A fibre-optic ultrasound sensor of simple fabrication.

IF 1.2 Q3 ACOUSTICS JASA express letters Pub Date : 2024-08-01 DOI:10.1121/10.0028202
Fadwa Shagroun, Richard James Colchester, Erwin Jozef Alles
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Abstract

The small size, high sensitivity, and immunity to electromagnetic interference of fibre-optic ultrasound sensors make them highly attractive for applications in biomedical imaging and metrology. Typically, such sensors rely on optically resonant structures, such as Fabry-Perot cavities, that require elaborate fabrication techniques. Here, an alternative fibre-optic ultrasound sensor is presented that comprises a simple deformable and reflective structure that was deposited using simple dip-coating. Interrogation with a laser Doppler vibrometer demonstrated how this sensor achieved a sensitivity, signal-to-noise ratio, and noise-equivalent pressure that outperformed piezoelectric hydrophones, whilst offering a highly miniature form factor, turn-key operation, and simple fabrication.

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结构简单的光纤超声波传感器。
光纤超声传感器体积小、灵敏度高、抗电磁干扰能力强,因此在生物医学成像和计量领域的应用中极具吸引力。通常情况下,这类传感器依赖于光学谐振结构,如法布里-珀罗腔,需要复杂的制造技术。这里介绍的是另一种光纤超声波传感器,它由一个简单的可变形反射结构组成,使用简单的浸渍涂层沉积而成。用激光多普勒测振仪进行的测试表明,这种传感器的灵敏度、信噪比和噪声等效压力均优于压电式水听器,同时具有高度微型化的外形尺寸、交钥匙操作和简单的制造工艺。
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The JIBO Kids Corpus: A speech dataset of child-robot interactions in a classroom environment. The perceptual distinctiveness of the [n-l] contrast in different vowel and tonal contexts. Ambient noise source characterization using spectral, coherence, and directionality estimates at Kongsfjorden. Speaker adaptation using codebook integrated deep neural networks for speech enhancement. Fundamental frequency predominantly drives talker differences in auditory brainstem responses to continuous speech.
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