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Characterization of a Time-Resolved Diffuse Optical Spectroscopy Prototype Using Low-Cost, Compact Single Photon Avalanche Detectors for Tissue Optics Applications

机译:使用低成本,紧凑的单光子雪崩检测器表征时间分辨的漫反射光学光谱原型,用于组织光学应用

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摘要

Time-resolved diffuse optical spectroscopy (TR-DOS) is an increasingly used method to determine the optical properties of diffusive media, particularly for medical applications including functional brain, breast and muscle measurements. For medical imaging applications, important features of new generation TR-DOS systems are low-cost, small size and efficient inverse modeling. To address the issues of low-cost, compact size and high integration capabilities, we have developed free-running (FR) single-photon avalanche diodes (SPADs) using 130 nm silicon complementary metal-oxide-semiconductor (CMOS) technology and used it in a TR-DOS prototype. This prototype was validated using assessments from two known protocols for evaluating TR-DOS systems for tissue optics applications. Following the basic instrumental performance protocol, our prototype had sub-nanosecond total instrument response function and low differential non-linearity of a few percent. Also, using light with optical power lower than the maximum permissible exposure for human skin, this prototype can acquire raw data in reflectance geometry for phantoms with optical properties similar to human tissues. Following the MEDPHOT protocol, the absolute values of the optical properties for several homogeneous phantoms were retrieved with good accuracy and linearity using a best-fitting model based on the Levenberg-Marquardt method. Overall, the results of this study show that our silicon CMOS-based SPAD detectors can be used to build a multichannel TR-DOS prototype. Also, real-time functional monitoring of human tissue such as muscles, breasts and newborn heads will be possible by integrating this detector with a time-to-digital converter (TDC).
机译:时间分辨扩散光学光谱(TR-DOS)是一种越来越多地使用的方法来确定扩散介质的光学特性,特别是用于医疗应用中,包括脑功能,乳腺癌和肌肉的测量。对于医疗成像应用,新一代的TR-DOS系统的重要特点是成本低,体积小,高效的逆向建模。为了解决低成本,紧凑的尺寸和高集成能力的问题,我们开发了自由运行(FR)单光子雪崩二极管使用130纳米的硅互补金属氧化物半导体(CMOS)技术(的SPAD),并用它在TR-DOS的原型。使用来自两个已知的协议评估用于评价用于组织光学应用TR-DOS系统中,这个原型进行了验证。继基本器乐演奏协议,我们的原型有亚纳秒的总仪器响应函数和百分之几的低差分非线性。另外,使用具有光功率的光比最大允许暴露于人的皮肤下,该原型可获取用于具有类似于人体组织的光学性质幻影的反射率的几何形状的原始数据。继MEDPHOT协议,以良好的精度和线性使用基于Levenberg-Marquardt方法的最佳拟合模型中检索到的光学属性的若干均匀幻影的绝对值。总体而言,这项研究的结果表明我们的基于CMOS硅SPAD探测器可用于构建多通道TR-DOS的原型。另外,人体组织如肌肉,乳房和新生儿头的实时功能监测由该检测器与一个时间 - 数字转换器(TDC)集成是可能的。

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