Desai V H, Anand S, Tran M, Kanneganti A, Vasudevan S, Seifert J L, Cheng J, Keefer E W, Romero-Ortega M I
Annu Int Conf IEEE Eng Med Biol Soc. 2014;2014:1973-6. doi: 10.1109/EMBC.2014.6944000.
Regenerative peripheral nerve interfaces have been proposed as viable alternatives for the natural control and feel of robotic prosthetic limbs. We have developed a Regenerative Multi-electrode Interface (REMI) that guides re-growing axons through an electrode array deployed in the lumen of a nerve guide. While acute studies have shown the use of the REMI in the rat sciatic nerve, the quality of chronic signal recording has not been reported. Here we show that implantation of this interface in the sciatic nerve is stable with high quality recordings up to 120 days and failures mainly attributable to abiotic factors related to pedestal detachment and wire breakage. We further tested the interfacing of REMI with fascicles of the sciatic nerve that primarily innervate muscles (tibial) and skin (sural). When implanted into the tibial nerve, bursting activity was observed synchronous to stepping. However, implantation of REMI into the sural nerve failed due to its small size. While fascicles smaller than 300 μm are a challenge for regenerative interfacing, we show that a modified REMI can be used in an insertion mode to record sensory signals from skin. In summary, the REMI represents an effective tool for recording firing patterns of specific axon types during voluntary movement, which may be used to improve the motor control and sensory feedback in closed loop control systems for robotic prosthesis.
再生周围神经接口已被提议作为实现机器人假肢自然控制和感知的可行替代方案。我们开发了一种再生多电极接口(REMI),它通过部署在神经导管管腔内的电极阵列引导再生轴突。虽然急性研究已表明REMI在大鼠坐骨神经中的应用,但慢性信号记录的质量尚未见报道。在此我们表明,将该接口植入坐骨神经是稳定的,高质量记录可达120天,失败主要归因于与基座脱离和导线断裂相关的非生物因素。我们进一步测试了REMI与主要支配肌肉(胫神经)和皮肤(腓肠神经)的坐骨神经束的接口。当植入胫神经时,观察到与踏步同步的爆发性活动。然而,将REMI植入腓肠神经因神经束尺寸小而失败。虽然小于300μm的神经束对再生接口来说是一项挑战,但我们表明一种改良的REMI可用于插入模式以记录来自皮肤的感觉信号。总之,REMI是一种用于记录自愿运动期间特定轴突类型放电模式的有效工具,可用于改善机器人假肢闭环控制系统中的运动控制和感觉反馈。