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Reorganization of the primary motor cortex following lower-limb amputation for vascular disease: a pre-post-amputation comparison

机译:血管疾病低肢截肢后初级电机皮质的重组:截肢前的截肢前比较

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Purpose: This study compared bilateral corticomotor and intracortical excitability of the primary motor cortex (M1), pre- and post-unilateral transtibial amputation.Method: Three males aged 45, 55, and 48 years respectively who were scheduled for elective amputation and thirteen (10 male, 3 female) healthy control participants aged 58.9 (SD 9.8) were recruited. Transcranial magnetic stimulation assessed corticomotor and intracortical excitability of M1 bilaterally. Neurophysiological assessments were performed 10 (SD 7) days prior to surgery and again at 10 (SD 3) days following surgery. Data were analyzed descriptively and objectively compared to 95% confidence intervals from control data.Results: Prior to amputation, all three patients demonstrated stronger short-latency intracortical inhibition evoked from M1 ipsilateral to the affected limb and reduced long-latency intracortical inhibition evoked from M1 contralateral to the affected limb compared to control subjects. Following amputation, short-latency intracortical inhibition was reduced in both M1s and long-latency intracortical inhibition was reduced for the ipsilateral M1. Single-pulse motor evoked potential amplitude and motor thresholds were similar pre-to-post amputation.Conclusions: Modulation of intracortical excitability shortly following amputation indicates that the cortical environment may be optimized for reorganization in the acute post-amputation period which might be significant for learning to support prosthetic mobility.Implications for RehabilitationAmputation of a lower-limb is associated with extensive reorganization at the level of the cortex.Reorganization occurs in the acute post-amputation period implying a favorable cortical environment for recovery.Rehabilitation or brain interventions may target the acute pre-prosthetic post-amputation period to optimize recovery.
机译:目的:本研究比较双侧皮质大常集体和初级运动皮质皮质(M1)的肠道内兴奋性,分别为45%,55岁,55岁和48岁的三个男性,分别预定截肢和十三岁(招募了10岁男性,3名女性)健康控制参与者58.9岁(SD 9.8)。经颅磁刺激评估了皮质运动和双侧M1的肠内兴奋性。在手术前,在手术后10(SD 3)天,在手术前进行10天(SD 7)天。关于从控制数据的95%置信区间进行描述和客观地分析数据与受试者相比受影响的肢体对侧。在截肢后,在M1S中减少了短期性的内部抑制,并且对于IpsilAtalal M1减少了长期的延迟性抑制。单脉冲电动机诱发电位幅度和电动机阈值是类似的截肢前的截肢。结论:截肢后不久的术后兴奋性的调制表明皮质环境可以在急性后期截肢时期进行重组,这可能是重要的学习支持假体的移动性。用于恢复裁员的恢复裁员在急性截肢时期发生在急性后截肢时期的广泛重组中,这意味着对恢复的良好皮质环境发生了良好的皮质环境。重量或脑干干预可能瞄准急性前期截肢时间,优化恢复。

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