被设计,制造和评估用于高频超声成像。该设备由一个印在玻璃基板顶部的二维金纳米结构,一个3μm的PDMS层和一个30 nm的金层组成。在金纳米结构共振波长处的激光脉冲聚焦在表面上以产生超声波,而金纳米结构与30 nm厚的金层和两者之间的PDMS层一起形成标准具,用于超声波检测,使用波长远离共振的连续波激光器作为探测光束。记录在换能器远场中的脉冲回波信号的中心频率为40 MHz,-6 dB带宽为57 MHz。直径为70μm的发射元件与直径为20μm的接收元件相结合,探测距离换能器表面1.5 mm处的近乎完美的反射器,其信噪比(SNR)大于10 dB,并且至少有可能得到改善另外40 dB。在机械扫描成像目标时,已使用换能器的多次测量来模拟高频超声阵列。对设备的光学和声学特性的表征以及初步的成像结果,强烈表明,全光学超声换能器可用于构建用于实时高分辨率超声成像的高频阵列。

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