Showing results (11-20 of 27) with videos related to

Sort By:
Pageof 3
Clinical & Experimental Ophthalmology|June 15, 2011
There is insufficient evidence to recommend lens extraction as a treatment for primary open-angle glaucoma: an evidence-based perspectiveMark J Walland, Rajul S Parikh, Ravi Thomas
Indian Journal of Ophthalmology|July 4, 2009
Aniridia associated with congenital aphakia and secondary glaucomaMayur Moreker, Rajul Parikh, Shefali R Parikh, et al.
Clinical & Experimental Ophthalmology|May 18, 2011
Enter the reverend: introduction to and application of Bayes' theorem in clinical ophthalmologyRavi Thomas, Kerrie Mengersen, Rajul S Parikh, et al.
Indian Journal of Ophthalmology|August 25, 2009
Clinical measurement and categorization of optic disc in glaucoma patientsHarsha B Laxmana Rao, G C Sekhar, Ganesh J Babu, et al.
Indian Journal of Ophthalmology|December 4, 2012
Evaluation of blotchy pigments in the anterior chamber angle as a sign of angle closureHarsha L Rao, Sachin C Mungale, Tukaram Kumbar, et al.
Indian Journal of Ophthalmology|June 19, 2021
Optic disc morphology in primary open-angle glaucoma versus primary angle-closure glaucoma in South IndiaRajul Parikh, Naris Kitnarong, Jost B Jonas, et al.
Investigative Ophthalmology & Visual Science|January 29, 2008
The LOXL1 gene variations are not associated with primary open-angle and primary angle-closure glaucomasSubhabrata Chakrabarti, Kollu Nageswara Rao, Inderjeet Kaur, et al.
Investigative Ophthalmology & Visual Science|December 31, 2005
Globally, CYP1B1 mutations in primary congenital glaucoma are strongly structured by geographic and haplotype backgroundsSubhabrata Chakrabarti, Kiranpreet Kaur, Inderjeet Kaur, et al.
Investigative Ophthalmology & Visual Science|May 14, 2010
Variations in NTF4, VAV2, and VAV3 genes are not involved with primary open-angle and primary angle-closure glaucomas in an indian populationKollu N Rao, Inderjeet Kaur, Rajul S Parikh, et al.
Pageof 3