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Journal of Comparative Physiology. B, Biochemical, Systemic, and Environmental Physiology|October 2, 2002
Divalent cations reduce the electrogenic transport of monovalent cations across rumen epitheliumS Leonhard-MarekMagnesium Research|July 29, 1999
Do forestomach epithelia exhibit a Mg2+/2H(+)-exchanger?S Leonhard-MarekComparative Biochemistry and Physiology. Part A, Physiology|November 20, 1997
Electro- and transportphysiological changes in pig proximal colon during parasitic infectionS Leonhard-Marek, A DaugschiesJournal of Dairy Science|July 27, 2010
Potassium and insulin affect the contractility of abomasal smooth muscleG Türck, S Leonhard-MarekJournal of Dairy Science|August 28, 2012
Effects of β-hydroxybutyrate and different calcium and potassium concentrations on the membrane potential and motility of abomasal smooth muscle cells in cattleL Zurr, S Leonhard-MarekThe American Journal of Physiology|December 1, 1996
Effects of potassium on magnesium transport across rumen epitheliumS Leonhard-Marek, H MartensAmerican Journal of Physiology. Gastrointestinal and Liver Physiology|February 18, 2006
Effect of chloride on pH microclimate and electrogenic Na+ absorption across the rumen epithelium of goat and sheepS Leonhard-Marek, G Breves, R BuscheAnimal : an International Journal of Animal Bioscience|March 27, 2012
Transport of cations and anions across forestomach epithelia: conclusions from in vitro studiesS Leonhard-Marek, F Stumpff, H MartensExperimental Physiology|May 6, 1998
Effects of short chain fatty acids and carbon dioxide on magnesium transport across sheep rumen epitheliumS Leonhard-Marek, G Gäbel, H MartensJournal of Dairy Science|February 14, 2007
Chloride, gluconate, sulfate, and short-chain fatty acids affect calcium flux rates across the sheep forestomach epitheliumS Leonhard-Marek, G Becker, G Breves, et al.Pageof 2