Publications

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Author Title [ Type(Asc)] Year
Journal Article
Ryu, H. , & Layton, A. T. . (2013). Effect of tubular inhomogeneities on feedback-mediated dynamics of a model of a thick ascending limb. Mathematical Medicine and Biology: a Journal of the IMA, 30, 191–212. Oxford University Press.
Sgouralis, I. , & Layton, A. T. . (2013). Control and modulation of fluid flow in the rat kidney. Bulletin of mathematical biology, 75, 2551–2574. Springer US.
Nieves-González, A. , Clausen, C. , Layton, A. T. , Layton, H. E. , & Moore, L. C. . (2013). Transport efficiency and workload distribution in a mathematical model of the thick ascending limb. American Journal of Physiology-Renal Physiology, 304, F653–F664. American Physiological Society Bethesda, MD.
Leiderman, K. , Bouzarth, E. L. , Cortez, R. , & Layton, A. T. . (2013). A regularization method for the numerical solution of periodic Stokes flow. Journal of Computational Physics, 236, 187–202. Elsevier.
Ryu, H. , Layton, A. T. , Tubuloglomerular, D. NaCl Deliv, & others, . (2012). HWAYEON RYU. Biomed Eng, 28, 369–380.
Li, Y. , & Layton, A. T. . (2012). Accurate computation of Stokes flow driven by an open immersed interface. Journal of Computational Physics, 231, 5195–5215. Elsevier.
Layton, A. T. . (2012). Modeling transport and flow regulatory mechanisms of the kidney. International Scholarly Research Notices, 2012. Hindawi.
Layton, A. T. , Moore, L. C. , & Layton, H. E. . (2012). Signal transduction in a compliant thick ascending limb. American Journal of Physiology-Renal Physiology, 302, F1188–F1202. American Physiological Society Bethesda, MD.
Layton, A. T. , & J Beale, T. . (2012). A partially implicit hybrid method for computing interface motion in Stokes flow. Discrete Contin. Dyn. Syst. Ser. B, 27, 1139–1153.
Edwards, A. , & Layton, A. T. . (2012). Impact of nitric oxide-mediated vasodilation on outer medullary NaCl transport and oxygenation. American Journal of Physiology-Renal Physiology, 303, F907–F917. American Physiological Society Bethesda, MD.
Layton, A. T. , Pham, P. , & Ryu, H. . (2012). Signal transduction in a compliant short loop of Henle. International journal for numerical methods in biomedical engineering, 28, 369–383. John Wiley & Sons, Ltd Chichester, UK.
Layton, A. T. , Gilbert, R. L. , & Pannabecker, T. L. . (2012). Isolated interstitial nodal spaces may facilitate preferential solute and fluid mixing in the rat renal inner medulla. American Journal of Physiology-Renal Physiology, 302, F830–F839. American Physiological Society Bethesda, MD.
Layton, A. T. , Dantzler, W. H. , & Pannabecker, T. L. . (2012). Urine concentrating mechanism: impact of vascular and tubular architecture and a proposed descending limb urea-Na+ cotransporter. American Journal of Physiology-Renal Physiology, 302, F591–F605. American Physiological Society Bethesda, MD.
Sgouralis, I. , & Layton, A. T. . (2012). Autoregulation and conduction of vasomotor responses in a mathematical model of the rat afferent arteriole. American Journal of Physiology-Renal Physiology, 303, F229–F239. American Physiological Society Bethesda, MD.
Savage, N. S. , Layton, A. T. , & Lew, D. J. . (2012). Mechanistic mathematical model of polarity in yeast. Molecular biology of the cell, 23, 1998–2013. The American Society for Cell Biology.
Hou, G. , Wang, J. , & Layton, A. . (2012). Numerical methods for fluid-structure interaction—a review. Communications in Computational Physics, 12, 337–377. Cambridge University Press.
Dantzler, W. H. , Pannabecker, T. L. , Layton, A. T. , & Layton, H. E. . (2011). Urine concentrating mechanism in the inner medulla of the mammalian kidney: role of three-dimensional architecture. Acta physiologica, 202, 361–378. Blackwell Publishing Ltd Oxford, UK.
Layton, A. T. , Bowen, M. , Wen, A. , & Layton, H. E. . (2011). Feedback-mediated dynamics in a model of coupled nephrons with compliant thick ascending limbs. Mathematical biosciences, 230, 115–127. Elsevier.
Bouzarth, E. L. , Layton, A. T. , & Young, Y. - N. . (2011). Modeling a semi-flexible filament in cellular Stokes flow using regularized Stokeslets. International Journal for Numerical Methods in Biomedical Engineering, 27, 2021–2034. John Wiley & Sons, Ltd Chichester, UK.
Edwards, A. , & Layton, A. T. . (2011). Modulation of outer medullary NaCl transport and oxygenation by nitric oxide and superoxide. American Journal of Physiology-Renal Physiology, 301, F979–F996. American Physiological Society Bethesda, MD.

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