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一种自校准单波长生物传感器,用于测量氧饱和度。

A Self-Calibrated Single Wavelength Biosensor for Measuring Oxygen Saturation.

机构信息

Faculty of Engineering, Bar Ilan University, Ramat Gan 5290002, Israel.

The Institute of Nanotechnology and Advanced Materials, Bar Ilan University, Ramat Gan 5290002, Israel.

出版信息

Biosensors (Basel). 2024 Mar 4;14(3):132. doi: 10.3390/bios14030132.

Abstract

Traditional methods for measuring blood oxygen use multiple wavelengths, which produce an intrinsic error due to ratiometric measurements. These methods assume that the absorption changes with the wavelength, but in fact the scattering changes as well and cannot be neglected. We found that if one measures in a specific angle around a cylindrical tissue, called the iso-pathlength (IPL) point, the reemitted light intensity is unaffected by the tissue's scattering. Therefore, the absorption can be isolated from the scattering, which allows the extraction of the subject's oxygen saturation. In this work, we designed an optical biosensor for reading the light intensity reemitted from the tissue, using a single light source and multiple photodetectors (PDs), with one of them in the IPL point's location. Using this bio-device, we developed a methodology to extract the arterial oxygen saturation using a single wavelength light source. We proved this method is not dependent on the light source and is applicable to different measurement locations on the body, with an error of 0.5%. Moreover, we tested thirty-eight males and females with the biosensor under normal conditions. Finally, we show the results of measuring subjects in a hypoxic chamber that simulates extreme conditions with low oxygen.

摘要

传统的血氧测量方法使用多个波长,由于比率测量会产生固有误差。这些方法假设吸光度随波长变化,但实际上散射也会发生变化,且不能被忽略。我们发现,如果在圆柱形组织的特定角度测量,称为等光程(IPL)点,那么再发射光强度不受组织散射的影响。因此,可以从散射中分离出吸收,从而提取出对象的氧饱和度。在这项工作中,我们设计了一种光学生物传感器,用于读取组织中再发射的光强度,使用单个光源和多个光电探测器(PD),其中一个位于 IPL 点的位置。使用这种生物设备,我们开发了一种使用单一波长光源提取动脉氧饱和度的方法。我们证明了这种方法不依赖于光源,并且适用于身体不同的测量位置,误差为 0.5%。此外,我们在正常条件下用生物传感器对三十八名男性和女性进行了测试。最后,我们展示了在模拟低氧极端条件的缺氧室中测量对象的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fbd/10968215/fd0817c05009/biosensors-14-00132-g001.jpg

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