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碳纤维基微电极阵列与可生物降解丝素支架的集成用于体内神经记录。

Carbon-Fiber Based Microelectrode Array Embedded with a Biodegradable Silk Support for In Vivo Neural Recording.

机构信息

Department of Electronic and Electrical Engineering, ELTEC College of Engineering, Ewha Womans University, Seoul, Korea.

Department of Neurosurgery, Yonsei University College of Medicine, Seoul, Korea.

出版信息

J Korean Med Sci. 2019 Jan 9;34(4):e24. doi: 10.3346/jkms.2019.34.e24. eCollection 2019 Jan 28.

Abstract

BACKGROUND

Recently, carbon fibers have been utilized to develop a depth-type microelectrode array for chronic neural recording. Since the diameter of carbon fibers is smaller than the conventional electrodes made of metal wires or microfabricated silicon, the carbon fiber electrodes showed an improved capability for chronic neural recording with less tissue damages. However, the carbon fiber based microelectrodes have a limitation of short insertion depth due to a low stiffness.

METHODS

We proposed a carbon fiber based microelectrode array embedded with a mechanical support structure to facilitate the penetration into the deeper brain. The support is made of biodegradable silk fibroin to reduce the reactive tissue responses. The 4-channel carbon fiber based microelectrode arrays were fabricated and accessed in terms of electrochemical impedance, recording capability for 1-month implantation in rat hippocampi. The electrodes with tungsten supports were fabricated and tested as a control group. Immunohistochemical analysis was performed to identify the reactive glial responses.

RESULTS

The carbon fiber based electrode arrays with silk supports showed about 2-fold impedance increase 2 weeks after implantation while the number of active electrodes decreased simultaneously. However, after 1 month, the electrode impedance decreased back to its initial value and the percentage of active electrodes also increased above 70%. Immunohistochemical staining clearly showed that the electrodes with silk supports induced less reactive glial responses than that with tungsten supports.

CONCLUSION

The proposed carbon fiber based microelectrode array is expected to be used for long-term in vivo neural recording from deep brain regions with the minimized reactive tissue response.

摘要

背景

最近,碳纤维已被用于开发用于慢性神经记录的深度型微电极阵列。由于碳纤维的直径小于由金属丝或微加工硅制成的传统电极,因此碳纤维电极在对组织损伤较小的情况下,具有改善的慢性神经记录能力。但是,由于碳纤维基微电极的刚度较低,因此其插入深度有限。

方法

我们提出了一种嵌入式机械支撑结构的碳纤维基微电极阵列,以促进其进入更深的大脑。支撑结构由可生物降解的丝素蛋白制成,以减少反应性组织反应。制作了 4 通道碳纤维基微电极阵列,并就其在大鼠海马体中植入 1 个月的电化学阻抗和记录能力进行了评估。制作了带有钨支撑的电极作为对照组进行了测试。进行了免疫组织化学分析以鉴定反应性神经胶质反应。

结果

植入后 2 周,带有丝质支撑的碳纤维基电极阵列的阻抗增加了约 2 倍,而同时活性电极的数量减少。但是,1 个月后,电极阻抗又恢复到初始值,并且活性电极的百分比也增加到 70%以上。免疫组织化学染色清楚地表明,带有丝质支撑的电极引起的反应性神经胶质反应比带有钨支撑的电极少。

结论

所提出的碳纤维基微电极阵列有望用于具有最小反应性组织反应的深部脑区的长期体内神经记录。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/343d/6345632/0124793b675b/jkms-34-e24-g001.jpg

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