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Comparison of the in-vivo neural recording quality of floating and skull-fixed silicon probes

机译:浮动和颅骨固定式硅探针的体内神经记录质量比较

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Silicon neural probes with sophisticated integrated CMOS-based electronics providing a large number of recording sites integrated along the slender probe shanks have become a driving force in neural engineering throughout the past decade. Using such neural probes in a chronic setting often requires to mechanically anchor them with respect to the skull. Any relative motion between brain and implant causes however tissue responses such as glial scarring, thereby the recordable neurons are shielded from the electrodes integrated on the probe, and the signal quality is decreased. In the current work, we present preliminary results obtained using a mechanically fixed and a floating silicon neural probe implanted into the cortex of a non-human primate. We demonstrate that the neural signal quality of the floating probe is superior to the fixed approach. Nonetheless, also the skull-fixed probe allowed to identify action potentials and stably record low frequency signals over the entire recording period.
机译:在过去的十年中,具有复杂的,基于CMOS的电子器件的硅神经探针提供了沿细长探针柄集成的大量记录部位,已成为神经工程学的驱动力。在慢性环境中使用此类神经探针通常需要将其相对于颅骨机械锚固。然而,大脑与植入物之间的任何相对运动都会引起组织反应,例如神经胶质结疤,从而使可记录的神经元免受探针上集成的电极的影响,从而降低了信号质量。在当前的工作中,我们介绍了使用机械固定的和漂浮的硅神经探针植入非人类灵长类动物皮层中获得的初步结果。我们证明了浮动探针的神经信号质量优于固定方法。尽管如此,头骨固定式探头也可以识别动作电位并在整个记录周期内稳定记录低频信号。

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