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  1. Visuomotor extrapolation.David Whitney - 2008 - Behavioral and Brain Sciences 31 (2):220-221.
    Accurate perception of moving objects would be useful; accurate visually guided action is crucial. Visual motion across the scene influences perceived object location and the trajectory of reaching movements to objects. In this commentary, I propose that the visual system assigns the position of any object based on the predominant motion present in the scene, and that this is used to guide reaching movements to compensate for delays in visuomotor processing.
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  • Explaining human cognitive autapomorphies.Thomas Suddendorf - 2008 - Behavioral and Brain Sciences 31 (2):147-148.
    The real reason for the apparent discontinuity between human and nonhuman minds is that all closely related hominids have become extinct. Nonetheless, I agree with Penn et al. that comparative psychology should aim to establish what cognitive traits humans share with other animals and what traits they do not share, because this could make profound contributions to genetics and neuroscience. There is, however, no consensus yet, and Penn et al.'s conclusion that it all comes down to one trait is premature.
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  • Thinking about thinking about time.Jonathan Redshaw, Adam Bulley & Thomas Suddendorf - 2019 - Behavioral and Brain Sciences 42.
    Hoerl & McCormack discuss the possible function of meta-representations in temporal cognition but ultimately take an agnostic stance. Here we outline the fundamental role that we believe meta-representations play. Because humans know that their representations of future events are just representations, they are in a position to compensate for the shortcomings of their own foresight and to prepare for multiple contingencies.
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  • Mental and sensorimotor extrapolation fare better than motion extrapolation in the offset condition.Dirk Kerzel & Jochen Müsseler - 2008 - Behavioral and Brain Sciences 31 (2):206-207.
    Evidence for motion extrapolation at motion offset is scarce. In contrast, there is abundant evidence that subjects mentally extrapolate the future trajectory of weak motion signals at motion offset. Further, pointing movements overshoot at motion offset. We believe that mental and sensorimotor extrapolation is sufficient to solve the problem of perceptual latencies. Both present the advantage of being much more flexible than motion extrapolation.
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  • Prediction and postdiction: Two frameworks with the goal of delay compensation.David M. Eagleman - 2008 - Behavioral and Brain Sciences 31 (2):205-206.
    Although prediction is one of the key tasks of intelligent brains, it often proves impossible in an unpredictably changing world. Hence, brains often decide what happened retrospectively. This framework of postdiction, the opposite of prediction, stands as an alternative or complimentary framework to prediction. I further show how motor-sensory recalibration demonstrates delay compensation at the perceptual level.
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