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RAD51 缺陷破坏运动控制的皮质脊髓侧化。

RAD51 deficiency disrupts the corticospinal lateralization of motor control.

机构信息

1 Centre de Neuro-imagerie de Recherche (CENIR) de l'Institut du Cerveau et de la Moëlle Epiniere (ICM), Paris, France.

出版信息

Brain. 2013 Nov;136(Pt 11):3333-46. doi: 10.1093/brain/awt258. Epub 2013 Sep 20.

Abstract

Mirror movements are involuntary symmetrical movements of one side of the body that mirror voluntary movements of the other side. Congenital mirror movement disorder is a rare condition characterized by mirror movements that persist throughout adulthood in subjects with no other clinical abnormalities. The affected individuals have mirror movements predominating in the muscles that control the fingers and are unable to perform purely unimanual movements. Congenital mirror movement disorder thus provides a unique paradigm for studying the lateralization of motor control. We conducted a multimodal, controlled study of patients with congenital mirror movements associated with RAD51 haploinsufficiency (n = 7, mean age 33.3 ± 16.8 years) by comparison with age- and gender-matched healthy volunteers (n = 14, mean age 33.9 ± 16.1 years). We showed that patients with congenital mirror movements induced by RAD51 deficiency had: (i) an abnormal decussation of the corticospinal tract; (ii) abnormal interhemispheric inhibition and bilateral cortical activation of primary motor areas during intended unimanual movements; and (iii) an abnormal involvement of the supplementary motor area during both unimanual and bimanual movements. The lateralization of motor control thus requires a fine interplay between interhemispheric communication and corticospinal wiring. This fine interplay determines: (i) the delivery of appropriate motor plans from the supplementary motor area to the primary motor cortex; (ii) the lateralized activation of the primary motor cortex; and (iii) the unilateral transmission of the motor command to the limb involved in the intended movement. Our results also unveil an unexpected function of RAD51 in corticospinal development of the motor system.

摘要

镜像运动是身体一侧的无意识对称运动,反映了另一侧的自愿运动。先天性镜像运动障碍是一种罕见的疾病,其特征是在没有其他临床异常的情况下,成年后仍然存在镜像运动。受影响的个体主要表现为控制手指的肌肉出现镜像运动,无法进行纯粹的单手运动。因此,先天性镜像运动障碍为研究运动控制的偏侧化提供了一个独特的范例。我们通过比较与 RAD51 半不足相关的先天性镜像运动患者(n=7,平均年龄 33.3±16.8 岁)与年龄和性别匹配的健康志愿者(n=14,平均年龄 33.9±16.1 岁),对伴有 RAD51 缺乏的先天性镜像运动患者进行了多模态对照研究。我们发现,RAD51 缺乏引起的先天性镜像运动患者存在:(i)皮质脊髓束交叉异常;(ii)意图进行单手运动时,大脑两半球间抑制和初级运动区双侧皮质激活异常;(iii)单手和双手运动时,辅助运动区异常参与。运动控制的偏侧化需要大脑两半球间的通讯和皮质脊髓束布线之间的精细相互作用。这种精细的相互作用决定了:(i)来自辅助运动区的适当运动计划传递到初级运动皮层;(ii)初级运动皮层的偏侧化激活;(iii)运动指令向参与意图运动的肢体的单侧传递。我们的结果还揭示了 RAD51 在运动系统皮质脊髓发育中的意外功能。

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