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一种适用于动物的剑桥色觉测试法。

An adaptation of the Cambridge Colour Test for use with animals.

作者信息

Mancuso Katherine, Neitz Maureen, Neitz Jay

机构信息

Medical College of Wisconsin, Milwaukee, Wisconsin 53226, USA.

出版信息

Vis Neurosci. 2006 May-Aug;23(3-4):695-701. doi: 10.1017/S0952523806233364.

Abstract

Recently, molecular biological techniques have presented new opportunities for addressing questions concerning the neural mechanisms involved in color coding, thereby rousing renewed interest in animal color vision testing. We have modified a computer-based assessment tool, the Cambridge Colour Test, to make it suitable for use with animals. Here, the validity and reliability of the testing method were evaluated using squirrel monkeys. Because the chromatic stimuli and the achromatic backgrounds of the test consist of dots that vary in lightness, the stimulus parameters can be adjusted so that animals are not able to use luminance differences to make correct discriminations. Thus, in contrast to methods used previously, this test does not require that time be spent equating the luminance of each chromatic stimulus examined. Furthermore, the computer video-display based design of the testing apparatus can be easily replicated and adapted for use with many species in a variety of settings. In the present experiments, the squirrel monkeys' behavioral results agreed with the predictions for their color vision based on genetic analysis and electroretinography (ERG) spectral sensitivity data. Repeated measurements were highly consistent. Thus, an adaptation of the Cambridge Colour Test provides a valid and reliable method for testing color vision in animals.

摘要

最近,分子生物学技术为解决有关颜色编码所涉及的神经机制问题带来了新机遇,从而重新激发了人们对动物颜色视觉测试的兴趣。我们对一种基于计算机的评估工具——剑桥颜色测试进行了改进,使其适用于动物。在此,我们使用松鼠猴评估了该测试方法的有效性和可靠性。由于测试的彩色刺激和无彩色背景由明度不同的点组成,因此可以调整刺激参数,使动物无法利用亮度差异做出正确辨别。因此,与先前使用的方法不同,该测试不需要花费时间使所检查的每个彩色刺激的亮度相等。此外,基于计算机视频显示的测试设备设计可以轻松复制,并适用于各种环境中的许多物种。在本实验中,松鼠猴的行为结果与基于遗传分析和视网膜电图(ERG)光谱敏感性数据对其颜色视觉的预测一致。重复测量具有高度一致性。因此,改进后的剑桥颜色测试为测试动物的颜色视觉提供了一种有效且可靠的方法。

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