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无创分光光度诊断设备的医学和技术要求的论证。

Substantiation of medical and technical requirements for noninvasive spectrophotometric diagnostic devices.

机构信息

University of Dundee, Photonics and Nanoscience Group, School of Engineering, Physics and Mathematics, Dundee DD1 4HN, United KingdombState University-Education-Science-Production Complex, Scientific-Educational Center of Biomedical Engineering, Oryol 302020, Russian Federation.

出版信息

J Biomed Opt. 2013 Oct;18(10):107009. doi: 10.1117/1.JBO.18.10.107009.

Abstract

A scientific approach to the formulation of medical and technical requirements (MTRs) for noninvasive spectrophotometric diagnostic devices using optical technologies such as laser Doppler flowmetry and absorption spectroscopy is proposed. The theoretical modeling framework, metrological certification, and testing of these devices are still in the early stages of development. The theoretical estimation of the received signal levels for wavelengths between 514 and 940 nm is highly dependent on the blood volume level in the subject tissue. The proposed approach allows, in particular, the calculation of technical and metrological performance constraints of the instruments, such as the ranges of the sensitivity and power-related signal-to-noise ratios for different spectral channels and different biomedical (biochemical and physiological) parameters. Substantiation of specialized MTRs for the noninvasive spectrophotometric diagnostic devices can enable them to develop to the level of standardized measurement techniques.

摘要

提出了一种使用光学技术(如激光多谱勒流量测量和吸收光谱学)制定无创分光光度诊断设备的医学和技术要求(MTR)的科学方法。这些设备的理论建模框架、计量认证和测试仍处于早期发展阶段。对于波长在 514nm 到 940nm 之间的接收信号水平的理论估计高度依赖于受检组织中的血液体积水平。该方法尤其允许计算仪器的技术和计量性能限制,例如不同光谱通道和不同生物医学(生化和生理)参数的灵敏度和与功率相关的信噪比的范围。为无创分光光度诊断设备提供专门的 MTR 可以使它们发展到标准化测量技术的水平。

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