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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Adaptations for amphibious vision in sea otters (Enhydra lutris): structural and functional observations
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Adaptations for amphibious vision in sea otters (Enhydra lutris): structural and functional observations

机译:海獭两栖视野的适应(Enhydra Lutris):结构和功能观察

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摘要

Sea otters (Enhydra lutris) are amphibious mammals that maintain equal in-air and underwater visual acuity. However, their lens-based underwater accommodative mechanism presumably requires a small pupil that may limit sensitivity across light levels. In this study, we consider adaptations for amphibious living by assessing the tapetum lucidum, retina, and pupil dynamics in sea otters. The sea otter tapetum lucidum resembles that of terrestrial carnivores in thickness and fundic coverage. A heavily rod-dominated retina appears qualitatively similar to the ferret and domestic cat, and a thick outer nuclear layer relative to a thinner inner nuclear layer is consistent with nocturnal vertebrates and other amphibious carnivores. Pupil size range in two living sea otters is smaller relative to other amphibious marine carnivores (pinnipeds) when accounting for test conditions. The pupillary light response seems slower than other aquatic and terrestrial species tested in comparable brightness, although direct comparisons require further assessment. Our results suggest that sea otters have retained features for low-light vision but rapid adjustments and acute underwater vision may be constrained across varying light levels by a combination of pupil shape, absolute eye size, and the presumed coupling between anterior lens curvature and pupil size during accommodation.
机译:海獭(Enhaydra Lutris)是两栖哺乳动物,可保持相同的空中和水下视力。然而,基于镜头的水下适应机制可能需要一个小瞳孔,可能会限制光线淋巴的灵敏度。在这项研究中,我们考虑通过评估海獭中的Tapetum lucidum,视网膜和瞳孔动态来对两栖生活的适应性。海獭Tapetum lucidum类似于厚度和基础覆盖率的陆生肉食。一位重杆主导的视网膜出现与雪貂和国内猫定性类似,而相对于较薄的内核层的厚实的外核层与夜间脊椎动物和其他两栖食肉动物一致。在核算试验条件时,两个生活海獭的瞳孔尺寸范围相对于其他两栖环球(Pinnipeds)更小。虽然直接比较需要进一步评估,但瞳孔光反应似乎比在可比亮度中测试的其他水生和陆地种类慢。我们的研究结果表明,海獭对低光视力保留了特征,但通过瞳孔形状,绝对眼睛尺寸和前透镜曲率与瞳孔尺寸之间的假定耦合,可以在不同的光线水平上进行快速调整和急性水下视力。住宿期间。

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