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白化鼠视束核的方向选择受损。

Impaired Direction Selectivity in the Nucleus of the Optic Tract of Albino Mice.

机构信息

Department of Circuits, Structure & Function, Netherlands Institute for Neuroscience, Royal Netherlands Academy of Arts and Sciences, Amsterdam, the Netherlands.

Department of Molecular Visual Plasticity, Netherlands Institute for Neuroscience, Amsterdam, the Netherlands.

出版信息

Invest Ophthalmol Vis Sci. 2023 Aug 1;64(11):9. doi: 10.1167/iovs.64.11.9.

Abstract

PURPOSE

Human albinos have a low visual acuity. This is partially due to the presence of spontaneous erroneous eye movements called pendular nystagmus. This nystagmus is present in other albino vertebrates and has been hypothesized to be caused by aberrant wiring of retinal ganglion axons to the nucleus of the optic tract (NOT), a part of the accessory optic system involved in the optokinetic response to visual motion. The NOT in pigmented rodents is preferentially responsive to ipsiversive motion (i.e., motion in the contralateral visual field in the temporonasal direction). We compared the response to visual motion in the NOT of albino and pigmented mice to understand if motion coding and preference are impaired in the NOT of albino mice.

METHODS

We recorded neuronal spiking activity with Neuropixels probes in the visual cortex and NOT in C57BL/6JRj mice (pigmented) and DBA/1JRj mice with oculocutaneous albinism (albino).

RESULTS

We found that in pigmented mice, NOT is retinotopically organized, and neurons are direction tuned, whereas in albino mice, neuronal tuning is severely impaired. Neurons in the NOT of albino mice do not have a preference for ipsiversive movement. In contrast, neuronal tuning in visual cortex was preserved in albino mice and did not differ significantly from the tuning in pigmented mice.

CONCLUSIONS

We propose that excessive interhemispheric crossing of retinal projections in albinos may cause the disrupted left/right direction encoding we found in NOT. This, in turn, impairs the normal horizontal optokinetic reflex and leads to pendular albino nystagmus.

摘要

目的

人类白化病患者的视力较低。这部分是由于存在自发的错误眼球运动,称为摆动性眼球震颤。这种眼球震颤在其他白化脊椎动物中也存在,并被假设是由于视网膜神经节轴突到视束核(NOT)的异常布线引起的,NOT 是参与视觉运动的光运动反应的辅助光系统的一部分。NOT 在色素性啮齿动物中对同侧运动(即,在颞侧方向上的对侧视野中的运动)有优先反应。我们比较了白化和非白化小鼠 NOT 对视觉运动的反应,以了解白化小鼠 NOT 中的运动编码和偏好是否受损。

方法

我们使用 Neuropixels 探针在 C57BL/6JRj 小鼠(色素性)和具有眼皮肤白化病的 DBA/1JRj 白化小鼠的视觉皮层和 NOT 中记录神经元放电活动。

结果

我们发现,在色素性小鼠中,NOT 是视网膜组织的,神经元是方向调谐的,而在白化小鼠中,神经元调谐严重受损。白化小鼠 NOT 中的神经元对同侧运动没有偏好。相比之下,白化小鼠视觉皮层中的神经元调谐得到保留,与色素性小鼠的调谐没有显著差异。

结论

我们提出,白化病中视网膜投射的过度交叉可能导致我们在 NOT 中发现的左右方向编码中断。这反过来又会损害正常的水平光运动反射,并导致摆动性白化眼球震颤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd90/10411648/ac8be0bf164e/iovs-64-11-9-f001.jpg

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