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首页> 外文期刊>Journal of neural engineering >Visual perception and interception of falling objects: a review of evidence for an internal model of gravity
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Visual perception and interception of falling objects: a review of evidence for an internal model of gravity

机译:视觉感知和拦截掉落的物体:重力内部模型的证据综述

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摘要

Prevailing views on how we time the interception of a moving object assume that the visual inputs are informationally sufficient to estimate the time-to-contact from the object's kinematics. However, there are limitations in the visual system that raise questions about the general validity of these theories. Most notably, vision is poorly sensitive to arbitrary accelerations. How then does the brain deal with the motion of objects accelerated by Earth's gravity? Here we review evidence in favor of the view that the brain makes the best estimate about target motion based on visually measured kinematics and an a priori guess about the causes of motion. According to this theory, a predictive model is used to extrapolate time-to-contact from the expected kinetics in the Earth's gravitational field.
机译:关于我们如何对移动物体的拦截进行计时的现有观点认为,视觉输入足以在信息上从物体的运动学估计接触时间。但是,视觉系统中存在一些局限性,这些局限性引起了人们对这些理论的普遍有效性的质疑。最值得注意的是,视觉对任意加速度的敏感度很低。大脑如何处理由地球引力加速的物体的运动?在这里,我们以证据为依据,即基于视觉测得的运动学和对运动原因的先验猜测,大脑对目标运动做出了最佳估计,从而回顾了证据。根据该理论,使用预测模型从地球引力场中的预期动力学推断接触时间。

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