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首页> 外文期刊>Journal of optics >Micromachined silicon parallel acoustic delay lines as time-delayed ultrasound detector array for real-time photoacoustic tomography
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Micromachined silicon parallel acoustic delay lines as time-delayed ultrasound detector array for real-time photoacoustic tomography

机译:微机械加工的硅平行声延迟线作为用于实时光声层析成像的延时超声检测器阵列

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摘要

This paper reports the development of a new 16-channel parallel acoustic delay line (PADL) array for real-time photoacoustic tomography (PAT). The PADLs were directly fabricated from single-crystalline silicon substrates using deep reactive ion etching. Compared with other acoustic delay lines (e.g., optical fibers), the micromachined silicon PADLs offer higher acoustic transmission efficiency, smaller form factor, easier assembly, and mass production capability. To demonstrate its real-time photoacoustic imaging capability, the silicon PADL array was interfaced with one single-element ultrasonic transducer followed by one channel of data acquisition electronics to receive 16 channels of photoacoustic signals simultaneously. A PAT image of an optically-absorbing target embedded in an optically-scattering phantom was reconstructed, which matched well with the actual size of the imaged target. Because the silicon PADL array allows a signal-to-channel reduction ratio of 16:1, it could significantly simplify the design and construction of ultrasonic receivers for real-time PAT.
机译:本文报道了用于实时光声层析成像(PAT)的新型16通道并行声延迟线(PADL)阵列的开发。使用深度反应离子刻蚀直接从单晶硅衬底制造PADL。与其他声延迟线(例如,光纤)相比,微机械加工的硅PADL具有更高的声传输效率,更小的外形尺寸,更容易的组装和批量生产的能力。为了演示其实时光声成像功能,将硅PADL阵列与一个单元素超声换能器接口,然后与一个通道的数据采集电子设备接口,以同时接收16个通道的光声信号。重建了嵌入光散射体模中的光吸收目标的PAT图像,该图像与成像目标的实际尺寸非常匹配。由于硅PADL阵列可实现16:1的信噪比,因此可以大大简化用于实时PAT的超声接收器的设计和构造。

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