首页> 外文期刊>Brain research >Quantification of delayed oxygenation in ipsilateral primary motor cortex compared with contralateral side during a unimanual dominant-hand motor task using near-infrared spectroscopy.
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Quantification of delayed oxygenation in ipsilateral primary motor cortex compared with contralateral side during a unimanual dominant-hand motor task using near-infrared spectroscopy.

机译:使用近红外光谱对单侧优势手运动任务中同侧主运动皮层与对侧的延迟氧合进行定量。

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Using near-infrared spectroscopy (NIRS) techniques, it is possible to examine bilateral motor cortex oxygenation during a static motor task. Cortical activation was assumed to be reflected by increased oxygenation. The purpose of the present study was to examine the time course of oxygenation in the bilateral motor cortex during a low-intensity handgrip task. Six healthy, right-handed subjects participated in the study. The near-infrared spectroscopy probes positioned over the bilateral motor cortex were used to measure the cortical activation throughout a handgrip task carried out. The subjects performed a 3-min handgrip task with increasing intensity in a ramp-like manner [10-30% of the maximal voluntary contraction (MVC) at 6.67% MVC.min(-1)]. Contralateral motor cortex oxygenation increased significantly from 100 to 180 s after the start of the motor task compared with the baseline value (p<0.05). Ipsilateral motor cortex oxygenation also increased significantly from 130 to 180 s after the start of the motor task (p<0.05). The onset of increase in oxyhemoglobin ([HbO(2)]) and decrease in deoxyhemoglobin ([Hb]) in contralateral motor cortex area (M1) were significantly earlier than in ipsilateral M1 (respectively, p<0.05). These results show that there is a delayed oxygenation in ipsilateral primary motor cortex area compared with contralateral side during a unimanual dominant-hand motor task.
机译:使用近红外光谱(NIRS)技术,可以在静态运动任务期间检查双边运动皮层的氧合作用。假定皮层的活化通过增加的氧合作用来反映。本研究的目的是检查低强度握把任务期间双侧运动皮层充氧的时间过程。六名健康的右撇子受试者参加了研究。定位在双侧运动皮层上的近红外光谱探针用于在整个抓握过程中测量皮层的激活。受试者以类似斜坡的方式执行了3分钟的握力任务,强度逐渐增加[6.6%MVC.min(-1)时最大自愿收缩(MVC)的10-30%]。运动任务开始后,对侧运动皮层充氧从100 s到180 s明显高于基线值(p <0.05)。开始运动任务后,同侧运动皮层的充氧也从130 s增加到180 s(p <0.05)。对侧运动皮层区(M1)的氧合血红蛋白([HbO(2)])增加和脱氧血红蛋白([Hb])减少的发生明显早于同侧M1(分别为p <0.05)。这些结果表明,在单手优势运动任务中,与对侧相比,同侧主要运动皮层区域的氧合延迟。

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