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Experimental Eye Research|October 1, 1989
Properties of single potassium-selective ionic channels from the apical membrane of rabbit corneal endotheliumJ L Rae, J Dewey, K CooperThe American Journal of Physiology|July 1, 1991
Inwardly rectifying potassium current in mammalian lens epithelial cellsK Cooper, J L Rae, J DeweyThe Journal of Membrane Biology|March 1, 1990
Potassium channel in rabbit corneal endothelium activated by external anionsJ L Rae, J Dewey, K Cooper, et al.The Journal of Membrane Biology|September 1, 1990
Electrophysiology of cultured human lens epithelial cellsK Cooper, P Gates, J L Rae, et al.Experimental Eye Research|April 1, 1990
A non-selective cation channel in rabbit corneal endothelium activated by internal calcium and inhibited by internal ATPJ L Rae, J Dewey, K Cooper, et al.Current Eye Research|September 1, 1990
A maxi calcium-activated potassium channel from chick lens epitheliumJ L Rae, J Dewey, J S Rae, et al.Investigative Ophthalmology & Visual Science|September 1, 1990
Single potassium channels in corneal epitheliumJ L Rae, J Dewey, J S Rae, et al.Experimental Eye Research|June 1, 1990
New techniques for the study of lens electrophysiologyJ L Rae, K CooperCurrent Eye Research|May 1, 1995
A non-enzymatic method for lens decapsulation which leaves the epithelial cells attached to the fibersJ Dewey, C Bartling, J L RaeInvestigative Ophthalmology & Visual Science|February 1, 1992
The large-conductance potassium ion channel of rabbit corneal epithelium is blocked by quinidineJ L Rae, J Dewey, J S RaePageof 123