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经过十年的神经记录后,对神经营养电极尖端内有髓神经丝的组织学确认。

Histological Confirmation of Myelinated Neural Filaments Within the Tip of the Neurotrophic Electrode After a Decade of Neural Recordings.

作者信息

Gearing Marla, Kennedy Philip

机构信息

Laboratory Medicine and Neurology, Department of Pathology, Emory University School of Medicine, Atlanta, GA, United States.

Neural Signals Inc., Duluth, GA, United States.

出版信息

Front Hum Neurosci. 2020 Apr 21;14:111. doi: 10.3389/fnhum.2020.00111. eCollection 2020.

Abstract

AIM

Electrodes that provide brain to machine or computer interfacing must survive the lifetime of the person to be considered an acceptable prosthetic. The electrodes may be external such as with electroencephalographic (EEG), internal extracortical such as electrocorticographic (ECoG) or intracortical.

METHODS

Most intracortical electrodes are placed close to the neuropil being recorded and do not survive years of recording. However, the Neurotrophic Electrode is placed within the cortex and the neuropil grows inside and through the hollow tip of the electrode and is thus trapped inside. Highly flexible coiled lead wires minimize the strain on the electrode tip. Histological analysis includes immunohistochemical detection of neurofilaments and the absence of gliosis.

RESULTS

This configuration led to a decade long recording in this locked-in person. At year nine, the neural activity underwent conditioning experiments indicating that the neural activity was functional and not noise. This paper presents data on the histological analysis of the tissue inside the electrode tip after 13 years of implantation.

CONCLUSION

This paper is a singular example of histological analysis after a decade of recording. The histological analysis laid out herein is strong evidence that the brain can grow neurites into the electrode tip and record for a decade. This is profoundly important in the field of brain to machine or computer interfacing by implying that long term electrodes should incorporate some means of growing the neuropil into the electrode rather than placing the electrode into the neuropil.

摘要

目的

能够实现脑与机器或计算机接口连接的电极,必须在使用者的整个生命周期内保持功能,才能被视为可接受的假肢部件。电极可以是外部的,如脑电图(EEG)电极;也可以是内部皮层外的,如皮层脑电图(ECoG)电极;或者是皮层内的。

方法

大多数皮层内电极放置在靠近被记录的神经毡处,无法在多年的记录过程中持续使用。然而,神经营养电极放置在皮层内,神经毡在电极内部生长并穿过电极的空心尖端,从而被困在内部。高度灵活的螺旋状导线可将电极尖端的应变降至最低。组织学分析包括免疫组织化学检测神经丝以及是否存在胶质增生。

结果

这种配置使得这位闭锁综合征患者实现了长达十年的记录。在第九年,对神经活动进行了条件实验,结果表明神经活动是有功能的而非噪声。本文展示了植入13年后电极尖端内部组织的组织学分析数据。

结论

本文是十年记录后进行组织学分析的一个独特案例。本文所呈现的组织学分析有力地证明,大脑能够使神经突生长到电极尖端并持续记录十年。这在脑与机器或计算机接口领域具有极其重要的意义,意味着长期电极应采用某种方式促使神经毡生长到电极中,而不是将电极放置在神经毡内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9116/7187752/bbdbd3e2aadd/fnhum-14-00111-g001.jpg

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