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3D Parylene sheath probes for reliable, long-term neuroprosthetic recordings

机译:3D Parylene鞘探头可靠,长期神经调节记录

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Parylene C neural probes with a 3D sheath structure are introduced as a novel interface for long-term intracortical neural recording. 3D sheath structures were assembled from surface micromachined Parylene microchannels by thermoforming the thermoplastic around a solid microwire mold. Multiple Pt electrodes lined the interior and exterior of the sheath. Electrochemical characterization of the electrodes confirmed impedance values (50–250 KΩ at 1 kHz) suitable for neural recordings. A novel insertion approach was developed that temporarily stiffens the neural probes for surgical implantation and optimized in agarose brain tissue model. Sheath probes implanted into rat cortex recorded neural signals for four weeks. To achieve long-term, reliable recordings, the sheath structures will be coated with eluting neurotrophic factors to promote and attract neural ingrowth towards electrode sites.
机译:具有3D护套结构的聚对聚丙烯C神经探针作为一种用于长期内部神经记录的新型界面。 3D鞘结构通过在固体微管模具周围热成型热塑性塑料,从表面微机械型聚对二甲烯微通道组装。 多个PT电极衬有护套的内部和外部。 电化学的电化学表征被确认阻抗值(50-250kΩ适用于神经录音的1 kHz)。 开发了一种新的插入方法,暂时煽动外科植入的神经探针,并在琼脂糖脑组织模型中优化。 植入大鼠皮质的鞘探针记录了神经信号4周。 为了实现长期,可靠的录音,鞘结构将涂有洗脱的神经营养因子,以促进和吸引朝向电极部位的神经生态。

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