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Functional near-infrared spectroscopy (fNIRS) of brain function during active balancing using a video game system

机译:使用视频游戏系统进行主动平衡期间的大脑功能的功能近红外光谱(fNIRS)

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Functional near-infrared spectroscopy (fNIRS) is a portable, non-invasive, brain imaging technology that uses low levels of non-ionizing light to record changes in cerebral blood flow in the brain through optical sensors placed on the surface of the scalp. These signals are recorded via flexible fiber optic cables, which allow neuroimaging experiments to be conducted on participants while performing tasks such as standing or walking. FNIRS has the potential to provide new insights into the evolution of brain activation during ambulatory motor learning tasks and standing tasks to probe balance and vestibular function. In this study, a 32 channel fNIRS system was used to record blood flow changes in the frontal, motor, sensory, and temporal cortices during active balancing associated with playing a video game simulating downhill skiing (Nintendo Wii?; Wii-fit?). Using fNIRS, we found activation of superior temporal gyrus, which was modulated by the difficulty of the balance task. This region had been previously implicated in vestibular function from other animal and human studies.
机译:功能性近红外光谱(fNIRS)是一种便携式,非侵入性的大脑成像技术,该技术使用低水平的非电离光通过置于头皮表面的光学传感器来记录大脑中脑血流量的变化。这些信号通过挠性光纤电缆记录,该电缆允许在执行诸如站立或行走之类的任务时对参与者进行神经成像实验。 FNIRS有潜力为动态运动学习任务和站立任务中的大脑激活进化提供新见解,以探究平衡和前庭功能。在这项研究中,使用32通道fNIRS系统记录与玩模拟下坡滑雪的视频游戏(Nintendo Wii?; Wii-fit?)相关的主动平衡期间,额叶,运动,感觉和颞叶皮质的血流变化。使用fNIRS,我们发现上颞颞回的激活受到平衡任务难度的调节。该区域先前曾涉及其他动物和人类研究的前庭功能。

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