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首页> 外文期刊>The Journal of Physiology >An adaptive filter model of cerebellar zone C3 as a basis for safe limb control?
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An adaptive filter model of cerebellar zone C3 as a basis for safe limb control?

机译:小脑区C3的自适应滤波器模型作为安全肢体控制的基础?

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Abstract The review asks how the adaptive filter model of the cerebellum might be relevant to experimental work on zone C3, one of the most extensively studied regions of cerebellar cortex. As far as features of the cerebellar microcircuit are concerned, the model appears to fit very well with electrophysiological discoveries concerning the importance of molecular layer interneurons and their plasticity, the significance of long-term potentiation and the striking number of silent parallel fibre synapses. Regarding external connectivity and functionality, a key feature of the adaptive filter model is its use of the decorrelation algorithm, which renders it uniquely suited to problems of sensory noise cancellation. However, this capacity can be extended to the avoidance of sensory interference, by appropriate movements of, for example, the eyes in the vestibulo-ocular reflex. Avoidance becomes particularly important when painful signals are involved, and as the climbing fibre input to zone C3 is extremely responsive to nociceptive stimuli, it is proposed that one function of this zone is the avoidance of pain by, for example, adjusting movements of the body to avoid self-harm. This hypothesis appears consistent with evidence from humans and animals concerning the role of the intermediate cerebellum in classically conditioned withdrawal reflexes, but further experiments focusing on conditioned avoidance are required to test the hypothesis more stringently. The proposed architecture may also be useful for automatic self-adjusting damage avoidance in robots, an important consideration for next generation 'soft' robots designed to interact with people.
机译:摘要评论提出了小脑的自适应滤波器模型可能与在C3区(小脑皮质研究最广泛的区域之一)上的实验工作有关。就小脑微电路的特征而言,该模型似乎与电生理学发现非常吻合,这些发现涉及分子层中间神经元的重要性及其可塑性,长期增强的重要性以及沉默的平行纤维突触的惊人数目。关于外部连接性和功能,自适应滤波器模型的关键特征是它使用了去相关算法,这使其独特地适合于消除感官噪声的问题。但是,可以通过例如前庭眼反射中的眼睛的适当运动来扩展这种能力,以避免感觉干扰。当涉及到疼痛信号时,回避变得尤为重要,并且由于输入到区域C3的攀爬纤维对伤害性刺激极为敏感,因此建议该区域的一种功能是通过例如调节身体的运动来避免疼痛。避免自我伤害。该假说似乎与人类和动物有关中间小脑在经典条件性撤退反射中的作用的证据相一致,但是还需要针对条件性回避的进一步实验以更严格地检验该假说。所提出的体系结构对于避免机器人中的自动自我调整损坏也可能有用,这是设计用于与人互动的下一代“软”机器人的重要考虑因素。

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