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用于确定航向和深度的运动对立机制的数学分析。

Mathematical analysis of motion-opponent mechanisms used in the determination of heading and depth.

作者信息

Royden C S

机构信息

Department of Computer Science, Wellesley College, Massachusetts 02181, USA.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 1997 Sep;14(9):2128-43. doi: 10.1364/josaa.14.002128.

Abstract

A mathematical analysis is presented of a model that uses motion-opponent operators similar to neurons found in the primate middle temporal visual area, to determine observer heading and depth from optical flow information. The response of these operators to depth changes in the form of a slanted plane or a step edge is analyzed, and the outputs of odd-symmetric operators are compared with that of circularly symmetric operators. The analysis shows sources of error from these operators in determining heading and depth and suggests how some of these errors can be mitigated. Simulations are presented that show that the model performs well for a variety of situations.

摘要

本文给出了一个模型的数学分析,该模型使用类似于灵长类动物中颞视觉区域发现的神经元的运动对立算子,从光流信息中确定观察者的航向和深度。分析了这些算子对倾斜平面或阶跃边缘形式的深度变化的响应,并将奇对称算子的输出与圆对称算子的输出进行了比较。分析显示了这些算子在确定航向和深度时的误差来源,并提出了如何减轻其中一些误差的方法。给出的模拟结果表明,该模型在各种情况下都表现良好。

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