Methods of Studying Retinal Vessels in Health and Diseases

J Vis Exp. 2023 Feb 17:(192). doi: 10.3791/65008.

Abstract

Damsgaard, C., Lauridsen, H. Deep vascular imaging in the eye with flow-enhanced ultrasound. Journal of Visualized Experiments. (176), e62986 (2021). Macouzet-Romero, F. J., Ochoa-Máynez, G. A., Pérez-García, O., Pérez-Aragón, B. J., Lima-Gómez, V. Evaluation of capillary and other vessel contribution to macular perfusion density measured with optical coherence tomography angiography. Journal of Visualized Experiments. (180), e63033 (2022). Subirada, P. V. et al. Quantification of vascular parameters in whole mount retinas of mice with non-proliferative and proliferative retinopathies. Journal of Visualized Experiments. (181), e63126 (2022). Vaglienti, M. V., Subirada, P. V., Barcelona, P. F., Bonacci, G., Sanchez, M. C. Quantification of reactive oxygen species using 2',7'-dichlorofluorescein diacetate probe and flow-cytometry in Müller glial cells. Journal of Visualized Experiments. (183), e63337 (2022). Tomaszewsk, R., Rajpurohit, P., Cheng, M., Tawfik, A. Isolation of primary mouse retinal pigmented epithelium cells. Journal of Visualized Experiments. (189), e63543 (2022). Elmasry, K., Moustafa, M., Al-Shabrawey, M. Retinal explant of the adult mouse retina as an ex vivo model for studying retinal neurovascular diseases. Journal of Visualized Experiments. (190), e63966 (2022).

Publication types

  • Editorial

MeSH terms

  • Angiography
  • Animals
  • Ependymoglial Cells
  • Mice
  • Retina / diagnostic imaging
  • Retinal Diseases*
  • Retinal Vessels* / diagnostic imaging
  • Veins