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海马体活动的调制与穹窿深部脑刺激。

Modulation of hippocampal activity with fornix Deep Brain Stimulation.

机构信息

Medtronic, Minneapolis, MN, USA.

Medtronic, Minneapolis, MN, USA.

出版信息

Brain Stimul. 2017 Nov-Dec;10(6):1125-1132. doi: 10.1016/j.brs.2017.09.002. Epub 2017 Sep 6.

Abstract

BACKGROUND

Deep Brain Stimulation (DBS) within the Papez circuit is under investigation as a treatment for epilepsy and Alzheimer's disease. We previously reported the effects of stimulation at nodes within this network (anterior thalamic nucleus and hippocampus) on hippocampal activity in a large animal model, using a chronic implantable, clinical-grade system that permits concurrent stimulation and recording.

OBJECTIVE

In this study we extended earlier work to compare the effects of fornix DBS on evoked potentials (EPs) and local field potential (LFP) activity within the hippocampus, and to assess closed-loop stimulation.

METHODS

Unilateral fornix and hippocampal DBS leads were implanted in three ovine subjects using image-guided, frameless stereotaxy. Chronic, awake recordings of EPs and LFPs in response to fornix and hippocampal stimulation were collected with the implanted device and analyzed off-line.

RESULTS

Stimulation of the fornix produced robust, short latency hippocampal EPs. High frequency fornix stimulation generated parameter-dependent effects. At low amplitudes, short lasting inhibition of LFP activity occurred. Above a specific amplitude threshold, DBS elicited pronounced bursts of theta activity, followed by a marked state shift in hippocampal activity. These effects persisted for minutes post-DBS and were reflected as changes in LFP spectral content and phase-amplitude coupling. Real-time modulation of hippocampal activity via the implanted device was demonstrated using LFPs as the control signal for closed-loop stimulation.

CONCLUSIONS

The current results expand earlier findings and demonstrate target-specific effects produced by DBS within this neural circuit. These changes in network activity may provide insights into stimulation targets and parameter selection for clinical investigations.

摘要

背景

深脑刺激(DBS)在 Papez 回路内作为治疗癫痫和阿尔茨海默病的方法正在研究中。我们之前报道了在大型动物模型中,使用允许同时刺激和记录的慢性可植入临床级系统,在该网络内的节点(前丘脑核和海马体)刺激对海马体活动的影响。

目的

在这项研究中,我们扩展了早期的工作,比较了穹窿 DBS 对海马体诱发电位(EP)和局部场电位(LFP)活动的影响,并评估了闭环刺激。

方法

使用图像引导无框架立体定向技术,在三只绵羊受试者中植入单侧穹窿和海马 DBS 导联。使用植入设备收集和离线分析对穹窿和海马刺激的慢性清醒状态下的 EP 和 LFP 记录。

结果

穹窿刺激产生了强大的、潜伏期短的海马 EP。高频穹窿刺激产生了依赖参数的效应。在低幅度时,LFP 活动出现短暂的抑制。超过特定的幅度阈值时,DBS 会引发明显的θ活动爆发,随后海马体活动发生明显的状态转变。这些效应在 DBS 后持续数分钟,并反映在 LFP 谱内容和相位-幅度耦合的变化中。通过使用 LFPs 作为闭环刺激的控制信号,演示了植入设备对海马体活动的实时调制。

结论

目前的结果扩展了早期的发现,并证明了在该神经回路内 DBS 产生的靶标特异性效应。这些网络活动的变化可能为临床研究中的刺激靶点和参数选择提供见解。

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