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Lens and Eye Toxicity Research|January 1, 1989
Esthesiometric evaluations of corneal anesthesia and prolonged analgesia in rabbitsJ R Trevithick, T Dzialoszynski, M Hirst, et al.Biochemistry and Molecular Biology International|September 26, 1997
Antioxidants and cataract: (cataract induction in space environment and application to terrestrial aging cataract)V Bantseev, R Bhardwaj, W Rathbun, et al.Current Eye Research|June 1, 1997
Cysteine and ascorbate loss in the diabetic rat lens prior to hydration changesK P Mitton, T Dzialoszynski, S E Sanford, et al.Mitochondrion|August 27, 2005
Optical function and mitochondrial metabolic properties in damage and recovery of bovine lens after in vitro carbonyl cyanide m-chlorophenylhydrazone treatmentV Bantseev, A P Cullen, J R Trevithick, et al.Experimental Eye Research|July 1, 1983
Modeling cortical cataractogenesis. V. Steroid cataracts induced by solumedrol partially prevented by vitamin E in vitroM O Creighton, M Sanwal, P J Stewart-DeHaan, et al.Current Eye Research|November 7, 1999
Mitochondria of rat lenses: distribution near and at the suturesV L Bantseev, K L Herbert, J R Trevithick, et al.Experimental Eye Research|May 1, 1983
Radiation cataract formation diminished by vitamin E in rat lenses in vitroW M Ross, M O Creighton, W R Inch, et al.Molecular Vision|November 16, 2016
Heat shock protein concentration and clarity of porcine lenses incubated at elevated temperaturesT M Dzialoszynski, K J Milne, J R Trevithick, et al.Proceedings of the National Academy of Sciences of the United States of America|March 15, 2000
Oligomerization of serotonin transporter and its functional consequencesF Kilic, G RudnickLens and Eye Toxicity Research|January 1, 1989
Modelling cortical cataractogenesis. X. Evaluation of lens optical function by computer based image analysis using in vitro rat lens elevated glucose modelK P Mitton, T Dzialoszynski, J Weerheim, et al.Pageof 7