Abstract
AbstractThe laboratory mouse has provided tremendous insight to the underpinnings of mammalian central nervous system physiology. In recent years, it has become possible to image single neurons, glia and vascular cells in vivo by using head-fixed preparations combined with cranial windows to study local networks of activity in the living brain. Such approaches have also succeeded without the use of general anesthesia providing insights to the natural behaviors of the central nervous system. However, the same has not yet been developed for the eye, which is constantly in motion. Here we characterize a novel head-fixed preparation that enables high-resolution adaptive optics retinal imaging at the single-cell level in awake-behaving mice. We reveal three new functional attributes of the normal eye that are overlooked by anesthesia: 1) High-frequency, low-amplitude eye motion of the mouse that is only present in the awake state 2) Single-cell blood flow in the mouse retina is reduced under anesthesia and 3) Mouse retinae thicken in response to ketamine/xylazine anesthesia. Here we show key benefits of the awake-behaving preparation that enables study of retinal physiology without anesthesia to study the normal retinal physiology in the mouse.
Funder
U.S. Department of Health & Human Services | National Institutes of Health
National Science Foundation
Publisher
Springer Science and Business Media LLC
Subject
General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)
Reference48 articles.
1. Remtulla, S. & Hallett, P. E. A schematic eye for the mouse, and comparisons with the rat. Vis. Res. 25, 21–31 (1985).
2. Nair, G. et al. Effects of common anesthetics on eye movement and electroretinogram. Doc. Ophthalmol. Adv. Ophthalmol. 122, 163–176 (2011).
3. Hawes, N. L., Smith, R. S., Chang, B., Davisson, M. & Heckenlively, J. R. Mouse fundus photography and angiography: a catalogue of nor- mal and mutant phenotypes. Mol. Vis. 5, 22 (1999).
4. Paques, M. et al. High resolution fundus imaging by confocal scanning laser ophthalmoscopy in the mouse. Vis. Res. 46, 1336–1345 (2006).
5. Vinck, M., Batista-Brito, R., Knoblich, U. & Cardin, J. A. Arousal and locomotion make distinct contributions to cortical activity patterns and visual encoding. Neuron 86, 740–754 (2015).
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