Wang Xing, Chaudhry Sharjeel A, Hou Wensheng, Jia Xiaofeng
Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400044, China.
School of Medicine and Health Sciences, George Washington University, Washington, DC 20037, USA.
Int J Mol Sci. 2017 Feb 5;18(2):335. doi: 10.3390/ijms18020335.
Stroke leads to serious long-term disability. Electrical epidural cortical stimulation has made significant improvements in stroke rehabilitation therapy. We developed a preliminary wireless implantable passive interface, which consists of a stimulating surface electrode, receiving coil, and single flexible passive demodulated circuit printed by flexible printed circuit (FPC) technique and output pulse voltage stimulus by inductively coupling an external circuit. The wireless implantable board was implanted in cats' unilateral epidural space for electrical stimulation of the primary visual cortex (V1) while the evoked responses were recorded on the contralateral V1 using a needle electrode. The wireless implantable board output stable monophasic voltage stimuli. The amplitude of the monophasic voltage output could be adjusted by controlling the voltage of the transmitter circuit within a range of 5-20 V. In acute experiment, cortico-cortical evoked potential (CCEP) response was recorded on the contralateral V1. The amplitude of N2 in CCEP was modulated by adjusting the stimulation intensity of the wireless interface. These results demonstrated that a wireless interface based on a microcoil array can offer a valuable tool for researchers to explore electrical stimulation in research and the dura mater-electrode interface can effectively transmit electrical stimulation.
中风会导致严重的长期残疾。硬膜外皮层电刺激在中风康复治疗方面取得了显著进展。我们开发了一种初步的无线可植入无源接口,它由一个刺激表面电极、接收线圈和通过柔性印刷电路(FPC)技术印刷的单个柔性无源解调电路组成,并通过与外部电路电感耦合输出脉冲电压刺激。将无线可植入板植入猫的单侧硬膜外空间,用于对初级视觉皮层(V1)进行电刺激,同时使用针电极在对侧V1记录诱发反应。无线可植入板输出稳定的单相电压刺激。通过控制发射电路的电压,单相电压输出的幅度可在5 - 20 V范围内调节。在急性实验中,在对侧V1记录到了皮质 - 皮质诱发电位(CCEP)反应。通过调整无线接口的刺激强度,可调制CCEP中N2的幅度。这些结果表明,基于微线圈阵列的无线接口可为研究人员探索电刺激提供有价值的工具,并且硬脑膜 - 电极接口能够有效传输电刺激。