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帕金森病患者在手指敲击和步态过程中,通过近红外光谱映射,采用丘脑底核刺激重塑皮层活动。

Reshaping cortical activity with subthalamic stimulation in Parkinson's disease during finger tapping and gait mapped by near infrared spectroscopy.

作者信息

Klempir Ondrej, Krupicka Radim, Mehnert Jan, Cejka Vaclav, Polakova Kamila, Brozova Hana, Szabo Zoltan, Ruzicka Evzen, Jech Robert

机构信息

Czech Technical University in Prague, Faculty of Biomedical Engineering, Department of Biomedical Informatics, Kladno, Czech Republic.

University Medical Center Eppendorf, Department of Systems Neuroscience, Hamburg, Germany.

出版信息

J Appl Biomed. 2019 Sep;17(3):157-166. doi: 10.32725/jab.2019.014. Epub 2019 Sep 11.

Abstract

Exploration of motor cortex activity is essential to understanding the pathophysiology in Parkinson's Disease (PD), but only simple motor tasks can be investigated using a fMRI or PET. We aim to investigate the cortical activity of PD patients during a complex motor task (gait) to verify the impact of deep brain stimulation in the subthalamic nucleus (DBS-STN) by using Near-Infrared-Spectroscopy (NIRS). NIRS is a neuroimaging method of brain cortical activity using low-energy optical radiation to detect local changes in (de)oxyhemoglobin concentration. We used a multichannel portable NIRS during finger tapping (FT) and gait. To determine the signal activity, our methodology consisted of a pre-processing phase for the raw signal, followed by statistical analysis based on a general linear model. Processed recordings from 9 patients were statistically compared between the on and off states of DBS-STN. DBS-STN led to an increased activity in the contralateral motor cortex areas during FT. During gait, we observed a concentration of activity towards the cortex central area in the "stimulation-on" state. Our study shows how NIRS can be used to detect functional changes in the cortex of patients with PD with DBS-STN and indicates its future use for applications unsuited for PET and a fMRI.

摘要

探索运动皮层活动对于理解帕金森病(PD)的病理生理学至关重要,但使用功能磁共振成像(fMRI)或正电子发射断层显像(PET)只能研究简单的运动任务。我们旨在通过近红外光谱(NIRS)研究帕金森病患者在复杂运动任务(步态)期间的皮层活动,以验证丘脑底核深部脑刺激(DBS-STN)的影响。NIRS是一种利用低能量光辐射检测(去)氧血红蛋白浓度局部变化来研究大脑皮层活动的神经成像方法。我们在手指轻敲(FT)和步态过程中使用了多通道便携式NIRS。为了确定信号活动,我们的方法包括对原始信号进行预处理阶段,然后基于一般线性模型进行统计分析。对9名患者在DBS-STN开启和关闭状态下的处理后记录进行了统计学比较。DBS-STN导致在手指轻敲期间对侧运动皮层区域的活动增加。在步态期间,我们观察到在“刺激开启”状态下活动集中在皮层中央区域。我们的研究展示了NIRS如何用于检测接受DBS-STN治疗的帕金森病患者皮层的功能变化,并表明其未来在不适用于PET和fMRI的应用中的用途。

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