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Using dlPAG-evoked immobile behavior in animal-robotics navigation

机译:在动物机器人导航中使用dlPAG诱发的固定行为

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Objectives To investigate the Immobile behavior evoked by dorsolateral Periaqueductal gray (dlPAG) stimulation and its application in animal-robotics. Methods Adult Sprague Dawley rats were chronically implanted Stimulating electrodes in both sides of medial forebrain bundle (MFB), whisker barrel fields of left and right somatosensory cortices (SI) and dlPAG area. Consisted in holding constant amplitude at 10v, with 1.0ms pulse duration but varying the electrical stimulation frequency through its interpulse intertrial (IPI), the electrical stimulation was delivered to dlPAG to trigger immobile behavior. The M FB stimulation followed dlPAG stimulation with different intervals to investigate the influence of MFB on the dlPAG-evoked immobile behavior. Results The shorting of IPI or the lengthening stimulation time produced increasing immobile time, and finally escaped behavior. The MFB stimulation remarkably reduced the freezing time length (p<0.01). Conclusion With self-customized wirelessly navigation control system, motor status of animal-robotics can be switched between motion and motionlessness by stimulating PAG or MFB during the navigation task.
机译:目的研究背外侧胸膜导水管灰色(dlPAG)引起的不动行为及其在动物机器人中的应用。方法成年Sprague Dawley大鼠长期在内侧前脑束(MFB)两侧,左右体感皮层(SI)和dlPAG区域的晶须区植入刺激电极。持续将振幅保持在10v,脉冲持续时间为1.0ms,但通过其脉冲间性(IPI)改变电刺激频率,电刺激被传递至dlPAG以触发固定行为。 M FB刺激以不同间隔跟随dlPAG刺激,以研究MFB对dlPAG诱发的不动行为的影响。结果IPI的缩短或刺激时间的延长导致固定时间的增加,最终逃避了行为。 MFB刺激显着缩短了冻结时间长度(p <0.01)。结论借助自定义的无线导航控制系统,可以在导航任务期间通过刺激PAG或MFB来在运动和静止之间切换动物机器人的运动状态。

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