Ortiz Gonzalo, Odom J Vernon, Passaglia Christopher L, Tzekov Radouil T
Department of Ophthalmology, University of South Florida, 12901 Bruce B. Downs Blvd., MDC 21, Tampa, FL, 33612, USA.
Department of Ophthalmology, West Virginia University, Morgantown, WV, USA.
Doc Ophthalmol. 2017 Feb;134(1):57-73. doi: 10.1007/s10633-016-9567-5. Epub 2016 Dec 28.
The existence of retinopetal (sometimes referred to as "efferent" or "centrifugal") axons in the mammalian optic nerve is a topic of long-standing debate. Opposition is fading as efferent innervation of the retina has now been widely documented in rodents and other animals. The existence and function of an efferent system in humans and non-human primates has not, though, been definitively established. Such a feedback pathway could have important functional, clinical, and experimental significance to the field of vision science and ophthalmology.
Following a comprehensive literature review (PubMed and Google Scholar, until July 2016), we present evidence regarding a system that can influence the bioelectrical activity of the retina in primates.
Anatomical and physiological evidences are presented separately. Improvements in histological staining and the advent of retrograde nerve fiber tracers have allowed for more confidence in the identification of efferent optic nerve fibers, including back to their point of origin.
Even with the accumulation of more modern anatomical and physiological evidence, some limitations and uncertainties about crucial details regarding the origins and role of a top-down, efferent system still exist. However, the summary of the evidence from earlier and more modern studies makes a compelling case in support of such a system in humans and non-human primates.
哺乳动物视神经中是否存在向视网膜投射的(有时称为“传出”或“离心”)轴突,这是一个长期存在争议的话题。随着视网膜的传出神经支配现已在啮齿动物和其他动物中得到广泛记录,反对意见正在逐渐减少。然而,人类和非人类灵长类动物中传出系统的存在及其功能尚未得到明确证实。这样一种反馈通路可能对视科学和眼科领域具有重要的功能、临床和实验意义。
在进行全面的文献综述(截至2016年7月的PubMed和谷歌学术搜索)之后,我们展示了关于一个能够影响灵长类动物视网膜生物电活动的系统的证据。
分别呈现了解剖学和生理学证据。组织学染色技术的改进以及逆行神经纤维示踪剂的出现,使得人们在识别传出视神经纤维(包括追溯到其起源点)时更有信心。
即使积累了更多现代的解剖学和生理学证据,关于自上而下的传出系统的起源和作用的关键细节仍存在一些局限性和不确定性。然而,早期和现代研究证据的总结有力地支持了人类和非人类灵长类动物中存在这样一个系统的观点。