首页> 外文期刊>Journal of the Neurological Sciences: Official Bulletin of the World Federation of Neurology >Sensory training with vibration-induced kinesthetic illusions improves proprioceptive integration in patients with Parkinson's disease
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Sensory training with vibration-induced kinesthetic illusions improves proprioceptive integration in patients with Parkinson's disease

机译:具有振动引起的动脉抑制幻想的感官训练改善了帕金森病患者的脑权集成

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Abstract The present study investigates whether proprioceptive training, based on kinesthetic illusions, can help in re-educating the processing of muscle proprioceptive input, which is impaired in patients with Parkinson's disease (PD). The processing of proprioceptive input before and after training was evaluated by determining the error in the amplitude of voluntary dorsiflexion ankle movement (20°), induced by applying a vibration on the tendon of the gastrocnemius-soleus muscle (a vibration-induced movement error). The training consisted of the subjects focusing their attention upon a series of illusory movements of the ankle. Eleven PD patients and eleven age-matched control subjects were tested. Before training, vibration reduced dorsiflexion amplitude in controls by 4.3° ( P P =0.20). After training, vibration significantly reduced the estimated movement amplitude in PD patients by 5.3° ( P =0.01). This re-emergence of a vibration-induced error leads us to conclude that proprioceptive training, based on kinesthetic illusions, is a simple means for re-educating the processing of muscle proprioceptive input in PD patients. Such complementary training should be included in rehabilitation programs that presently focus on improving balance and motor performance.
机译:摘要本研究调查是否本体感觉训练的基础上,动觉的幻想,在再教育肌肉本体感觉输入,这是患者的帕金森病(PD)受损的处理提供帮助。训练前和后本体感受输入的处理通过测定在自愿背屈踝运动(20°)的振幅的误差进行评价,诱发通过施加在腓肠肌 - 比目鱼肌的腱的振动(振动引起的移动误差) 。培训包括其注意力聚焦在一系列脚踝虚幻运动的科目。十一PD患者和11岁匹配的对照组受试者进行了测试。训练之前,振动了4.3°(P P = 0.20)降低背屈幅度的控制。训练结束后,振动显著5.3°(P = 0.01)降低在PD患者的估计的移动幅度。振动引起的错误导致我们的这个重新崛起的结论是本体培训的基础上,动觉的幻想,是一个简单的手段再教育肌肉本体感觉输入的处理PD患者。这种互补的培训应包括在目前注重改善平衡和电机性能康复方案。

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