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Experimental Eye Research|March 1, 1983
The Emory mouse cataract: loss of soluble protein, glutathione, protein sulfhydryl and other changesJ F Kuck, K D KuckCurrent Eye Research|March 1, 1984
The Emory mouse cataract: accumulation of free leucine and incorporation into protein by cataractous and clear lensesJ F Kuck, K D KuckJournal of Ocular Pharmacology|January 1, 1988
The Emory mouse cataract: the effects on cataractogenesis of alpha-tocopherol, penicillamine, triethylenetetramine, and mercaptopropionylglycineJ F Kuck, K D KuckOphthalmic Research|January 1, 1990
Alterations of urea-insoluble membrane fraction, MP26, of Emory mouse lenses in aging and cataractogenesisW K Lo, J F KuckCurrent Eye Research|March 1, 1987
Alterations in fiber cell membranes of Emory mouse cataract: a morphologic studyW K Lo, J F KuckLens and Eye Toxicity Research|January 1, 1989
The Emory mouse cataract: increased accumulation of calcium during cataractogenesisJ F Kuck, K D KuckExperimental Eye Research|February 1, 1994
Actin filament bundles are associated with fiber gap junctions in the primate lensW K Lo, A Mills, J F KuckCurrent Eye Research|January 1, 1981
The Emory mouse cataract: an animal model for human senile cataractJ F Kuck, T Kuwabara, K D KuckCurrent Eye Research|December 1, 1984
The Emory mouse cataract: changes in the beta and gamma-crystallins during aging and cataractogenesis as revealed by isoelectric focusing of the native soluble proteinsB C Barron, J F Kuck, K D KuckCurrent Eye Research|March 1, 1986
Glutathione metabolism in lenses of Emory and cataract-resistant mice: activity of five enzymesW B Rathbun, J F Kuck, K D KuckPageof 19