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用于高密度脑记录的带有紧密间隔电极的双层柔性神经探针

Double-Layer Flexible Neural Probe With Closely Spaced Electrodes for High-Density Brain Recordings.

作者信息

Pimenta Sara, Rodrigues José A, Machado Francisca, Ribeiro João F, Maciel Marino J, Bondarchuk Oleksandr, Monteiro Patricia, Gaspar João, Correia José H, Jacinto Luis

机构信息

CMEMS-UMinho, Department of Industrial Electronics, University of Minho, Guimarães, Portugal.

Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho, Braga, Portugal.

出版信息

Front Neurosci. 2021 Jun 15;15:663174. doi: 10.3389/fnins.2021.663174. eCollection 2021.

Abstract

Flexible polymer neural probes are an attractive emerging approach for invasive brain recordings, given that they can minimize the risks of brain damage or glial scaring. However, densely packed electrode sites, which can facilitate neuronal data analysis, are not widely available in flexible probes. Here, we present a new flexible polyimide neural probe, based on standard and low-cost lithography processes, which has 32 closely spaced 10 μm diameter gold electrode sites at two different depths from the probe surface arranged in a matrix, with inter-site distances of only 5 μm. The double-layer design and fabrication approach implemented also provides additional stiffening just sufficient to prevent probe buckling during brain insertion. This approach avoids typical laborious augmentation strategies used to increase flexible probes' mechanical rigidity while allowing a small brain insertion footprint. Chemical composition analysis and metrology of structural, mechanical, and electrical properties demonstrated the viability of this fabrication approach. Finally, functional assessment tests in the mouse cortex were performed as well as histological assessment of the insertion footprint, validating the biological applicability of this flexible neural probe for acquiring high quality neuronal recordings with high signal to noise ratio (SNR) and reduced acute trauma.

摘要

柔性聚合物神经探针是一种用于侵入性脑记录的有吸引力的新兴方法,因为它们可以将脑损伤或胶质瘢痕形成的风险降至最低。然而,在柔性探针中,能够促进神经元数据分析的紧密排列的电极位点并不广泛存在。在此,我们基于标准且低成本的光刻工艺,展示了一种新型柔性聚酰亚胺神经探针,该探针在距探针表面两个不同深度处有32个紧密间隔的直径为10μm的金电极位点,呈矩阵排列,位点间距仅为5μm。所采用的双层设计和制造方法还提供了足够的额外加固,以防止探针在插入大脑过程中发生弯曲。这种方法避免了用于增加柔性探针机械刚性的典型繁琐增强策略,同时允许较小的大脑插入足迹。对结构、机械和电学性能的化学成分分析和计量学证明了这种制造方法的可行性。最后,在小鼠皮层中进行了功能评估测试以及对插入足迹的组织学评估,验证了这种柔性神经探针在获取具有高信噪比(SNR)和减少急性创伤的高质量神经元记录方面的生物学适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16c8/8239195/4d5d81c1b2ae/fnins-15-663174-g001.jpg

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