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Improving optical contact for functional near‑infrared brain spectroscopy and imaging with brush optodes

机译:改善功能性近红外脑光谱学和笔刷光电成像的光学接触

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摘要

A novel brush optode was designed and demonstrated to overcome poor optical contact with the scalp that can occur during functional near infrared spectroscopy (fNIRS) and imaging due to light obstruction by hair. The brush optodes were implemented as an attachment to existing commercial flat-faced (conventional) fiber bundle optodes. The goal was that the brush optodes would thread through hair and improve optical contact on subjects with dense hair. Simulations and experiments were performed to assess the magnitude of these improvements. FNIRS measurements on 17 subjects with varying hair colors (blonde, brown, and black) and hair densities (0–2.96 hairs/mm2) were performed during a finger tapping protocol for both flat and brush optodes. In addition to reaching a study success rate of almost 100% when using the brush optode extensions, the measurement setup times were reduced by a factor of three. Furthermore, the brush optodes enabled improvements in the activation signal-to-noise ratio (SNR) by up to a factor of ten as well as significant (p < 0.05) increases in the detected area of activation (dAoA). The measured improvements in SNR were matched by Monte Carlo (MC) simulations of photon propagation through scalp and hair. In addition, an analytical model was derived to mathematically estimate the observed light power losses due to different hair colors and hair densities. Interestingly, the derived analytical formula produced excellent estimates of the experimental data and MC simulation results despite several simplifying assumptions. The analytical model enables researchers to readily estimate the light power losses due to obstruction by hair for both flat-faced fiber bundles and individual fibers for a given subject.
机译:设计并证明了一种新颖的刷式光电二极管,可以克服由于头发被光阻挡而在功能性近红外光谱(fNIRS)和成像过程中发生的与头皮的不良光学接触。刷式光电二极管是作为现有的商用平面(常规)光纤束光电二极管的附件而实现的。目的是使刷状光电二极管穿过头发,并改善头发密集的对象的光学接触。进行了仿真和实验,以评估这些改进的幅度。在平板触摸屏和刷式触摸屏的手指轻敲协议期间,对17名受试者进行了FNIRS测量,这些受试者具有不同的头发颜色(金发,棕色和黑色)和头发密度(0-2.96根头发/ mm 2 )。使用笔刷式光电二极管扩展时,除了达到近100%的研究成功率外,测量建立时间也减少了三倍。此外,刷式光电二极管可以将激活信号的信噪比(SNR)提高多达十倍,并且在检测到的激活区域(dAoA)中有明显的提高(p <0.05)。信噪比(SNR)的测量提高与光子通过头皮和头发传播的蒙特卡罗(MC)模拟相匹配。另外,导出分析模型以数学方式估计由于不同的头发颜色和头发密度而导致的观察到的光功率损失。有趣的是,尽管有一些简化的假设,但导出的分析公式仍能很好地估算实验数据和MC模拟结果。该分析模型使研究人员可以轻松地估算出给定对象的平面纤维束和单个纤维由于头发的阻塞而造成的光功率损失。

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