School of Mechanical Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, Republic of Korea.
J Neural Eng. 2017 Aug;14(4):046023. doi: 10.1088/1741-2552/aa7493.
Previously, we presented the fabrication and characterization of a flexible penetrating microelectrode array (FPMA) as a neural interface device. In the present study, we aim to prove the feasibility of the developed FPMA as a chronic intrafascicular recording tool for peripheral applications.
For recording from the peripheral nerves of medium-sized animals, the FPMA was integrated with an interconnection cable and other parts that were designed to fit canine sciatic nerves. The uniformity of tip exposure and in vitro electrochemical properties of the electrodes were characterized. The capability of the device to acquire in vivo electrophysiological signals was evaluated by implanting the FPMA assembly in canine sciatic nerves acutely as well as chronically for 4 weeks. We also examined the histology of implanted tissues to evaluate the damage caused by the device.
Throughout recording sessions, we observed successful multi-channel recordings (up to 73% of viable electrode channels) of evoked afferent and spontaneous nerve unit spikes with high signal quality (SNR > 4.9). Also, minor influences of the device implantation on the morphology of nerve tissues were found.
The presented results demonstrate the viability of the developed FPMA device in the peripheral nerves of medium-sized animals, thereby bringing us a step closer to human applications. Furthermore, the obtained data provide a driving force toward a further study for device improvements to be used as a bidirectional neural interface in humans.
此前,我们展示了一种柔性穿透微电极阵列(FPMA)的制造和特性,作为一种神经接口设备。在本研究中,我们旨在证明所开发的 FPMA 作为一种用于周围应用的慢性束内记录工具的可行性。
为了从中型动物的周围神经进行记录,FPMA 与互连电缆和其他部分集成在一起,这些部分设计用于适应犬坐骨神经。对电极的尖端暴露均匀性和体外电化学性能进行了表征。通过将 FPMA 组件急性植入犬坐骨神经和慢性植入 4 周,评估该设备获取体内电生理信号的能力。我们还检查了植入组织的组织学,以评估设备造成的损伤。
在整个记录过程中,我们观察到成功地进行了多通道记录(多达 73%的有效电极通道),记录到诱发性传入和自发性神经单元尖峰的信号,具有高信号质量(SNR>4.9)。此外,还发现设备植入对神经组织形态的影响很小。
所呈现的结果表明,所开发的 FPMA 设备在中型动物的周围神经中具有可行性,从而使我们更接近于人类应用。此外,所获得的数据为进一步研究设备改进提供了动力,以便在人类中用作双向神经接口。