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使用闭环中央丘脑深部脑刺激对健康非人灵长类动物的觉醒和行为表现进行调控。

Regulation of arousal and performance of a healthy non-human primate using closed-loop central thalamic deep brain stimulation.

作者信息

Baker Jonathan L, Toth Robert, Deli Alceste, Zamora Mayela, Fleming John E, Benjaber Moaad, Goerzen Dana, Ryou Jae-Wook, Purpura Keith P, Schiff Nicholas D, Denison Timothy

机构信息

Feil Family Brain and Mind Research Institute, Weill Cornell Medicine, New York, NY 10065, USA.

MRC Brain Network Dynamics Unit, Nuffield Department of Clinical Neurosciences, University of Oxford, OX1 3TH, UK.

出版信息

Int IEEE EMBS Conf Neural Eng. 2023 May 19;2023:10123754. doi: 10.1109/NER52421.2023.10123754.

Abstract

Application of closed-loop approaches in systems neuroscience and brain-computer interfaces holds great promise for revolutionizing our understanding of the brain and for developing novel neuromodulation strategies to restore lost function. The anterior forebrain mesocircuit (AFM) of the mammalian brain is hypothesized to underlie arousal regulation of the cortex and striatum, and support cognitive functions during wakefulness. Dysfunction of arousal regulation is hypothesized to contribute to cognitive dysfunctions in various neurological disorders, and most prominently in patients following traumatic brain injury (TBI). Several clinical studies have explored the use of daily central thalamic deep brain stimulation (CT-DBS) within the AFM to restore consciousness and executive attention in TBI patients. In this study, we explored the use of closed-loop CT-DBS in order to episodically regulate arousal of the AFM of a healthy non-human primate (NHP) with the goal of restoring behavioral performance. We used pupillometry and near real-time analysis of ECoG signals to episodically initiate closed-loop CT-DBS and here we report on our ability to enhance arousal and restore the animal's performance. The initial computer based approach was then experimentally validated using a customized clinical-grade DBS device, the DyNeuMo-X, a bi-directional research platform used for rapidly testing closed-loop DBS. The successful implementation of the DyNeuMo-X in a healthy NHP supports ongoing clinical trials employing the internal DyNeuMo system (NCT05437393, NCT05197816) and our goal of developing and accelerating the deployment of novel neuromodulation approaches to treat cognitive dysfunction in patients with structural brain injuries and other etiologies.

摘要

闭环方法在系统神经科学和脑机接口中的应用,有望彻底改变我们对大脑的理解,并开发新的神经调节策略来恢复丧失的功能。哺乳动物大脑的前脑内侧环路(AFM)被认为是皮层和纹状体觉醒调节的基础,并在清醒时支持认知功能。觉醒调节功能障碍被认为是导致各种神经系统疾病认知功能障碍的原因,在创伤性脑损伤(TBI)患者中最为明显。几项临床研究探索了在AFM内每日进行中央丘脑深部脑刺激(CT-DBS),以恢复TBI患者的意识和执行注意力。在本研究中,我们探索了使用闭环CT-DBS,以便间歇性地调节健康非人灵长类动物(NHP)的AFM觉醒,目的是恢复行为表现。我们使用瞳孔测量法和对脑电信号的近实时分析来间歇性启动闭环CT-DBS,在此我们报告增强觉醒和恢复动物表现的能力。然后,使用定制的临床级DBS设备DyNeuMo-X对最初基于计算机的方法进行了实验验证,DyNeuMo-X是一个用于快速测试闭环DBS的双向研究平台。DyNeuMo-X在健康NHP中的成功应用,支持了正在进行的使用内部DyNeuMo系统的临床试验(NCT05437393,NCT05197816),以及我们开发和加速部署新型神经调节方法以治疗结构性脑损伤和其他病因患者认知功能障碍的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a8e/7614571/515f5074c98c/EMS174206-f001.jpg

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