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Glassy Carbon Electrocorticography Electrodes on Ultra-Thin and Finger-Like Polyimide Substrate: Performance Evaluation Based on Different Electrode Diameters

机译:超薄和类似手指的聚酰亚胺基板上的玻碳皮质醇电极:基于不同电极直径的性能评估

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摘要

Glassy carbon (GC) has high potential to serve as a biomaterial in neural applications because it is biocompatible, electrochemically inert and can be incorporated in polyimide-based implantable devices. Miniaturization and applicability of GC is, however, thought to be partially limited by its electrical conductivity. For this study, ultra-conformable polyimide-based electrocorticography (ECoG) devices with different-diameter GC electrodes were fabricated and tested in vitro and in rat models. For achieving conformability to the rat brain, polyimide was patterned in a finger-like shape and its thickness was set to 8 µm. To investigate different electrode sizes, each ECoG device was assigned electrodes with diameters of 50, 100, 200 and 300 µm. They were electrochemically characterized and subjected to 10 million biphasic pulses—for achieving a steady-state—and to X-ray photoelectron spectroscopy, for examining their elemental composition. The electrodes were then implanted epidurally to evaluate the ability of each diameter to detect neural activity. Results show that their performance at low frequencies (up to 300 Hz) depends on the distance from the signal source rather than on the electrode diameter, while at high frequencies (above 200 Hz) small electrodes have higher background noises than large ones, unless they are coated with poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS).
机译:玻碳(GC)具有生物相容性,电化学惰性并​​且可以结合到基于聚酰亚胺的可植入设备中,因此具有在神经应用中用作生物材料的潜力。然而,认为GC的小型化和适用性部分地受到其电导率的限制。对于本研究,制造了具有不同直径GC电极的超整合聚酰亚胺基皮质电图(ECoG)装置,并在体外和大鼠模型中进行了测试。为了实现与大鼠脑的适应性,将聚酰亚胺图案化为手指状,并将其厚度设定为8μm。为了研究不同的电极尺寸,为每个ECoG设备分配了直径分别为50、100、200和300 µm的电极。对它们进行了电化学表征,并对其施加了1000万个双相脉冲(以实现稳态)和X射线光电子能谱,以检查其元素组成。然后将电极硬膜外植入以评估每个直径检测神经活动的能力。结果表明,它们在低频(最高300 Hz)下的性能取决于与信号源的距离而不是电极直径,而在高频(200 Hz以上)下,小电极的背景噪声要比大电极高,除非它们用聚(3,4-乙撑二氧噻吩)-聚(苯乙烯磺酸盐)(PEDOT:PSS)进行涂层。

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