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Locomotor coordination in patients with Hereditary Spastic Paraplegia

机译:遗传痉挛截瘫患者的运动协调

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摘要

Locomotion is a complex behaviour that requires the coordination of multiple body segments and muscle groups. Here we investigated how the weakness and spasticity in individuals with Hereditary Spastic Paraplegia (HSP) affect the coordination patterns of the lower limbs. We analysed kinematics and electromyographic (EMG) activity from 12 leg muscles in 21 persons with HSP and 20 control subjects at matched walking speeds. To assess the locomotor coordination, we examined the covariation between thigh, shank and foot elevation angles by means of principal component analysis and the modular organization of EMG patterns using the non-negative matrix factorization algorithm. The characteristic features of the HSP gait consisted in changes of the elevation angles covariation, the shape of the gait loop, reduced range of motion of the distal segments and significantly lower foot lift. The EMG factorization analysis revealed a comparable structure of the motor output between HSP and control groups, but significantly wider basic temporal patterns associated with muscles innervated from the sacral spinal segments in HSP. Overall, the applied methodology highlighted the impact of the corticospinal degeneration and spasticity on the coordination of distal limb segments and basic muscle modules associated with distal spinal segments.
机译:运动是一种复杂的行为,需要协调多个身体段和肌肉群。在这里,我们研究了遗传痉挛性截瘫(HSP)的个体的弱点和痉挛如何影响下肢的配位模式。我们分析了21人的12个腿部肌肉的运动学和电拍摄(EMG)活性,在匹配的步行速度下的HSP和20个控制受试者。为了评估机车协调,我们通过主要成分分析和使用非负矩阵分解算法通过主成分分析和模块化组织的模块化组织来检查大腿,柄和脚抬高角度的变焦。 HSP步态的特征在高度角度调节的变化,步态循环的形状,减少远端段的运动范围,并且显着降低脚升力。 EMG分解分析揭示了HSP和对照组电动机输出的可比结构,但是与Hsp中的骶骨椎间段相关的肌肉相关的较大基本的颞型模式。总体而言,所应用的方法突出了皮质椎间膜变性和痉挛对远端脊部相关的远端肢段和碱性肌肉模块的影响。

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