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New optical probe designs for absolute (self-calibrating) NIR tissue hemoglobin measurements

机译:用于绝对(自校准)NIR组织血红蛋白测量的新型光学探头设计

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Abstract: Most of the instruments reported for near infrared absorption measurements in highly scattering media, suitable for non-invasive hemoglobin concentration measurements in living tissues, require some type of instrumental calibration, or knowledge of the initial concentrations of the two species. A new type of probe, which does not require calibration, has been developed. These new probes can provide a rapid and `absolute' measurement of absorption and scattering in tissue when combined with the `multi-distance' method developed, in part, at the Laboratory for Fluorescence Dynamics at the University of Illinois and ISS Incorporated. An initial evaluation of the performance and efficacy of these new probes has been performed using a frequency-domain ISS tissue oximeter. The new probes offer the convenience of not requiring calibration, and also provide more reliable measurements and greater long-term stability compared with the standard multi-distance design. The new probes rely on a symmetrical arrangement of light sources and detectors. These geometries allow for measurements that are, in theory, entirely independent of the intensity differences between light sources, phase differences between the multiple light sources, sensitivity differences between the detectors, and nay optical coupling losses, including those at the probe sample interface.!22
机译:摘要:据报道,大多数用于在高散射介质中进行近红外吸收测量的仪器,适用于活组织中非侵入性血红蛋白浓度的测量,需要某种类型的仪器校准,或者需要了解这两种物质的初始浓度。已经开发了不需要校准的新型探针。这些新探针与伊利诺伊大学和ISS Incorporated的荧光动力学实验室部分开发的“多距离”方法结合使用,可以提供对组织吸收和散射的快速,“绝对”测量。这些新探针的性能和功效的初步评估已使用频域ISS组织血氧仪进行。与标准的多距离设计相比,新型探头提供了无需校准的便利,并且提供了更可靠的测量结果和更高的长期稳定性。新的探针依赖于光源和检测器的对称布置。从理论上讲,这些几何形状允许进行测量,而这些测量完全独立于光源之间的强度差异,多个光源之间的相位差异,检测器之间的灵敏度差异以及光学耦合损耗,包括探针样品界面处的光学耦合损耗。 22

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