Fundamental and State-of-the-Art Technologies In Retinal Studies and Disease Repair

J Vis Exp. 2023 Mar 3:(193). doi: 10.3791/65003.

Abstract

Ma, Y., Li., T. Monitoring dynamic growth of retinal vessels in oxygen-induced retinopathy mouse model. Journal of Visualized Experiments. (170), e62410 (2021). Guan, Y., Xie, B. Zhong, X. Retinal organoid induction system for derivation of 3D retinal tissues from human pluripotent stem cells. Journal of Visualized Experiments. (170), e62435 (2021). Rose, K., Lokappa, S. Chen, J. Two peeling methods for the isolation of photoreceptor cell compartments in the mouse retina for protein analysis. Journal of Visualized Experiments. (178), e62977 (2021). Ye., Q. et al. In vivo methods to assess retinal ganglion cell and optic nerve function and structure in large animals. Journal of Visualized Experiments. (180), e62879 (2022). Abbas, F., Vinberg, F., Becker, S. Optimizing the setup and conditions for ex vivo electroretinogram to study retina function in small and large eyes. Journal of Visualized Experiments. (184), e62763 (2022). Okan, I., Ahmadian, M., Tutuncu, Y., Altay, H., Agca, C. Digital droplet PCR method for the quantification of AAV transduction efficiency in murine retina. Journal of Visualized Experiments. (178), e63038 (2021).

Publication types

  • Video-Audio Media
  • Editorial

MeSH terms

  • Animals
  • Electroretinography
  • Humans
  • Mice
  • Retina* / surgery
  • Retinal Diseases*
  • Retinal Ganglion Cells
  • Retinal Vessels