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人工和生物系统中的运动分割

Motion segmentation in artificial and biological system.

作者信息

Gillner W J

机构信息

Institut für Neuroinformatik, Ruhr-Universität Bochum, Germany.

出版信息

Z Naturforsch C J Biosci. 1998 Jul-Aug;53(7-8):622-7. doi: 10.1515/znc-1998-7-815.

Abstract

In the early steps of visual information processing motion is one of the most important queues for the development of spatial representations. Obstacle detection and egomotion estimation are only two examples of the powerfulness of visual motion detection systems. The underlying process of information extraction has to be active due to the observer's capabilities of egomotion. This means that the observer's motion has an impact on the projected retinal motion field. Therefore one of the challenging tasks for biological as well as for technical vision systems is to couple retinal motion and egomotion and to uncouple egomotion and object motion. The following sections describe a model that couples visual motion processing with the egomotion parameters of a moving observer. Beneath a theoretical introduction of the model an application to traffic scene analysis is presented. At last the paper relates the model to biological motion processing systems.

摘要

在视觉信息处理的早期阶段,运动是空间表征发展的最重要线索之一。障碍物检测和自我运动估计只是视觉运动检测系统强大功能的两个例子。由于观察者的自我运动能力,信息提取的潜在过程必须是活跃的。这意味着观察者的运动会对投射到视网膜上的运动场产生影响。因此,对于生物视觉系统和技术视觉系统来说,具有挑战性的任务之一是将视网膜运动与自我运动耦合起来,并将自我运动与物体运动解耦。以下各节描述了一个将视觉运动处理与移动观察者的自我运动参数耦合的模型。在对该模型进行理论介绍之后,展示了其在交通场景分析中的应用。最后,本文将该模型与生物运动处理系统联系起来。

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