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Middle Temporal Visual Area Microstimulation Influences Veridical Judgments of Motion Direction

机译:中颞视区微刺激影响运动方向的垂直判断

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摘要

Microstimulation of direction columns in the middle temporal visual area (MT, or V5) provides a powerful tool for probing the relationship between cortical physiology and visual motion perception. In the current study we obtained “veridical” reports of perceived motion from rhesus monkeys by permitting a continuous range of possible responses that mapped isomorphically onto a continuous range of possible motion directions. In contrast to previous studies, therefore, the animals were freed from experimenter-imposed “categories” that typify forced choice tasks. We report three new findings: (1) MT neurons with widely disparate preferred directions can cooperate to shape direction estimates, inconsistent with a pure “winner-take-all” read-out algorithm and consistent with a distributed coding scheme like vector averaging, whereas neurons with nearly opposite preferred directions seem to compete in a manner consistent with the winner-take-all hypothesis, (2) microstimulation can influence direction estimates even when paired with the most powerful motion stimuli available, and (3) microstimulation effects can be elicited when a manual response (instead of our standard oculomotor response) is used to communicate the perceptual report.
机译:颞中部视觉区域(MT或V5)中方向列的微刺激提供了一个强大的工具,可用于探测皮层生理学与视觉运动感知之间的关系。在当前的研究中,我们通过允许连续范围的可能响应(同构映射到连续范围的可能运动方向)获得了恒河猴感知运动的“垂直”报告。因此,与先前的研究相比,这些动物摆脱了实验者施加的代表强制选择任务的“类别”。我们报告了三个新发现:(1)具有广泛不同的首选方向的MT神经元可以协同塑造方向估计值,与纯粹的“赢家通吃”读出算法不一致,并且与矢量平均等分布式编码方案一致,而具有几乎相反首选方向的神经元似乎以与获胜者通吃假设一致的方式竞争,(2)即使与最强大的运动刺激配对使用,微刺激也可以影响方向估计,并且(3)可以引起微刺激效果当使用手动回复(而不是我们的标准动眼反应)来传达感知报告时。

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