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Constraints imposed by the lower extremity extensor synergy in chronic hemiparetic stroke: Preliminary findings

机译:下肢延伸型协同作用慢性半蠕动中风施加的约束:初步调查结果

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In the present manuscript we implemented the MultiLEIT, a lower extremity isometric torque measurement device to quantify spontaneous joint torque coupling during maximal torque generation in the paretic leg of in chronic hemiparetic stroke. We quantified extension/adduction coupling (coincident with the clinical extension synergy) during the generation of hip extension and ankle plantarflexion maximum voluntary torques. Subjects were then instructed to generate torques outside the synergy by combining hip extension+ hip abduction or ankle plantarflexion + hip abduction. During the hip dual task, the paretic hip torques were significantly different from those measured in the non-paretic and control leg (F = 22.9719, p = 0) and resulted in the inability to generate torques outside the extensor synergy patters. During the dual ankle/ hip task, the paretic extremity generated significantly smaller hip abduction torques compared to controls and to the non-paretic extremity (F = 15.861, p = 0). During this task the paretic extremity was capable of neutralizing the spontaneous adduction torque and generate a net albeit small abduction torque. Results may indicate an increased descending drive from brain stem pathways, particularly during hip extension, responsible for constraints in generating hip abduction torques after stroke.
机译:在本发明的手稿中,我们实施了多倍数,一个下肢等距扭矩测量装置,以在慢性半蠕动行程中的渐进腿中的最大扭矩产生期间量化自发关节扭矩耦合。在髋部延伸和脚踝Plantarflexion最大自愿转矩的产生期间,我们量化延伸/内接耦合(与临床延伸协同效应一致)。然后指示受试者通过组合髋部延伸+髋关节绑架或踝关节绑定+髋关节展示来在协同作用之外产生扭矩。在髋关节双重任务期间,静脉髋关节扭矩与非分析和控制腿(F = 22.9719,P = 0)中测量的那些显着不同,并导致无法在伸展系统外部外产生扭矩。在双脚踝/髋关节任务期间,与对照和非分析肢体相比,分析肢体产生明显较小的髋关节绑架扭矩(f = 15.861,p = 0)。在此任务期间,分析末端能够中和自发收缩扭矩并产生净缺乏小型绑架扭矩。结果可以表明从脑干途径的增加的下降驱动,特别是在髋部延伸期间,负责在中风后产生髋关节绑架扭矩的约束。

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