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Bulletin of Mathematical Biology|August 12, 2003
A region-based model framework for the rat urine concentrating mechanismAnita T Layton, Harold E Layton
Journal of Mathematical Biology|November 20, 2002
A numerical method for renal models that represent tubules with abrupt changes in membrane propertiesAnita T Layton, Harold E Layton
American Journal of Physiology. Renal Physiology|July 15, 2011
Countercurrent multiplication may not explain the axial osmolality gradient in the outer medulla of the rat kidneyAnita T Layton, Harold E Layton
Mathematical Biosciences|November 26, 2002
An efficient numerical method for distributed-loop models of the urine concentrating mechanismAnita T Layton, Harold E Layton
American Journal of Physiology. Renal Physiology|May 26, 2005
A region-based mathematical model of the urine concentrating mechanism in the rat outer medulla. I. Formulation and base-case resultsAnita T Layton, Harold E Layton
Annual Review of Physiology|November 20, 2013
Advances in understanding the urine-concentrating mechanismJeff M Sands, Harold E Layton
Plos Computational Biology|February 26, 2019
A computational model of epithelial solute and water transport along a human nephronAnita T Layton, Harold E Layton
Bulletin of Mathematical Biology|July 24, 2003
An inverse algorithm for a mathematical model of an avian urine concentrating mechanismM Marcano-Velázquez, Harold E Layton
Seminars in Nephrology|June 16, 2009
The physiology of urinary concentration: an updateJeff M Sands, Harold E Layton
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