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The Plasticity of Brain Gray Matter and White Matter following Lower Limb Amputation

机译:下肢截肢后脑灰质和白质的可塑性

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摘要

Accumulating evidence has indicated that amputation induces functional reorganization in the sensory and motor cortices. However, the extent of structural changes after lower limb amputation in patients without phantom pain remains uncertain. We studied 17 adult patients with right lower limb amputation and 18 healthy control subjects using T1-weighted magnetic resonance imaging and diffusion tensor imaging. Cortical thickness and fractional anisotropy (FA) of white matter (WM) were investigated. In amputees, a thinning trend was seen in the left premotor cortex (PMC). Smaller clusters were also noted in the visual-to-motor regions. In addition, the amputees also exhibited a decreased FA in the right superior corona radiata and WM regions underlying the right temporal lobe and left PMC. Fiber tractography from these WM regions showed microstructural changes in the commissural fibers connecting the bilateral premotor cortices, compatible with the hypothesis that amputation can lead to a change in interhemispheric interactions. Finally, the lower limb amputees also displayed significant FA reduction in the right inferior frontooccipital fasciculus, which is negatively correlated with the time since amputation. In conclusion, our findings indicate that the amputation of lower limb could induce changes in the cortical representation of the missing limb and the underlying WM connections.
机译:越来越多的证据表明,截肢可引起感觉和运动皮层的功能重组。然而,没有幻影痛的患者下肢截肢后结构变化的程度仍不确定。我们使用T1加权磁共振成像和弥散张量成像研究了17名成年右下肢截肢患者和18名健康对照受试者。研究了白质(WM)的皮质厚度和分数各向异性(FA)。在截肢者中,左前运动皮层(PMC)出现变薄趋势。在视觉至运动区域还发现了较小的簇。此外,被截肢者在右颞叶和左PMC下方的右上电晕放射线和WM区的FA也降低。这些WM区域的纤维束显像显示连接双侧运动前皮质的连合纤维的微结构变化,与截肢可能导致半球间相互作用变化的假设相吻合。最后,下肢截肢者在右下枕骨筋膜中也显示出显着的FA降低,这与截肢后的时间呈负相关。总之,我们的发现表明,下肢的截肢可能会导致缺失肢体的皮层表征和潜在的WM连接发生变化。

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