Carlay L Teed, Samuel Hartzler, Esteban Fernández-Juricic
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引用次数: 0
摘要
视锥和光谱对立是许多物种色彩处理的基础,在灵长类动物中得到了很好的研究。对与颜色处理相关的神经机制进行种间比较所需的数据,可以追溯到20世纪50年代,涉及四种视网膜细胞类型和多个大脑区域的大量文献中。我们的目标是在非灵长类脊椎动物的图像形成视觉通路中产生所有已知的锥体对抗细胞的综合数据集。我们按照PRISMA的指南,对Web of Science和Scopus两个数据库进行了系统的文献检索。根据收集到的数据,我们制作了三个数据集。一个数据集包含锥体对抗数据,表明哪些光感受器驱动细胞光响应。第二个数据集包含光谱对立数据,表示细胞对不同波长光的电反应。此外,我们开发了第三个光感受器数据数据库,其中锥或光谱对抗性被报道来补充前两个。这些数据集将提供颜色处理领域的综合数据,可用于种间和种内荟萃分析,并可为理解非灵长类脊椎动物波长比较背后的神经机制提供起点。
Dataset of cone opponent mechanisms and spectral tuning in non-primate vertebrates.
Cone and spectral opponency are fundamental to colour processing in many species and are well studied in primates. The data required to make interspecific comparisons of the neural mechanisms associated with colour processing is spread across a broad body of literature reaching back to the 1950's across four retinal cell types and multiple brain regions. We aimed to produce a comprehensive dataset of all known cone opponent cells in non-primate vertebrates in image forming visual pathways. We completed a systematic literature search of two databases, Web of Science and Scopus, following PRISMA guidelines. From the data collected, we produced three datasets. One dataset contains cone opponency data that indicates which photoreceptors drive cell light responses. The second dataset contains spectral opponency data that represents the cell electrical responses to different wavelengths of light. Additionally, we developed a third database of photoreceptor data for the species for which cone or spectral opponency was reported to supplement the first two. These datasets will provide a synthesis of the data in the field of colour processing, can be used for interspecific and intraspecific meta-analyses, and can provide a starting point for understanding neural mechanisms behind wavelength comparisons in non-primate vertebrates.
期刊介绍:
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