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用于生物医学传感与成像的光学放大检测。

Optically amplified detection for biomedical sensing and imaging.

作者信息

Mahjoubfar Ata, Goda Keisuke, Betts Gary, Jalali Bahram

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2013 Oct 1;30(10):2124-32. doi: 10.1364/JOSAA.30.002124.

Abstract

Optical sensing and imaging methods for biomedical applications, such as spectroscopy and laser-scanning fluorescence microscopy, are incapable of performing sensitive detection at high scan rates due to the fundamental trade-off between sensitivity and speed. This is because fewer photons are detected during short integration times and hence the signal falls below the detector noise. Optical postamplification can, however, overcome this challenge by amplifying the collected optical signal after collection and before photodetection. Here we present a theoretical analysis of the sensitivity of high-speed biomedical sensing and imaging systems enhanced by optical postamplifiers. As a case study, we focus on Raman amplifiers because they produce gain at any wavelength within the gain medium's transparency window and are hence suitable for biomedical applications. Our analytical model shows that when limited by detector noise, such optically postamplified systems can achieve a sensitivity improvement of up to 20 dB in the visible to near-infrared spectral range without sacrificing speed. This analysis is expected to be valuable for design of fast real-time biomedical sensing and imaging systems.

摘要

用于生物医学应用的光学传感和成像方法,如光谱学和激光扫描荧光显微镜,由于灵敏度和速度之间的基本权衡,无法在高扫描速率下进行灵敏检测。这是因为在短积分时间内检测到的光子较少,因此信号会低于探测器噪声。然而,光学后置放大可以通过在收集后和光检测前放大收集到的光信号来克服这一挑战。在此,我们对由光学后置放大器增强的高速生物医学传感和成像系统的灵敏度进行了理论分析。作为一个案例研究,我们专注于拉曼放大器,因为它们在增益介质的透明窗口内的任何波长处都能产生增益,因此适用于生物医学应用。我们的分析模型表明,当受探测器噪声限制时,这种光学后置放大系统在不牺牲速度的情况下,在可见光到近红外光谱范围内可实现高达20 dB的灵敏度提升。该分析预计对快速实时生物医学传感和成像系统的设计具有重要价值。

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