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Embedded Ultrathin Cluster Electrodes for Long-Term Recordings in Deep Brain Centers

机译:嵌入式超薄簇状电极可在脑深处长期记录

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摘要

Neural interfaces which allow long-term recordings in deep brain structures in awake freely moving animals have the potential of becoming highly valuable tools in neuroscience. However, the recording quality usually deteriorates over time, probably at least partly due to tissue reactions caused by injuries during implantation, and subsequently micro-forces due to a lack of mechanical compliance between the tissue and neural interface. To address this challenge, we developed a gelatin embedded neural interface comprising highly flexible electrodes and evaluated its long term recording properties. Bundles of ultrathin parylene C coated platinum electrodes (N = 29) were embedded in a hard gelatin based matrix shaped like a needle, and coated with Kollicoat to retard dissolution of gelatin during the implantation. The implantation parameters were established in an in vitro model of the brain (0.5% agarose). Following a craniotomy in the anesthetized rat, the gelatin embedded electrodes were stereotactically inserted to a pre-target position, and after gelatin dissolution the electrodes were further advanced and spread out in the area of the subthalamic nucleus (STN). The performance of the implanted electrodes was evaluated under anesthesia, during 8 weeks. Apart from an increase in the median-noise level during the first 4 weeks, the electrode impedance and signal-to-noise ratio of single-units remained stable throughout the experiment. Histological postmortem analysis confirmed implantation in the area of STN in most animals. In conclusion, by combining novel biocompatible implantation techniques and ultra-flexible electrodes, long-term neuronal recordings from deep brain structures with no significant deterioration of electrode function were achieved.
机译:可以在清醒自由移动的动物中长期记录大脑深部结构的神经接口,有可能成为神经科学中非常有价值的工具。但是,记录质量通常会随时间而下降,可能至少部分是由于植入过程中受伤造成的组织反应,随后由于组织和神经接口之间缺乏机械顺应性而产生了微力。为了应对这一挑战,我们开发了包含高度柔性电极的明胶嵌入式神经接口,并评估了其长期记录性能。将捆有超薄聚对二甲苯C涂层的铂电极(N = 29)埋入形状像针的硬明胶基基质中,并用Kollicoat 涂层以阻止明胶在植入过程中的溶解。在大脑的体外模型(0.5%琼脂糖)中建立了植入参数。在麻醉的大鼠中进行开颅手术后,将明胶包埋的电极立体定向插入到目标前位置,并且在明胶溶解后,电极进一步前进并在丘脑底核(STN)区域散开。在8周的麻醉下评估植入电极的性能。除了在开始的4周内中值噪声水平增加外,整个实验期间电极的阻抗和单个单元的信噪比均保持稳定。组织学死后分析证实了大多数动物中STN区域的植入。总之,通过结合新颖的生物相容性植入技术和超柔韧性电极,可以实现来自深部大脑结构的长期神经元记录,而电极功能没有明显下降。

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