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A compact device for non-invasive measurement of glucose by near-infrared spectroscopy

机译:通过近红外光谱法无创测量葡萄糖的紧凑型设备

摘要

A near IR spectrometer-based analyzer attaches continuously or semi-continuously to a human subject and collects spectral measurements for determining a biological parameter in the sampled tissue, such as glucose concentration. The analyzer includes an optical system optimized to target the cutaneous layer of the sampled tissue so that interference from the adipose layer is minimized. The optical system includes at least one optical probe. Spacing between optical paths and detection fibers of each probe and between probes is optimized to minimize sampling of the adipose subcutaneous layer and to maximize collection of light backscattered from the cutaneous layer. Penetration depth is optimized by limiting range of distances between paths and detection fibers. Minimizing sampling of the adipose layer greatly reduces interference contributed by the fat band in the sample spectrum, increasing signal-to-noise ratio. Providing multiple probes also minimizes interference in the sample spectrum due to placement errors.
机译:基于近红外光谱仪的分析仪连续或半连续地附着在人类受试者上,并收集用于确定采样组织中生物参数(例如葡萄糖浓度)的光谱测量值。该分析仪包括一个光学系统,该光学系统经过优化,可将样本组织的皮肤层作为目标,从而使来自脂肪层的干扰降到最低。该光学系统包括至少一个光学探针。优化了每个探针的光路和检测纤维之间以及探针之间的间距,以最小化脂肪皮下层的采样,并最大化收集从皮肤层反向散射的光。通过限制路径和检测光纤之间的距离范围来优化穿透深度。尽量减少脂肪层的采样,可以大大减少样品光谱中脂肪带造成的干扰,从而提高信噪比。提供多个探头还可以最大程度地减少由于放置错误而对样品光谱造成的干扰。

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