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Neuronal thresholds and choice-related activity of otolith afferent fibers during heading perception

机译:航向感知过程中耳石传入纤维的神经元阈值和与选择有关的活动

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摘要

How activity of sensory neurons leads to perceptual decisions remains a challenge to understand. Correlations between choices and single neuron firing rates have been found early in vestibular processing, in the brainstem and cerebellum. To investigate the origins of choice-related activity, we have recorded from otolith afferent fibers while animals performed a fine heading discrimination task. We find that afferent fibers have similar discrimination thresholds as central cells, and the most sensitive fibers have thresholds that are only twofold or threefold greater than perceptual thresholds. Unlike brainstem and cerebellar nuclei neurons, spike counts from afferent fibers do not exhibit trial-by-trial correlations with perceptual decisions. This finding may reflect the fact that otolith afferent responses are poorly suited for driving heading perception because they fail to discriminate self-motion from changes in orientation relative to gravity. Alternatively, if choice probabilities reflect top-down inference signals, they are not relayed to the vestibular periphery.
机译:感觉神经元的活动如何导致知觉决策仍然是难以理解的挑战。在前庭处理的早期,在脑干和小脑中,已经发现了选择与单神经元放电速率之间的关系。为了调查与选择有关的活动的起源,我们从耳石传入纤维记录下来,而动物则执行了精细的航向识别任务。我们发现传入纤维的鉴别阈值与中央细胞相似,最敏感的纤维的阈值仅比感知阈值大两倍或三倍。与脑干和小脑核神经元不同,传入纤维的峰值计数与知觉决策之间没有显示出逐项的试验相关性。这一发现可能反映了耳石传入反应不适合驱动航向感知的事实,因为耳石传入反应无法将自身运动与相对于重力的方向变化区分开。或者,如果选择概率反映了自上而下的推断信号,则它们不会中继到前庭外围。

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