Thalamic local field potentials recorded using the deep brain stimulation pulse generator

IF 2 Q3 NEUROSCIENCES Clinical Neurophysiology Practice Pub Date : 2022-01-01 DOI:10.1016/j.cnp.2022.03.002
A.W.G Buijink , D.A. Piña-Fuentes , M.J. Stam , M. Bot , P.R. Schuurman , P. van den Munckhof , A.F. van Rootselaar , R.M.A. de Bie , M. Beudel
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引用次数: 5

Abstract

Background

Essential tremor (ET) is one of the most common movement disorders, and continuous deep brain stimulation (DBS) is an established treatment for medication-refractory cases. However, the need for increasing stimulation intensities, with unpleasant side effects, and DBS tolerance over time can be problematic. The advent of novel DBS devices now provides the opportunity to longitudinally record LFPs using the implanted pulse generator, which opens up possibilities to implement adaptive DBS algorithms in a real-life setting.

Methods

Here we report a case of thalamic LFP activity recorded using a commercially available sensing-enabled DBS pulse generator (Medtronic Percept PC).

Results

In the OFF-stimulation condition, a peak tremor frequency of 3.8 Hz was identified during tremor evoking movements as assessed by video and accelerometers. Activity at the same and supraharmonic frequency was seen in the frequency spectrum of the LFP data from the left vim nucleus during motor tasks. Coherence analysis showed that peripherally recorded tremor was coherent with the LFP signal at the tremor frequency and supraharmonic frequency.

Conclusion

This is the first report of recorded tremor-related thalamic activity using the electrodes and pulse generator of an implanted DBS system. Larger studies are needed to evaluate the clinical potential of these fully implantable systems, and ultimately pulse generators with sensing-coupled algorithms driving stimulation, to really close the loop.

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使用深部脑刺激脉冲发生器记录丘脑局部场电位
特发性震颤(ET)是最常见的运动障碍之一,持续脑深部电刺激(DBS)是治疗难治性特发性震颤的有效方法。然而,随着时间的推移,需要增加刺激强度、副作用和DBS耐受性可能是有问题的。现在,新型DBS设备的出现提供了使用植入脉冲发生器纵向记录lfp的机会,这为在现实环境中实现自适应DBS算法提供了可能性。方法在此,我们报告了一个使用市售的具有传感功能的DBS脉冲发生器(美敦力感知PC)记录丘脑LFP活动的病例。结果在关闭刺激条件下,通过视频和加速度计检测到震颤诱发运动的峰值震颤频率为3.8 Hz。在运动任务中,从左vim核的LFP数据的频谱中可以看到相同和超谐波频率的活动。相干性分析表明,周边记录的震颤与LFP信号在震颤频率和超谐波频率上是相干的。结论这是首次使用植入DBS系统的电极和脉冲发生器记录震颤相关的丘脑活动。需要更大规模的研究来评估这些完全植入式系统的临床潜力,并最终使用传感器耦合算法驱动刺激的脉冲发生器,以实现真正的闭环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.90
自引率
0.00%
发文量
47
审稿时长
71 days
期刊介绍: Clinical Neurophysiology Practice (CNP) is a new Open Access journal that focuses on clinical practice issues in clinical neurophysiology including relevant new research, case reports or clinical series, normal values and didactic reviews. It is an official journal of the International Federation of Clinical Neurophysiology and complements Clinical Neurophysiology which focuses on innovative research in the specialty. It has a role in supporting established clinical practice, and an educational role for trainees, technicians and practitioners.
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