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Titlebook: Depth Perception in Frogs and Toads; A Study in Neural Co Donald House Book 1989 Springer-Verlag New York, Inc. 1989 Algorithms.Artificial

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Towards a Complete Model,at frogs and toads do not use a single means for determining depth but, instead, use two different processes, one for determining depth of stationary environmental objects and the other for determining depth of prey. We present an accommodation control system that meets the needs of both of these pr
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Conclusions,nd robotics. Specifically, we wished to contribute to the understanding of the depth perception process in frogs and toads and, at the same time, to suggest depth algorithms that would be useful in the design of robotic systems. But our initial hope must be tempered by the fact that the disciplines
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Towards a Complete Model,ocesses, and show how some of the discrepancies between animal experiments and our . would be eliminated by the nonlinearities inherent in this control. The chapter concludes with an evaluation of the depth scale used in the two models.
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Book 1989uro-computational point of view. Perhaps the most important feature of the book is the development and presentation of two neurally realizable depth perception algorithms that utilize both monocular and binocular depth cues in a cooperative fashion. One of these algorithms is specialized for computa
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Southampton Studies in International Policyocesses, and show how some of the discrepancies between animal experiments and our . would be eliminated by the nonlinearities inherent in this control. The chapter concludes with an evaluation of the depth scale used in the two models.
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0341-633X from a neuro-computational point of view. Perhaps the most important feature of the book is the development and presentation of two neurally realizable depth perception algorithms that utilize both monocular and binocular depth cues in a cooperative fashion. One of these algorithms is specialized f
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Conclusions,sory feedback to control their actions. Similarly, attempts to relate animal behavior to underlying neurophysiology and neuroanatomy entail the making of assumptions that are often untestable using current methods. It is clear that, at this stage of development, a study such as ours can make only preliminary claims.
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