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一种通过无地标学习校准的啮齿动物头部方向的脉冲神经网络模型。

A Spiking Neural Network Model of Rodent Head Direction Calibrated With Landmark Free Learning.

作者信息

Stentiford Rachael, Knowles Thomas C, Pearson Martin J

机构信息

Bristol Robotics Laboratory, University of the West England Bristol, Bristol, United Kingdom.

出版信息

Front Neurorobot. 2022 May 26;16:867019. doi: 10.3389/fnbot.2022.867019. eCollection 2022.

Abstract

Maintaining a stable estimate of head direction requires both self-motion (idiothetic) information and environmental (allothetic) anchoring. In unfamiliar or dark environments idiothetic drive can maintain a rough estimate of heading but is subject to inaccuracy, visual information is required to stabilize the head direction estimate. When learning to associate visual scenes with head angle, animals do not have access to the 'ground truth' of their head direction, and must use egocentrically derived imprecise head direction estimates. We use both discriminative and generative methods of visual processing to learn these associations without extracting explicit landmarks from a natural visual scene, finding all are sufficiently capable at providing a corrective signal. Further, we present a spiking continuous attractor model of head direction (SNN), which when driven by idiothetic input is subject to drift. We show that head direction predictions made by the chosen model-free visual learning algorithms can correct for drift, even when trained on a small training set of estimated head angles self-generated by the SNN. We validate this model against experimental work by reproducing cue rotation experiments which demonstrate visual control of the head direction signal.

摘要

维持头部方向的稳定估计既需要自身运动(本体感受)信息,也需要环境(外感受)锚定。在不熟悉或黑暗的环境中,本体感受驱动可以维持对航向的粗略估计,但容易出现不准确的情况,需要视觉信息来稳定头部方向估计。当学习将视觉场景与头部角度相关联时,动物无法获取其头部方向的“真实情况”,并且必须使用以自我为中心得出的不精确的头部方向估计。我们使用判别式和生成式视觉处理方法来学习这些关联,而无需从自然视觉场景中提取明确的地标,发现所有这些方法都足以提供校正信号。此外,我们提出了一种头部方向的脉冲连续吸引子模型(SNN),当由本体感受输入驱动时,该模型会出现漂移。我们表明,即使在由SNN自我生成的小的估计头部角度训练集上进行训练,所选的无模型视觉学习算法做出的头部方向预测也可以校正漂移。我们通过重现提示旋转实验来验证该模型与实验工作的一致性,这些实验证明了头部方向信号的视觉控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d26/9178238/d318825bcd61/fnbot-16-867019-g0001.jpg

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