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Velocity computation in the primate visual system

机译:灵长类动物视觉系统中的速度计算

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Computational neuroscience combines theory and experiment to shed light on the principles and mechanisms of neural computation. This approach has been highly fruitful in the ongoing effort to understand velocity computation by the primate visual system. This Review describes the success of spatiotemporal-energy models in representing local-velocity detection. It shows why local-velocity measurements tend to differ from the velocity of the object as a whole. Certain cells in the middle temporal area are thought to solve this problem by combining local-velocity estimates to compute the overall pattern velocity. The Review discusses different models for how this might occur and experiments that test these models. Although no model is yet firmly established, evidence suggests that computing pattern velocity from local-velocity estimates involves simple operations in the spatiotemporal frequency domain.
机译:计算神经科学将理论与实验相结合,以阐明神经计算的原理和机制。这种方法在不断了解灵长类动物视觉系统的速度计算方面取得了丰硕的成果。这篇综述描述了时空能量模型在代表局部速度检测中的成功。它说明了为什么局部速度测量往往与整个物体的速度不同。人们认为,中间颞部区域中的某些单元格可以通过组合局部速度估计值来计算总体模式速度来解决此问题。该评论讨论了如何发生这种情况的不同模型以及测试这些模型的实验。尽管还没有牢固建立模型,但有证据表明,根据局部速度估算值计算模式速度涉及时空频域中的简单操作。

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