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闭环深部脑刺激对非人类灵长类动物帕金森运动症状的影响——β波就足够了吗?

Closed-Loop Deep Brain Stimulation Effects on Parkinsonian Motor Symptoms in a Non-Human Primate - Is Beta Enough?

作者信息

Johnson Luke A, Nebeck Shane D, Muralidharan Abirami, Johnson Matthew D, Baker Kenneth B, Vitek Jerrold L

机构信息

Department of Neurology, University of Minnesota, Minneapolis, Minnesota, USA.

Department of Biomedical Engineering, University of Minnesota, Minneapolis, Minnesota, USA.

出版信息

Brain Stimul. 2016 Nov-Dec;9(6):892-896. doi: 10.1016/j.brs.2016.06.051. Epub 2016 Jun 22.

Abstract

BACKGROUND

Incorporating feedback controls based on real-time measures of pathological brain activity may improve deep brain stimulation (DBS) approaches for the treatment of Parkinson's disease (PD). Excessive beta oscillations in subthalamic nucleus (STN) local field potentials (LFP) have been proposed as a potential biomarker for closed-loop DBS (CL-DBS).

OBJECTIVE

In a non-human primate PD model we compared CL-DBS, which delivered stimulation only when STN LFP beta activity was elevated, to traditional continuous DBS (tDBS).

METHODS

Therapeutic effects of CL-DBS and tDBS relative to the Off-DBS condition were evaluated via a clinical rating scale and objective measures of movement speed during a cued reaching task.

RESULTS

CL-DBS was comparable to tDBS at reducing rigidity, while reducing the amount of time DBS was on by ≈50%; however, only tDBS improved bradykinesia during the reaching behavior. This was likely due to reach-related reductions in beta amplitude that influence the timing and duration of stimulation in the CL-DBS condition.

CONCLUSION

These results illustrate the potential utility of closed-loop DBS devices for PD based on STN beta LFP levels. They also point to possible consequences in behavioral tasks when restricting real-time sensing to a single LFP frequency that itself is modulated during performance of such tasks. The present study provides data that suggest alternate algorithms or more than one physiological biomarker may be required to optimize the performance of behavioral tasks and demonstrates the value of using multiple objective measures when evaluating the efficacy of closed-loop DBS systems.

摘要

背景

基于病理性脑活动实时测量纳入反馈控制可能会改善帕金森病(PD)的深部脑刺激(DBS)治疗方法。丘脑底核(STN)局部场电位(LFP)中过度的β振荡已被提出作为闭环DBS(CL-DBS)的潜在生物标志物。

目的

在非人灵长类动物PD模型中,我们将仅在STN LFPβ活动升高时进行刺激的CL-DBS与传统的连续DBS(tDBS)进行了比较。

方法

通过临床评分量表和提示性伸手任务期间运动速度的客观测量,评估了CL-DBS和tDBS相对于关闭DBS状态的治疗效果。

结果

CL-DBS在减轻僵硬方面与tDBS相当,同时将DBS开启时间减少了约50%;然而,只有tDBS改善了伸手行为期间的运动迟缓。这可能是由于与伸手相关的β振幅降低影响了CL-DBS条件下刺激的时间和持续时间。

结论

这些结果说明了基于STNβLFP水平的闭环DBS设备对PD的潜在效用。它们还指出了在行为任务中,当将实时传感限制在单个LFP频率时可能产生的后果,而该频率本身在执行此类任务时会受到调制。本研究提供的数据表明,可能需要替代算法或多种生理生物标志物来优化行为任务的性能,并证明了在评估闭环DBS系统疗效时使用多种客观测量的价值。

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