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Optimizing sensitivity and dynamic range of silicon photomultipliers for frequency-domain near infrared spectroscopy

机译:优化硅光电倍增器对红外光谱附近频域硅光电倍增器的灵敏度和动态范围

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摘要

Diffuse optical imaging and tomography based upon frequency-domain near-infrared spectroscopy (fdNIRS) is used to noninvasively measure tissue structure and function through quantitative absolute measurements of tissue optical absorption and scattering. Here we describe how utilizing a silicon photomultiplier (SiPM) detector for fdNIRS improves performance. We discuss the operation of SiPMs, how they differ from other fdNIRS photodetectors, and show theoretically that SiPMs offer similar sensitivity to photomultiplier tube (PMT) detectors while having a higher dynamic range and lower cost, size, and operating voltage. With respect to avalanche photodiode (APD) detectors, theoretical and experimental data shows drastically increased signal to noise ratio performance, up to 25dB on human breast, head, and muscle tissue. Finally, we extend the dynamic range (∼10dB) of the SiPM through a nonlinear calibration technique which reduced absorption error by a mean 16 percentage points.
机译:基于频域近红外光谱(FDNIR)的漫射光学成像和断层摄影用于非缺乏测量组织结构和功能,通过组织光学吸收和散射的定量绝对测量。在这里,我们描述了如何利用用于FDNIR的硅光电倍增器(SIPM)检测器,提高性能。我们讨论SIPMS的操作,它们如何与其他FDNIR光电探测器不同,并且理论上显示SIPMS对光电倍增管(PMT)检测器的同时提供类似的灵敏度,同时具有更高的动态范围和更低的成本,尺寸和工作电压。关于雪崩光电二极管(APD)探测器,理论和实验数据显示出噪声比性能的急剧增加,人乳房,头部和肌肉组织上高达25dB。最后,我们通过非线性校准技术扩展了SIPM的动态范围(~10dB),该技术通过平均16个百分点降低了吸收误差。

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