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临床参数可预测帕金森病患者步态中双侧丘脑底核刺激对动态平衡参数的影响。

Clinical parameters predict the effect of bilateral subthalamic stimulation on dynamic balance parameters during gait in Parkinson's disease.

作者信息

Kelemen Andrea, Halász László, Muthuraman Muthuraman, Erőss Loránd, Barsi Péter, Zádori Dénes, Laczó Bence, Kis Dávid, Klivényi Péter, Fekete Gábor, Bognár László, Bereczki Dániel, Tamás Gertrúd

机构信息

Department of Neurology, Semmelweis University, Budapest, Hungary.

National Institute of Clinical Neurosciences, Budapest, Hungary.

出版信息

Front Neurol. 2022 Sep 26;13:917187. doi: 10.3389/fneur.2022.917187. eCollection 2022.

Abstract

We investigated the effect of deep brain stimulation on dynamic balance during gait in Parkinson's disease with motion sensor measurements and predicted their values from disease-related factors. We recruited twenty patients with Parkinson's disease treated with bilateral subthalamic stimulation for at least 12 months and 24 healthy controls. Six monitors with three-dimensional gyroscopes and accelerometers were placed on the chest, the lumbar region, the two wrists, and the shins. Patients performed the instrumented Timed Up and Go test in stimulation OFF, stimulation ON, and right- and left-sided stimulation ON conditions. Gait parameters and dynamic balance parameters such as double support, peak turn velocity, and the trunk's range of motion and velocity in three dimensions were analyzed. Age, disease duration, the time elapsed after implantation, the Hoehn-Yahr stage before and after the operation, the levodopa, and stimulation responsiveness were reported. We individually calculated the distance values of stimulation locations from the subthalamic motor center in three dimensions. Sway values of static balance were collected. We compared the gait parameters in the OFF and stimulation ON states and controls. With cluster analysis and a machine-learning-based multiple regression method, we explored the predictive clinical factors for each dynamic balance parameter (with age as a confounder). The arm movements improved the most among gait parameters due to stimulation and the horizontal and sagittal trunk movements. Double support did not change after switching on the stimulation on the group level and did not differ from control values. Individual changes in double support and horizontal range of trunk motion due to stimulation could be predicted from the most disease-related factors and the severity of the disease; the latter also from the stimulation-related changes in the static balance parameters. Physiotherapy should focus on double support and horizontal trunk movements when treating patients with subthalamic deep brain stimulation.

摘要

我们通过运动传感器测量研究了深部脑刺激对帕金森病患者步态中动态平衡的影响,并根据疾病相关因素预测其数值。我们招募了20名接受双侧丘脑底核刺激治疗至少12个月的帕金森病患者和24名健康对照者。在胸部、腰部、双腕和小腿放置了六个带有三维陀螺仪和加速度计的监测器。患者在刺激关闭、刺激开启以及右侧和左侧刺激开启的条件下进行仪器化计时起立行走测试。分析了步态参数和动态平衡参数,如双支撑、峰值转身速度以及三维空间中躯干的运动范围和速度。报告了年龄、病程、植入后经过的时间、手术前后的Hoehn-Yahr分期、左旋多巴以及刺激反应性。我们分别计算了刺激部位在三维空间中距丘脑底运动中心的距离值。收集了静态平衡的摆动值。我们比较了刺激关闭和刺激开启状态下以及与对照组的步态参数。通过聚类分析和基于机器学习的多元回归方法,我们探索了每个动态平衡参数的预测临床因素(以年龄作为混杂因素)。由于刺激,手臂运动在步态参数中改善最为明显,还有水平和矢状面的躯干运动。在组水平上,开启刺激后双支撑没有变化,且与对照值无差异。刺激引起的双支撑和躯干水平运动范围的个体变化可以根据大多数疾病相关因素和疾病严重程度进行预测;后者也可根据静态平衡参数中与刺激相关的变化进行预测。在治疗接受丘脑底深部脑刺激的患者时,物理治疗应侧重于双支撑和躯干水平运动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/649b/9549153/5f7fee5364bd/fneur-13-917187-g0001.jpg

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