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An implantable device for neuropsychiatric rehabilitation by chronic deep brain stimulation in freely moving rats

机译:一种可自由移动大鼠通过慢性深部脑刺激进行神经精神病康复的可植入设备

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摘要

Successful practice of clinical deep brain stimulation (DBS) calls for basic research on the mechanisms and explorations of new indications in animals. In the article, a new implantable, single-channel, low-power miniature device is proposed, which may transmit pulses chronically into the brain nucleus of freely moving rats. The DBS system consists of an implantable pulse generator (IPG), a bipolar electrode, and an external programmer. The IPG circuit module is assembled as a 20-mm diameter circular board and fixed on a rat’s skull together with an electrode and battery. The rigid electrode may make its fabrication and implantation more easy. The external programmer is designed for bidirectional communication with the IPG by a telecontrol transceiver and adjusts stimulation parameters. A biological validation was performed in which the effects of electrical stimulation in brain nucleus accumbens were detected. The programmed parameters were accurate, implant steady, and power sufficient to allow stimulation for more than 3 months. The larger area of the electrode tip provided a moderate current or charge density and minimized the damage from electrochemistry and pyroelectricity. The rats implanted with the device showed a reduction in morphine-induced conditioned place preference after high-frequency stimulation. In conclusion, the DBS device is based on the criteria of simple technology, minimal invasion, low cost, small in size, light-weight, and wireless controlled. This shows that our DBS device is appropriate and can be used for preclinical studies, indicating its potential utility in the therapy and rehabilitation of neuropsychiatric disorders.
机译:临床深层脑刺激(DBS)的成功实践要求对动物新适应症的机制和探索进行基础研究。在本文中,提出了一种新的可植入,单通道,低功耗的微型设备,该设备可以将脉冲长期传输到自由运动大鼠的脑核中。 DBS系统由植入式脉冲发生器(IPG),双极电极和外部编程器组成。 IPG电路模块组装成直径20毫米的圆形板,并与电极和电池一起固定在大鼠的头骨上。刚性电极可以使其制造和植入更加容易。外部编程器设计用于通过遥控收发器与IPG进行双向通信,并调整刺激参数。进行了生物学验证,其中检测了伏击脑伏核的电刺激作用。编程的参数准确,植入物稳定且功率足以允许刺激超过3个月。电极头的较大区域提供了适度的电流或电荷密度,并最大程度地减少了电化学和热电造成的损害。植入该装置的大鼠在高频刺激后显示出吗啡诱导的条件性位置偏好降低。总之,DBS设备基于以下技术标准:技术简单,入侵最少,成本低,体积小,重量轻以及受无线控制。这表明我们的DBS设备是合适的,可用于临床前研究,表明其在神经精神疾病的治疗和康复中具有潜在的实用性。

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