Sanchez Camilo A, Brougher Jackson, Rahebi Kim C, Thorn Catherine A
Department of Bioengineering, University of Texas at Dallas.
School of Behavioral and Brain Sciences, University of Texas at Dallas.
J Vis Exp. 2020 Jul 14(161). doi: 10.3791/61128.
Peripheral nerve cuff electrodes have long been used in the neurosciences and related fields for stimulation of, for example, vagus or sciatic nerves. Several recent studies have demonstrated the effectiveness of chronic VNS in enhancing central nervous system plasticity to improve motor rehabilitation, extinction learning, and sensory discrimination. Construction of chronically implantable devices for use in such studies is challenging due to rats' small size, and typical protocols require extensive training of personnel and time-consuming microfabrication methods. Alternatively, commercially available implantable cuff electrodes can be purchased at a significantly higher cost. In this protocol, we present a simple, low-cost method for construction of small, chronically implantable peripheral nerve cuff electrodes for use in rats. We validate the short and long-term reliability of our cuff electrodes by demonstrating that VNS in ketamine/xylazine anesthetized rats produces decreases in breathing rate consistent with activation of the Hering-Breuer reflex, both at the time of implantation and up to 10 weeks after device implantation. We further demonstrate the suitability of the cuff electrodes for use in chronic stimulation studies by pairing VNS with skilled lever press performance to induce motor cortical map plasticity.
外周神经袖套电极长期以来一直在神经科学及相关领域用于刺激,例如迷走神经或坐骨神经。最近的几项研究表明,慢性迷走神经刺激(VNS)在增强中枢神经系统可塑性以改善运动康复、消退学习和感觉辨别方面是有效的。由于大鼠体型小,构建用于此类研究的长期可植入设备具有挑战性,而且典型的方案需要对人员进行广泛培训以及耗时的微加工方法。另外,市售的可植入袖套电极成本要高得多。在本方案中,我们提出了一种简单、低成本的方法来构建用于大鼠的小型、长期可植入外周神经袖套电极。我们通过证明在氯胺酮/赛拉嗪麻醉的大鼠中,无论是在植入时还是在设备植入后长达10周,VNS都会使呼吸频率降低,这与黑林-布雷尔反射的激活一致,从而验证了我们袖套电极的短期和长期可靠性。我们还通过将VNS与熟练的杠杆按压行为配对以诱导运动皮层地图可塑性,进一步证明了袖套电极适用于慢性刺激研究。