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Effects of Subthalamic and Nigral Stimulation on Gait Kinematics in Parkinson’s Disease

机译:丘脑底和黑底刺激对帕金森氏病步态运动学的影响

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摘要

Conventional subthalamic deep brain stimulation for Parkinson’s disease (PD) presumably modulates the spatial component of gait. However, temporal dysregulation of gait is one of the factors that is tightly associated with freezing of gait (FOG). Temporal locomotor integration may be modulated differentially at distinct levels of the basal ganglia. Owing to its specific descending brainstem projections, stimulation of the substantia nigra pars reticulata (SNr) area might modulate spatial and temporal parameters of gait differentially compared to standard subthalamic nucleus (STN) stimulation. Here, we aimed to characterize the differential effect of STN or SNr stimulation on kinematic gait parameters. We analyzed biomechanical parameters during unconstrained over ground walking in 12 PD patients with subthalamic deep brain stimulation and FOG. Patients performed walking in three therapeutic conditions: (i) Off stimulation, (ii) STN stimulation (alone), and (iii) SNr stimulation (alone). SNr stimulation was achieved by stimulating the most caudal contact of the electrode. We recorded gait using three sensors (each containing a tri-axial accelerometer, gyroscope, and magnetometer) attached on both left and right ankle, and to the lumbar spine. STN stimulation improved both the spatial features (stride length, stride length variability) and the temporal parameters of gait. SNr stimulation improved temporal parameters of gait (swing time asymmetry). Correlation analysis suggested that patients with more medial localization of the SNr contact associated with a stronger regularization of gait. These results suggest that SNr stimulation might support temporal regularization of gait integration.
机译:传统的丘脑下对帕金森氏病(PD)的大脑刺激可能会调节步态的空间成分。但是,步态的暂时失调是与步态冻结(FOG)紧密相关的因素之一。时间运动整合可能在基底神经节的不同水平被不同地调节。由于其特定的下降的脑干投影,与标准的丘脑底核(STN)刺激相比,黑质网(SNr)区域的刺激可能以不同的方式调节步态的时空参数。在这里,我们旨在表征STN或SNr刺激对运动步态参数的不同影响。我们分析了12名具有丘脑底深部脑刺激和FOG的PD患者在不受约束的地面行走过程中的生物力学参数。患者在三种治疗条件下进行步行:(i)停止刺激,(ii)STN刺激(单独)和(iii)SNr刺激(单独)。通过刺激电极的最尾端接触来实现SNr刺激。我们使用三个传感器(每个传感器都包含一个三轴加速度计,陀螺仪和磁力计)分别记录在左右脚踝和腰椎上的步态。 STN刺激同时改善了步态的空间特征(步幅,步幅可变性)和时间参数。 SNr刺激改善了步态的时间参数(摆动时间不对称)。相关分析表明,SNr接触的内侧定位更多的患者与步态更强的规律性相关。这些结果表明,SNr刺激可能支持步态整合的时间规律。

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