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A sensitive optical micro-machined ultrasound sensor (OMUS) based on a silicon photonic ring resonator on an acoustical membrane

机译:基于声膜上硅光子环谐振器的灵敏光学微机械超声传感器(OMUS)

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摘要

With the increasing use of ultrasonography, especially in medical imaging, novel fabrication techniques together with novel sensor designs are needed to meet the requirements for future applications like three-dimensional intercardiac and intravascular imaging. These applications require arrays of many small elements to selectively record the sound waves coming from a certain direction. Here we present proof of concept of an optical micro-machined ultrasound sensor (OMUS) fabricated with a semi-industrial CMOS fabrication line. The sensor is based on integrated photonics, which allows for elements with small spatial footprint. We demonstrate that the first prototype is already capable of detecting pressures of 0.4 Pa, which matches the performance of the state of the art piezo-electric transducers while having a 65 times smaller spatial footprint. The sensor is compatible with MRI due to the lack of electronical wiring. Another important benefit of the use of integrated photonics is the easy interrogation of an array of elements. Hence, in future designs only two optical fibers are needed to interrogate an entire array, which minimizes the amount of connections of smart catheters. The demonstrated OMUS has potential applications in medical ultrasound imaging, non destructive testing as well as in flow sensing.
机译:随着超声检查技术的日益普及,特别是在医学成像中,需要新颖的制造技术以及新颖的传感器设计来满足未来应用的需求,例如三维心内膜和血管内成像。这些应用需要许多小元件的阵列来选择性地记录来自某个方向的声波。在这里,我们介绍用半工业CMOS生产线制造的光学微机械超声传感器(OMUS)的概念证明。该传感器基于集成的光子学,可实现空间足迹较小的元素。我们证明了第一个原型已经能够检测0.4 Pa的压力,这与最先进的压电换能器的性能相匹配,而空间足迹却减小了65倍。由于缺少电子线路,该传感器与MRI兼容。使用集成光子学的另一个重要好处是可以轻松查询一系列元素。因此,在未来的设计中,仅需要两条光纤即可询问整个阵列,从而最大程度地减少了智能导管的连接量。演示的OMUS在医学超声成像,无损检测以及流量感测方面具有潜在的应用。

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