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Temporal Dynamics Underlying Perceptual Decision Making: Insights from the Interplay between an Attractor Model and Parietal Neurophysiology

机译:知觉决策的时间动态:吸引人模型和顶叶神经生理学之间相互作用的见解。

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摘要

Recent neurophysiological studies in awake, behaving primates have revealed that neurons in certain brain areas appear to integrate sensory evidence over time during the performance of perceptual decision-making tasks. Neurons in the lateral intraparietal area (LIP) of rhesus monkeys exhibit such decision-related signals while the animals view and judge the direction of a visual motion display. Further investigation of this temporal integration process using brief perturbations of the sensory evidence has suggested that LIP neurons do not integrate evidence in a perfect, linear manner. We describe how a biophysically-plausible attractor network model can account for many aspects of the temporal dynamics of neural activity during these perceptual decisions. We also review a larger set of models and explain how the dynamics during and after temporal integration can help to distinguish the underlying neural mechanisms. Finally, we propose some crucial theoretically-motivated experiments that are needed to test among models.
机译:最近在清醒的灵长类动物中进行的神经生理学研究表明,某些大脑区域的神经元在执行感知决策任务时会随着时间的流逝而整合感觉证据。在动物观察和判断视觉运动显示的方向时,恒河猴的外侧顶壁内区域(LIP)中的神经元会显示与决策相关的信号。使用短暂的感觉证据扰动对该时间整合过程进行的进一步研究表明,LIP神经元不能以完美的线性方式整合证据。我们描述了生物物理上可行的吸引子网络模型如何在这些知觉决策过程中解释神经活动的时间动态的许多方面。我们还将回顾更大的一组模型,并解释时间整合过程中和之后的动力学如何有助于区分潜在的神经机制。最后,我们提出了一些至关重要的具有理论动机的实验,这些实验需要在模型之间进行测试。

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