中风不同阶段上下肢异常协同作用的相互作用:一项队列研究

Dongwon Kim, Sung-Hwa Ko, Junhee Han, Young-Taek Kim, Yun-Hee Kim, Won Hyuk Chang, Yong-Il Shin
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摘要

目的:屈伸协同作用是中风的代表性后果,出现在上肢和下肢。由于同侧皮质脊髓束(CST)是对两肢运动执行影响最大的神经通路,中风对该神经束的损伤可能导致两肢出现类似的运动病理特征(如异常协同作用)。然而,人们较少关注中风后不同恢复阶段肢体间屈伸协同作用的相关性。方法:在本研究中,我们使用了 Fugl-Meyer 评估(FMA)的结果来描述 512 名中风后偏瘫患者从急性期到 1 年期间肢体间的相关性。FMA 提供了中风后屈伸协同程度的间接指标。结果:我们发现,一般来说,在急性期到亚急性期(90 天),屈伸协同作用和伸展协同作用之间存在较强的肢体间相关性(r>0.65,所有 p 值均为 0.0001)。但下肢伸展协同作用与上肢屈曲协同作用和伸展协同作用的相关性在卒中后 360 天左右下降(降至 r=0.38)(p<0.05)。解释:这些结果表明,CST 中风受损后,替代神经通路的优先使用增强了屈伸协同作用之间的肢间相关性,然而,CST 的恢复或/和替代神经基质在慢性期的功能分裂(重塑)有助于运动执行中神经通路的多样性,最终导致肢间相关性降低。
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Interactions in abnormal synergies between the upper and lower extremities in various phases of stroke: A cohort study
Objective: The flexion synergy and extension synergy are a representative consequence of a stroke and appear in the upper extremity and lower extremity. Since the ipsilesional corticospinal tract (CST) is the most influential neural pathway for both extremities in motor execution, damage by a stroke to this tract could lead to similar motor pathological features (e.g., abnormal synergies) in both extremities. However less attention has been paid to the inter-limb correlations in the flexion synergy and extension synergy across different recovery phases of a stroke. Methods: In this study, we used results of the Fugl-Meyer assessment (FMA) to characterize those correlations in a total of 512 participants with hemiparesis post stroke from the acute phase to 1 year. The FMA provides indirect indicators of the degrees of the flexion synergy and extension synergy post stroke. Results: We found that generally, strong inter-limb correlations (r>0.65 with all p-values<0.0001) between the flexion synergy and extension synergy appeared in the acute-to-subacute phase (<90 days). But correlations of lower-extremity extension synergy with upper-extremity flexion synergy and extension synergy decreased (down to r=0.38) around 360 days after stroke (p<0.05). Interpretation: These results suggest that the preferential use of alternative neural pathways after damage by a stroke to the CST enhances inter-limb correlations between the flexion synergy and extension, however a recovery of the CST or/and the functional fragmentation (remodeling) of the alternative neural substrates in the chronic phase contribute to diversity in neural pathways in motor execution, eventually leading to reduced inter-limb correlations.
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