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运动障碍对感觉信息处理的影响。

The impact of motor impairment on the processing of sensory information.

作者信息

Klingner Carsten M, Brodoehl Stefan, Witte Otto W, Guntinas-Lichius Orlando, Volk Gerd F

机构信息

Hans Berger Department of Neurology, Jena University Hospital, Germany; Biomagnetic Center, University Hospital, Germany; Facial-Nerve-Center, Jena University Hospital, Germany.

Hans Berger Department of Neurology, Jena University Hospital, Germany; Biomagnetic Center, University Hospital, Germany.

出版信息

Behav Brain Res. 2019 Feb 1;359:701-708. doi: 10.1016/j.bbr.2018.09.016. Epub 2018 Sep 21.

Abstract

Sensorimotor adaptation is driven by mismatch errors between desired movements and actual movement outcomes. A mismatch error can be minimized by adjusting movements or by altering the interpretation of sensory information. While the effect of mismatch errors on the motor system has received much attention, the contribution of somatosensory feedback, particularly the sensory-motor interplay in the process of adaptation, remains poorly understood. Our study analyzes the impact of peripheral deefferentation on the plasticity of the brain networks responsible for sensory-motor adaptation, focusing particularly on changes in the processing of somatosensory information. For this aim, task-based and resting-state functional MRI was performed on 24 patients in the acute state of a left-sided idiopathic peripheral facial nerve palsy. The functional connectivity of cortical and subcortical networks was analyzed and compared to a healthy control group. We found a strong involvement of the somatosensory system and the thalamus in the adaptation process following an acute peripheral deefferentation. The investigated network shows the principal pattern of a reduced connectivity between cortical areas, while the connectivity to subcortical areas (the basal ganglia and the thalamus) is increased. We suggest that the increased connectivity between the subcortical and cortical structures indicates an active sensory-motor adaptation process. We further hypothesize that the decreased functional connectivity at the cortical level reflects an unsuccessful sensorimotor adaptation process due to the inability to solve the somatosensory-motor mismatch. These results extend our understanding of the somatosensory-motor interaction in response to a mismatch signal and highlight the importance of the thalamus in this process.

摘要

感觉运动适应由期望动作与实际运动结果之间的不匹配误差驱动。通过调整动作或改变对感觉信息的解释,可以将不匹配误差降至最低。虽然不匹配误差对运动系统的影响已受到广泛关注,但体感反馈的作用,尤其是适应过程中的感觉运动相互作用,仍知之甚少。我们的研究分析了外周去传入对负责感觉运动适应的脑网络可塑性的影响,特别关注体感信息处理的变化。为此,对24例左侧特发性周围性面神经麻痹急性期患者进行了基于任务和静息态功能磁共振成像。分析了皮质和皮质下网络的功能连接,并与健康对照组进行比较。我们发现,急性外周去传入后,体感系统和丘脑在适应过程中发挥了重要作用。研究的网络显示出皮质区域之间连接性降低的主要模式,而与皮质下区域(基底神经节和丘脑)的连接性增加。我们认为,皮质下和皮质结构之间连接性的增加表明了一个活跃的感觉运动适应过程。我们进一步假设,皮质水平上功能连接性的降低反映了由于无法解决体感运动不匹配而导致的感觉运动适应过程失败。这些结果扩展了我们对响应不匹配信号时体感运动相互作用的理解,并突出了丘脑在此过程中的重要性。

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