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碳纳米管纤维的柔软且兼容 MRI 的神经电极

Soft and MRI Compatible Neural Electrodes from Carbon Nanotube Fibers.

机构信息

Department of Biomedical Engineering, College of Engineering , Peking University , Beijing 100871 , China.

Wallace H. Coulter Department of Biomedical Engineering , Georgia Institute of Technology and Emory University , Atlanta , Georgia 30332 , United States.

出版信息

Nano Lett. 2019 Mar 13;19(3):1577-1586. doi: 10.1021/acs.nanolett.8b04456. Epub 2019 Feb 27.

DOI:10.1021/acs.nanolett.8b04456
PMID:30798604
Abstract

Soft and magnetic resonance imaging (MRI) compatible neural electrodes enable stable chronic electrophysiological measurements and anatomical or functional MRI studies of the entire brain without electrode interference with MRI images. These properties are important for many studies, ranging from a fundamental neurophysiological study of functional MRI signals to a chronic neuromodulatory effect investigation of therapeutic deep brain stimulation. Here we develop soft and MRI compatible neural electrodes using carbon nanotube (CNT) fibers with a diameter from 20 μm down to 5 μm. The CNT fiber electrodes demonstrate excellent interfacial electrochemical properties and greatly reduced MRI artifacts than PtIr electrodes under a 7.0 T MRI scanner. With a shuttle-assisted implantation strategy, we show that the soft CNT fiber electrodes can precisely target specific brain regions and record high-quality single-unit neural signals. Significantly, they are capable of continuously detecting and isolating single neuronal units from rats for up to 4-5 months without electrode repositioning, with greatly reduced brain inflammatory responses as compared to their stiff metal counterparts. In addition, we show that due to their high tensile strength, the CNT fiber electrodes can be retracted controllably postinsertion, which provides an effective and convenient way to do multidepth recording or potentially selecting cells with particular response properties. The chronic recording stability and MRI compatibility, together with their small size, provide the CNT fiber electrodes unique research capabilities for both basic and applied neuroscience studies.

摘要

柔软且兼容磁共振成像(MRI)的神经电极可实现整个大脑的稳定慢性电生理测量和解剖学或功能 MRI 研究,而不会因电极干扰 MRI 图像。这些特性对于许多研究都很重要,从 fMRI 信号的基本神经生理学研究到深部脑刺激的慢性神经调节效应研究。在这里,我们使用直径从 20μm 降至 5μm 的碳纳米管(CNT)纤维开发了柔软且兼容 MRI 的神经电极。与 PtIr 电极相比,在 7.0T MRI 扫描仪下,CNT 纤维电极具有出色的界面电化学性能和大大降低的 MRI 伪影。通过 shuttle-assisted 植入策略,我们表明柔软的 CNT 纤维电极可以精确靶向特定的大脑区域,并记录高质量的单个神经元信号。重要的是,它们能够在不重新定位电极的情况下,持续检测和隔离大鼠的单个神经元长达 4-5 个月,与刚性金属电极相比,大脑的炎症反应大大降低。此外,我们表明,由于 CNT 纤维电极具有较高的拉伸强度,因此可以在插入后进行可控地缩回,这为多深度记录或潜在地选择具有特定反应特性的细胞提供了一种有效且方便的方法。慢性记录稳定性和 MRI 兼容性,加上其小巧的尺寸,为 CNT 纤维电极提供了独特的研究能力,可用于基础和应用神经科学研究。

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