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Unilateral versus bilateral tasks in early asymmetric Parkinson's disease: differential effects on bradykinesia.

机译:早期非对称性帕金森氏病的单侧或双侧任务:对运动迟缓的不同影响。

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Patients with Parkinson's disease (PD) have an impaired ability to perform two different simultaneous bimanual tasks. The differential effects of unilateral versus bilateral identical tasks on the bradykinesia scores of the more and less affected limbs in PD have not been examined. Twenty-seven patients with early and asymmetric PD underwent blinded, videotaped assessment, independently for each limb, using the bradykinesia items of the Unified Parkinson's Disease Rating Part III, Motor subscale (mUPDRS) and a Modified Bradykinesia Rating Scale (MBRS), which assessed amplitude, speed, and rhythm of movements. We found that the score for finger tapping in mUPDRS and MBRS, the score of amplitude of finger tapping in MBRS, and the lateralized scores of mUPDRS (sum of Items 23 to 25) of the most affected side significantly improved during the bimanual task. The improvement was associated with longer duration of illness, higher total scores in mUPDRS, and higher lateralized bradykinesia scores of the most affected side. There was a simultaneous deterioration of the lateralized bradykinesia scores in MBRS (sum of Items 23 to 25) and Item 25 of mUPDRS (rapid alternating movements) of the least affected side in bimanual tasks. In conclusion, identical bimanual tasks facilitate movement of the most affected side in early asymmetric PD at the cost of motor degradation in the least affected side. This observation also highlights the need to perform tasks of bradykinesia in one limb at a time for best accuracy.
机译:帕金森氏病(PD)患者的同时执行两项不同的双向任务的能力受损。尚未研究单侧或双侧相同任务对PD受累患肢的运动迟缓得分的差异影响。对27例早期和不对称PD的患者分别进行了盲法录像评估,使用统一帕金森氏病评分第III部分的运动迟缓项,运动分量表(mUPDRS)和改良的运动迟缓评定量表(MBRS)运动的幅度,速度和节奏。我们发现,在双向任务期间,mUPDRS和MBRS中的手指敲击得分,MBRS中的手指敲击幅度得分以及受影响最严重的一侧的mUPDRS的横向得分(项目23至25的总和)显着提高。改善与疾病持续时间更长,mUPDRS的总评分更高以及受影响最严重的一侧的侧卧运动迟缓评分更高有关。在双向任务中,受影响最小的一侧的MBRS(项目23至25的总和)和mUPDRS项目25(快速交替运动)的横向运动迟缓评分同时恶化。总而言之,相同的双向任务有助于早期不对称PD中受影响最大的一侧的运动,但以受影响最小的一侧的运动退化为代价。该观察结果还突出显示了需要一次在一个肢体中执行运动迟缓以获得最佳准确性的任务。

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