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Mind the bend: cerebral activations associated with mental imagery of walking along a curved path

机译:注意弯曲:大脑活动与沿着弯曲路径行走的心理想象有关

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The use of functional magnetic resonance imaging (fMRI) to examine mental imagery of locomotion has become an attractive way to investigate supraspinal gait control in humans. Whereas cerebral activation patterns associated with walking along a straight line have already been investigated, data on activations associated with the initiation of turns and the maintenance of a curved path are sparse. Electrophysiological findings in animals show that electrical stimulation of the striatum induces a contraversive turn of eyes, head, and body. In the present study, fMRI was used to investigate brain activity in 12 healthy volunteers during mental imagery of walking along a curved path, walking straight ahead, and upright stance. The major findings were as follows: (1) A shift of activation to the hemisphere contralateral to the turn was found in the putamen, and—for initiation of the turn—in the caudate nucleus. These findings confirm the important role of the striatum in the initiation of movement and the execution of contraversive body turns. (2) Parahippocampal and fusiform gyri, known to be involved in visually guided navigation, showed more activity when walking along a curved path than when walking straight ahead. (3) Deactivations were found in the superior and medial temporal gyri, areas belonging to the multisensory and vestibular cortical network. This reduced activity may reflect the suppression of vestibular signal processing in favour of—potentially conflicting—visual input. (4) Mental imagery of walking along a curved path induced ipsiversive eye movements in most subjects, as did actually walking along a curve. These data complement earlier findings on the role of anticipatory eye movements during initiation of turns and suggest that there is a very close neurophysiologic relation between locomotion and its mental imagery.
机译:使用功能磁共振成像(fMRI)来检查运动的心理图像已成为研究人体上棘步控制的一种有吸引力的方法。尽管已经研究了与沿着直线行走相关的大脑激活模式,但是与转弯开始和弯曲路径维持相关的激活数据却很少。动物的电生理结果表明,纹状体的电刺激引起眼睛,头部和身体的相反转动。在本研究中,功能磁共振成像用于调查12名健康志愿者在沿弯曲路径行走,笔直向前行走和直立姿势的心理成像过程中的大脑活动。主要发现如下:(1)在核壳中发现了与转弯对侧的激活转移到半球,并且在尾状核中发现了转弯的开始。这些发现证实了纹状体在运动的开始和对立的身体转向的执行中的重要作用。 (2)已知参与视觉导航的海马旁和梭状回,在沿弯曲路径行走时比在向前行走时表现出更多的活动。 (3)在颞上和内​​侧颞回中发现失活,属于多感觉和前庭皮质网络区域。这种减少的活动可能反映了对前庭信号处理的抑制,而倾向于(可能是相互冲突的)视觉输入。 (4)在大多数受试者中,沿着弯曲路径行走的心理意象引起了举足轻重的眼睛运动,就像实际上沿着弯曲行走一样。这些数据补充了先前在转弯开始时预期的眼动作用的发现,并表明运动与其心理意象之间存在非常密切的神经生理关系。

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