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Active and Passive Cycling Decrease Subthalamic β Oscillations in Parkinson's Disease

节奏 自行车 丘脑底核 步态 物理医学与康复 帕金森病 本体感觉 心理学 神经科学 脑深部刺激 医学 疾病 内科学 历史 考古
作者
Vasiliki Bougou,Michaël Vanhoyland,Thomas Decramer,Anaïs Van Hoylandt,Steven Smeijers,Bart Nuttin,Philippe De Vloo,Wim Vandenberghe,Alice Nieuwboer,Peter Janssen,Tom Theys
出处
期刊:Movement Disorders [Wiley]
卷期号:39 (1): 85-93 被引量:2
标识
DOI:10.1002/mds.29632
摘要

Abstract Background Preserved cycling capabilities in patients with Parkinson's disease, especially in those with freezing of gait are still poorly understood. Previous research with invasive local field potential recordings in the subthalamic nucleus has shown that cycling causes a stronger suppression of β oscillations compared to walking, which facilitates motor continuation. Methods We recorded local field potentials from 12 patients with Parkinson's disease (six without freezing of gait, six with freezing of gait) who were bilaterally implanted with deep brain stimulation electrodes in the subthalamic nucleus. We investigated β (13–30 Hz) and high γ (60–100 Hz) power during both active and passive cycling with different cadences and compared patients with and without freezing of gait. The passive cycling experiment, where a motor provided a fixed cadence, allowed us to study the effect of isolated sensory inputs without physical exercise. Results We found similarly strong suppression of pathological β activity for both active and passive cycling. In contrast, there was stronger high γ band activity for active cycling. Notably, the effects of active and passive cycling were all independent of cadence. Finally, β suppression was stronger for patients with freezing of gait, especially during passive cycling. Conclusions Our results provide evidence for a link between proprioceptive input during cycling and β suppression. These findings support the role of continuous external sensory input and proprioceptive feedback during rhythmic passive cycling movements and suggest that systematic passive mobilization might hold therapeutic potential. © 2023 International Parkinson and Movement Disorder Society.
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