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Experimental investigation on the light transmission of a textile-based over-cap used in functional near-infrared spectroscopy

机译:功能近红外光谱纺织基上帽光传输的实验研究

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Functional near-infrared spectroscopy as an optical (i.e., light-based) neuroimaging technique is susceptive to ambient light noise. In the daily task scenario experiments, light is required to monitor the movement of patients and to minimize the effect of this light on the results; the fNIRS optodes are covered with dark materials (e.g., a loose-fitting black shower-cap). In our laboratory, over-caps provided by NIRx (produced by EasyCap) have been used to eliminate this con-founder. However, there has been a demand to evaluate their performance by quantification. Thus, in this paper, the transmission of light through a fabric over-cap is investigated. The results revealed that the output signal of functional near-infrared spectroscopy could be contaminated significantly by the ambient light. Moreover, the noise varies due to the stretch that could be applied due to various head sizes. The changes in the amplitude of the signal, which relates to physiological responses, is about 1-2 % in continuous wave measurement while the result of the investigation notes that the transmission average in the samples varies from 8-46 percent depending on the stretching forces. Therefore, it is suggested that this kind of over-caps would be applied only in a dimmed environment, which is not applicable when subjects have mobility disorders. Under such conditions, other techniques to minimize ambient light should be practiced.
机译:功能近红外光谱作为光学(即,光基)神经影像学技术易于环境光噪声。在日常任务方案实验中,需要光线来监测患者的运动,并尽量减少这种光对结果的影响; FNIRS光学覆盖着暗材料(例如,宽松的黑色淋浴盖)。在我们的实验室中,NIRX提供的过上限(由EasyCAP制作)已被用于消除这一结果。但是,需要通过量化来评估其性能。因此,在本文中,研究了光通过织物过度盖的光。结果表明,通过环境光可以显着污染功能近红外光谱的输出信号。此外,由于各种头部尺寸,噪声由于可以施加的延伸而变化。与生理反应有关的信号幅度的变化在连续波测量中约为1-2%,而调查结果指出,样品中的传动平均值根据拉伸力而变化在8-46%之间。因此,建议只在昏暗的环境中应用这种超帽,这在受试者具有移动性障碍时不适用。在这种情况下,应实践其他技术以最小化环境光。

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