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首页> 外文期刊>Brain and cognition >Force related hemodynamic responses during execution and imagery of a hand grip task: A functional near infrared spectroscopy study
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Force related hemodynamic responses during execution and imagery of a hand grip task: A functional near infrared spectroscopy study

机译:在执行和执行手握任务的过程中与力相关的血液动力学响应:功能性近红外光谱研究

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摘要

We examined force related hemodynamic changes during the performance of a motor execution (ME) and motor imagery (MI) task by means of multichannel functional near infrared spectroscopy (fNIRS). The hemodynamic responses of fourteen healthy participants were measured while they performed a hand grip execution or imagery task with low and high grip forces. We found an overall higher increase of [oxy-Hb] concentration changes during ME for both grip forces but with a delayed peak maximum for the lower grip force. During the MI task with lower grip force, the [oxy-Hb] level increases are stronger compared to the MI with higher grip force. The facilitation in performing MI with higher grip strength might thus indicate less inhibition of the actual motor act which could also explain the later increase onset of [oxy-Hb] in the ME task with the lower grip force. Our results suggest that execution and imagery of a hand grip task with high and low grip forces, leads to different cortical activation patterns. Since impaired control of grip forces during object manipulation in particular is one aspect of fine motor control deficits after stroke, our study will contribute to future rehabilitation programs enhancing patient's grip force control.
机译:我们通过多通道功能近红外光谱(fNIRS)检查了运动执行(ME)和运动成像(MI)任务执行过程中与力有关的血液动力学变化。在他们以低和高抓地力执行手抓握执行或成像任务时,测量了十四名健康参与者的血液动力学反应。我们发现,在两种握力下,ME期间[oxy-Hb]浓度变化总体上都有较高的增加,但是对于较低的握力,峰值最大延迟了。与握力较高的MI相比,在握力较小的MI任务中,[oxy-Hb]水平的增加更强。因此,以较高的抓地力进行MI的促进可能表明对实际运动行为的抑制较小,这也可以解释后来在以较低的抓地力进行的ME任务中[oxy-Hb]的起效增加。我们的研究结果表明,执行握力高和握力低的手握任务的过程和图像会导致皮质激活模式不同。由于特别是在对象操作过程中对握力的控制不佳是中风后精细运动控制不足的一个方面,因此我们的研究将有助于未来的康复计划,以增强患者对握力的控制。

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