Homodyne time-of-flight acousto-optic imaging for low-gain photodetector.

IF 3.2 4区 医学 Q2 ENGINEERING, BIOMEDICAL
Biomedical Engineering Letters Pub Date : 2022-11-19 eCollection Date: 2023-02-01 DOI:10.1007/s13534-022-00252-w
Ahiad R Levi, Yoav Hazan, Aner Lev, Bruno G Sfez, Amir Rosenthal
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引用次数: 0

Abstract

Acousto-optics imaging (AOI) is a hybrid imaging modality that is capable of mapping the light fluence rate in deep tissue by local ultrasound modulation of the diffused photons. Since the intensity of the modulated photons is relatively low, AOI systems often rely on high-gain photodetectors, e.g. photomultiplier tubes (PMTs), which limit scalability due to size and cost and may significantly increase the relative shot-noise in the detected signal due to low quantum yields or gain noise. In this work, we have developed a homodyne AOI scheme in which the modulated photons are amplified by interference with a reference beam, enabling their detection with a single low-gain photodetector in reflection-mode configuration. We experimentally demonstrate our approach with a silicon photodiode, achieving over a 4-fold improvement in SNR in comparison to a PMT-based setup. The increased SNR manifested in lower background noise level thus enabling deeper imaging depths. The use of a fiber-based configuration enables the integration of our scheme in a hand-held AOI probe.

低增益光电探测器的空差飞行时间声光成像。
声光成像(AOI)是一种混合成像方式,能够通过局部超声调制扩散光子来绘制深层组织中的光通量。由于调制光子的强度相对较低,AOI系统通常依赖于高增益光电探测器,例如光电倍增管(pmt),由于尺寸和成本限制了可扩展性,并且由于低量子产率或增益噪声可能显着增加检测信号中的相对短噪声。在这项工作中,我们开发了一种纯差AOI方案,其中调制光子通过干涉参考光束放大,使其能够在反射模式配置下使用单个低增益光电探测器进行检测。我们用硅光电二极管实验证明了我们的方法,与基于pmt的设置相比,信噪比提高了4倍以上。增加的信噪比表现在更低的背景噪声水平,从而实现更深的成像深度。使用基于光纤的配置可以将我们的方案集成到手持式AOI探针中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biomedical Engineering Letters
Biomedical Engineering Letters ENGINEERING, BIOMEDICAL-
CiteScore
6.80
自引率
0.00%
发文量
34
期刊介绍: Biomedical Engineering Letters (BMEL) aims to present the innovative experimental science and technological development in the biomedical field as well as clinical application of new development. The article must contain original biomedical engineering content, defined as development, theoretical analysis, and evaluation/validation of a new technique. BMEL publishes the following types of papers: original articles, review articles, editorials, and letters to the editor. All the papers are reviewed in single-blind fashion.
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