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Functional near-infrared spectroscopy for monitoring macaque cerebral motor activity during voluntary movements without head fixation

机译:功能性近红外光谱仪可在无头部固定的情况下自动监测猕猴的大脑运动活动

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摘要

We developed an fNIRS system for monitoring macaque cerebral motor activity during voluntary movements without head fixation. fNIRS data at 27 channels in 7.5 mm spatial interval were calibrated by simulating light propagation through the macaque cranial tissues. The subject was instructed to repeatedly (75 times) retrieve a food pellet with alternating left or right hands from a food well for each session. We detected significant increases in oxygenated hemoglobin (Hb) and decrease in deoxygenated Hb in the primary motor area (M1) contralateral to the hand used. In more rostral and ventral regions in both hemispheres, the hemodynamic similarly changed regardless of used hand. Direct feeding to the mouth eliminated activity in the hand M1 whereas that at bilateral ventral regions (mouth M1 area) remained. Statistical analyses for the hemodynamics between left/right-hand use revealed the location of each hand M1 in either hemisphere. In these regions, the maximum amplitude and time of the maximum amplitude in the hemodynamic response evoked by food retrieval were highly correlated with the time associated with food retrieval. We could assign each channel to an appropriate functional motor area, providing proof of principle for future studies involving brain damage models in freely moving macaque monkeys.
机译:我们开发了一种fNIRS系统,用于在无头部固定的情况下监测自发运动期间的猕猴脑运动活动。通过模拟通过猕猴颅骨组织传播的光来校准7.5?mm空间间隔中27个通道的fNIRS数据。指示对象在每次训练中用交替的左手或右手从食物槽中反复(75次)取出食物颗粒。我们检测到与所用手对侧的主要运动区域(M1)中的氧化血红蛋白(Hb)明显增加,而脱氧Hb减少。在两个半球的更多鸟嘴和腹侧区域,无论使用何种手,血流动力学都类似地改变。直接喂食嘴消除了手M1的活动,而保留了双侧腹侧区域(嘴M1区域)的活动。左右手之间的血流动力学的统计分析表明,每只手M1在任一半球中的位置。在这些区域中,食物取回引起的血液动力学反应的最大幅度和最大幅度的时间与食物取回相关的时间高度相关。我们可以将每个通道分配给适当的功能性运动区域,为涉及自由移动的猕猴的脑损伤模型的未来研究提供原理证明。

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