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Somatotopic reorganization of hand representation in bilateral arm amputees with or without special foot movement skill

机译:具有或不具有特殊足部运动技巧的双侧手臂截肢者手部表征的体位重组

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Bilateral arm amputees usually are excellent foot users. To explore the plasticity of the primary motor cortex in upper-extremities amputees and to determine if the acquisition of special foot movement skill is related with the bilateral hand amputation, we studied the primary motor cortex by using combined task and resting state functional magnetic resonance imaging (fMRI). We investigated 6 bilateral arm amputees with or without special foot movement skill. In the task fMRI study, we found that toe tapping of all the amputees activated the bilateral hand area, including cases without special foot skill. In addition, cases without special foot skill mainly activated the precentral gyrus, which differed from those with more adept foot motor skill who activated both the precentral and postcentral gyri. To further understand the plasticity of the hand area, the resting state functional connectivity was investigated between the foot and hand regions. One-tailed two-sample t-test suggested that the connections between two areas became significantly stronger in the amputee group. Our study demonstrates that hand region of the cortex does not remain 'silent' after bilateral arm amputation, but rather is recruited by other modalities such as adjacent or nonadjacent cortexes to process motor information in a functionally relevant manner. From the data presented, it seems that the bilateral arm amputees have a strong potential to develop new skills in their remaining extremities and practice may further enhance this potential.
机译:双边手臂截肢者通常是出色的脚使用者。为了探索上肢截肢者初级运动皮层的可塑性并确定双脚截肢是否与特殊的脚部动作技巧有关,我们通过结合任务和静止状态功能磁共振成像研究了初级运动皮层(fMRI)。我们调查了6个有或没有特殊脚运动技巧的双侧截肢者。在任务功能磁共振成像研究中,我们发现所有截肢者的脚趾敲击都激活了双侧手部区域,包括没有特殊足部技巧的病例。此外,没有特殊脚技能的病例主要激活中央前回,这与具有较高的脚运动技能的患者既激活中央前回又激活中央。为了进一步了解手部区域的可塑性,研究了脚部和手部区域之间的静止状态功能连接性。一尾两样本t检验表明,在截肢者组中,两个区域之间的联系变得更加牢固。我们的研究表明,在双侧手臂截肢后,皮质的手部区域不会保持“沉默”,而是通过其他方式(例如相邻或不相邻的皮质)募集,以功能上相关的方式处理运动信息。从提供的数据来看,双边截肢者似乎具有在其剩余肢体中发展新技能的强大潜力,而实践可能会进一步增强这种潜力。

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