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Adaptation effects of medial forebrain bundle micro-electrical stimulation

机译:前脑内侧束微电刺激的适应效应

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摘要

Brain micro-electrical stimulation and its applications are among the most important issues in the field of brain science and neurophysiology. Deep brain stimulation techniques have been used in different theraputic or alternative medicine applications including chronic pain control, tremor control, Parkinson’s disease control and depression control. Recently, brain electrical stimulation has been used for tele-control and navigation of small animals such as rodents and birds. Electrical stimulation of the medial forebrain bundle (MFB) area has been reported to induce a pleasure sensation in rat which can be used as a virtual reward for rat navigation. In all cases of electrical stimulation, the temporal adaptation may deteriorate the instantaneous effects of the stimulation. Here, we study the adaptation effects of the MFB electrical stimulation in rats. The animals are taught to press a key in an operant conditioning chamber to self-stimulate the MFB region and receive a virtual reward for each key press. Based on the number of key presses, and statistical analyses the effects of adaptation on MFB stimulation is evaluated. The stimulation frequency were changed from 100 to 400 Hz, the amplitude were changed from 50 to 170 µA and the pulse-width were changed from 180 to 2000 µs. In the frequency of 250 Hz the adaptation effect were observed. The amplitude did not show a significant effect on MFB adaptation. For all values of pulse-widths, the adaptation occurred over two consecutive days, meaning that the number of key presses on the second day was less than the first day.
机译:脑微电刺激及其应用是脑科学和神经生理学领域中最重要的问题。深层脑刺激技术已用于不同的治疗或替代医学应用,包括慢性疼痛控制,震颤控制,帕金森氏病控制和抑郁控制。近来,脑电刺激已被用于遥控和导航诸如啮齿动物和鸟类的小动物。据报道,内侧前脑束(MFB)区域的电刺激可在大鼠中诱发愉悦感,可用作大鼠航行的虚拟奖励。在电刺激的所有情况下,时间适应可能会使刺激的瞬时效果恶化。在这里,我们研究了MFB电刺激对大鼠的适应作用。教导动物在操作调节室内按下按键以自我刺激MFB区域,并在每次按键时获得虚拟奖励。基于按键的数量,并进行统计分析,评估适应对MFB刺激的影响。刺激频率从100更改为400 Hz,幅度从50更改为170 µA,脉冲宽度从180更改为2000 µs。在250 Hz的频率下观察到了适应效果。振幅对MFB适应性没有显着影响。对于所有脉宽值,适应过程都是连续两天进行的,这意味着第二天的按键次数少于第一天。

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