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The Annals of Otology, Rhinology, and Laryngology|June 4, 2004
State and federal regulations for hearingLouis W Welsh, John J WelshThe American Journal of Physiology|July 1, 1993
5'-Adenylylimidodiphosphate does not activate CFTR chloride channels in cell-free patches of membraneM R Carson, M J WelshEuropean Journal of Endocrinology|October 15, 2016
DIAGNOSIS OF ENDOCRINE DISEASE: How reliable are free thyroid and total T3 hormone assays?Kerry J Welsh, Steven J SoldinThe Journal of General Physiology|February 1, 1987
Neuroleptics antagonize a calcium-activated potassium channel in airway smooth muscleJ D McCann, M J WelshThe Biochemical Journal|December 8, 1998
Cell surface expression and biosynthesis of epithelial Na+ channelsL S Prince, M J WelshThe Journal of Biological Chemistry|July 13, 2000
Differences between cystic fibrosis transmembrane conductance regulator and HisP in the interaction with the adenine ring of ATPA L Berger, M J WelshThe Journal of Biological Chemistry|February 20, 1999
Cystic fibrosis-associated mutations at arginine 347 alter the pore architecture of CFTR. Evidence for disruption of a salt bridgeJ F Cotten, M J WelshJournal of Medicinal Chemistry|November 2, 2001
Three-dimensional quantitative structure-activity relationship (3D-QSAR) models for a novel class of piperazine-based stromelysin-1 (MMP-3) inhibitors: applying a "divide and conquer" strategyE Ambrose Amin, W J WelshThe American Journal of Physiology|September 1, 1980
Pathways of ion movement in the canine tracheal epitheliumM J Welsh, J H WiddicombeThe Journal of Biological Chemistry|November 5, 1997
Covalent modification of the regulatory domain irreversibly stimulates cystic fibrosis transmembrane conductance regulatorJ F Cotten, M J WelshPageof 333