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Direct brain stimulation enables training of complex behaviors in freely roaming animals

机译:直接脑刺激使得能够在自由漫游动物中培训复杂行为

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Operant conditioning procedures typically incorporate a discrimination-learning task in which animals are trained to produce certain actions in response to external cues. The need to physically control the real-world events (cues and rewards) necessary for such learning, however, can often limit the scope of operant conditioning. Here we show that using brain microstimulation to directly deliver both sensory cues and rewards alleviates such constraints, and enables conditioning approaches that help transcend traditional boundaries in animal learning. We applied this "virtual" learning paradigm to develop a behavioral model in which an operator, using a wireless multichannel stimulator, was able to steer distant animals (rats) in the manner of "intelligent" robots. The powerful control exerted over the animals behavior suggests that such models could find use not only in neurophysiological study but also in mobile robotics.
机译:操作性调节程序通常包含歧视学习任务,其中培训动物以响应外部提示而产生某些动作。然而,需要物理控制这种学习所必需的真实活动(提示和奖励),通常可以限制操作性调节的范围。在这里,我们表明,使用脑微型刺激直接提供感官线索和奖励减轻了这种制约因素,并实现了帮助超越动物学习中传统界限的调理方法。我们应用了这种“虚拟”学习范例来开发一种行为模型,其中使用无线多通道刺激器的操作员能够以“智能”机器人的方式引导远处的动物(大鼠)。对动物行为施加的强大的控制表明,这种模型不仅可以在神经生理学研究中找到使用,也可以在移动机器人中找到使用。

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