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A wearable multi-channel fNIRS system for brain imaging in freely moving subjects

机译:一种可穿戴的多通道fNIRs系统,用于在自由移动的对象中进行脑成像

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摘要

Functional near infrared spectroscopy (fNIRS) is a versatile neuroimaging tool with an increasing acceptance in the neuroimaging community. While often lauded for its portability, most of the fNIRS setups employed in neuroscientific research still impose usage in a laboratory environment. We present a wearable, multi-channel fNIRS imaging system for functional brain imaging in unrestrained settings. The system operates without optical fiber bundles, using eight dual wavelength light emitting diodes and eight electro-optical sensors, which can be placed freely on the subject's head for direct illumination and detection. Its performance is tested on N = 8 subjects in a motor execution paradigm performed under three different exercising conditions: (i) during outdoor bicycle riding, (ii) while pedaling on a stationary training bicycle, and (iii) sitting still on the training bicycle. Following left hand gripping, we observe a significant decrease in the deoxyhemoglobin concentration over the contralateral motor cortex in all three conditions. A significant task-related ΔHbO2 increase was seen for the non-pedaling condition. Although the gross movements involved in pedaling and steering a bike induced more motion artifacts than carrying out the same task while sitting still, we found no significant differences in the shape or amplitude of the HbR time courses for outdoor or indoor cycling and sitting still. We demonstrate the general feasibility of using wearable multi-channel NIRS during strenuous exercise in natural, unrestrained settings and discuss the origins and effects of data artifacts. We provide quantitative guidelines for taking condition-dependent signal quality into account to allow the comparison of data across various levels of physical exercise. To the best of our knowledge, this is the first demonstration of functional NIRS brain imaging during an outdoor activity in a real life situation in humans.
机译:功能性近红外光谱(fNIRS)是一种多功能的神经影像工具,在神经影像界越来越受人们的欢迎。尽管因其可移植性而广受赞誉,但神经科学研究中使用的大多数fNIRS设置仍要求在实验室环境中使用。我们提出了一种可穿戴的多通道fNIRS成像系统,用于在不受约束的环境中进行功能性脑成像。该系统使用八个双波长发光二极管和八个光电传感器在没有光纤束的情况下运行,可以将其自由放置在受试者的头部上以直接照明和检测。在3种不同锻炼条件下进行的运动执行范例中,对N = 8位受试者的性能进行了测试:(i)在户外骑自行车时,(ii)在固定训练自行车上踩踏时,和(iii)仍然坐在训练自行车上。紧握左手后,我们观察到在所有三种情况下,对侧运动皮层的脱氧血红蛋白浓度均显着降低。在非踩踏条件下,与任务相关的ΔHbO2显着增加。尽管脚踏和转向自行车所涉及的总体运动比静坐时执行相同任务所引起的运动伪影更多,但我们发现在室外或室内骑行和静坐的HbR时程的形状或幅度没有显着差异。我们演示了在自然,不受约束的环境中进行剧烈运动期间使用可穿戴多通道NIRS的一般可行性,并讨论了数据伪像的起源和影响。我们提供了定量指导,将与状况有关的信号质量考虑在内,以允许在不同水平的体育锻炼中进行数据比较。据我们所知,这是人类在现实生活中户外活动期间首次显示功能性NIRS脑成像的演示。

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