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Hemodynamic Response of the Supplementary Motor Area during Locomotor Tasks with Upright versus Horizontal Postures in Humans

机译:人体垂直运动和水平姿势运动任务期间辅助运动区的血流动力学响应

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摘要

To understand cortical mechanisms related to truncal posture control during human locomotion, we investigated hemodynamic responses in the supplementary motor area (SMA) with quadrupedal and bipedal gaits using functional near-infrared spectroscopy in 10 healthy adults. The subjects performed three locomotor tasks where the degree of postural instability varied biomechanically, namely, hand-knee quadrupedal crawling (HKQuad task), upright quadrupedalism using bilateral Lofstrand crutches (UpQuad task), and typical upright bipedalism (UpBi task), on a treadmill. We measured the concentration of oxygenated hemoglobin (oxy-Hb) during the tasks. The oxy-Hb significantly decreased in the SMA during the HKQuad task, whereas it increased during the UpQuad task. No significant responses were observed during the UpBi task. Based on the degree of oxy-Hb responses, we ranked these locomotor tasks as UpQuad > UpBi > HKQuad. The order of the different tasks did not correspond with postural instability of the tasks. However, qualitative inspection of oxy-Hb time courses showed that oxy-Hb waveform patterns differed between upright posture tasks (peak-plateau-trough pattern for the UpQuad and UpBi tasks) and horizontal posture task (downhill pattern for the HKQuad task). Thus, the SMA may contribute to the control of truncal posture accompanying locomotor movements in humans.
机译:为了了解人类运动过程中与躯干姿势控制相关的皮层机制,我们使用功能性近红外光谱技术在10名健康成年人中调查了四足和两足步态的补充运动区(SMA)的血液动力学反应。研究对象在跑步机上执行了三个运动任务,这些姿势的姿势不稳定性在生物力学上发生变化,即,手膝四足爬行(HKQuad任务),使用双侧Lofstrand拐杖进行直立四足运动(UpQuad任务)和典型的立足双足运动(UpBi任务)。 。我们在任务期间测量了氧化血红蛋白(oxy-Hb)的浓度。在HKQuad任务期间,SMA中的oxy-Hb明显降低,而在UpQuad任务期间则升高。在UpBi任务期间未观察到重大响应。根据oxy-Hb反应的程度,我们将这些运动任务分类为UpQuad> UpBi> HKQuad。不同任务的顺序与任务的姿势不稳定性相对应。但是,对oxy-Hb时间过程的定性检查显示,在垂直姿势任务(UpQuad和UpBi任务的峰-谷波谷模式)和水平姿势任务(HKQuad任务的下坡模式)之间,oxy-Hb波形模式有所不同。因此,SMA可能有助于控制伴随人类运动的截断姿势。

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