Publications

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[ Author(Desc)] Title Type Year
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Sgouralis, I. , Evans, R. , Gardiner, B. , & Layton, A. . (2014). Contribution of hemodilution to renal hypoxia following cardiopulmonary bypass surgery (890.12). The FASEB Journal, 28, 890–12. The Federation of American Societies for Experimental Biology.
Sgouralis, I. , Evans, R. , Gardiner, B. , & Layton, A. . (2014). Contribution of hemodilution to renal hypoxia following cardiopulmonary bypass surgery (890.12). The FASEB Journal, 28, 890–12. The Federation of American Societies for Experimental Biology.
Sgouralis, I. , & Layton, A. T. . (2014). Theoretical assessment of renal autoregulatory mechanisms. American Journal of Physiology-Renal Physiology, 306, F1357–F1371. American Physiological Society Bethesda, MD.
Sgouralis, I. , & Layton, A. . (2013). Nephrovascular interactions in a mathematical model of rat renal autoregulation. The Federation of American Societies for Experimental Biology.
Sgouralis, I. , & Layton, A. . (2013). Nephrovascular interactions in a mathematical model of rat renal autoregulation. Federation of American Societies for Experimental Biology.
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.
Sgouralis, I. , & Layton, A. T. . (2012). Interactions between Tubuloglomerular Feedback and the Myogenic Mechanism of the Afferent Arteriole. Federation of American Societies for Experimental Biology.
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.
Silva, A. L. F. Lima E. , Silveira-Neto, A. , & Damasceno, J. J. R. . (2003). Numerical simulation of two-dimensional flows over a circular cylinder using the immersed boundary method. Journal of Computational Physics, 189, 351–370. Academic Press.
Swapnasrita, S. , Carlier, A. , & Layton, A. . (2021). Sex-Specific Computational Models of Kidney Function in Human Patients with Diabetes. bioRxiv. Cold Spring Harbor Laboratory.
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S Thomas, R. , Layton, A. T. , Layton, H. E. , & Moore, L. C. . (2006). Kidney modeling: Status and perspectives. Proceedings of the IEEE, 94, 740–752. IEEE.
S Thomas, R. , Layton, H. E. , Layton, A. T. , Harris, P. , Lonie, A. , & Moore, L. C. . (2005). Towards a web resource for quantitative renal physiology. In Proceedings of the Physiological Society (Vol. 565, p. 98P).
S Thomas, R. , Layton, H. E. , Layton, A. T. , Harris, P. , Lonie, A. , & Moore, L. C. . (2005). Towards a web resource for quantitative renal physiology. In .
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Versypt, A. N. Ford, Makrides, E. , Arciero, J. C. , Ellwein, L. , & Layton, A. T. . (2015). Bifurcation study of blood flow control in the kidney. Mathematical biosciences, 263, 169–179. Elsevier.
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Wang, J. , & Layton, A. . (2010). New numerical methods for Burgers' equation based on semi-Lagrangian and modified equation approaches. Applied numerical mathematics, 60, 645–657. North-Holland.
Wang, J. , & Layton, A. . (2009). Numerical simulations of fiber sedimentation in Navier-Stokes flows. Communications in Computational Physics, 5, 61.
Wei, N. , Gumz, M. L. , & Layton, A. T. . (2018). Predicted effect of circadian clock modulation of NHE3 of a proximal tubule cell on sodium transport. American Journal of Physiology-Renal Physiology, 315, F665–F676. American Physiological Society Bethesda, MD.
Wei, N. , & Layton, A. T. . (2018). Theoretical assessment of the Ca 2+ oscillations in the afferent arteriole smooth muscle cell of the rat kidney. International Journal of Biomathematics, 11, 1850043. World Scientific Publishing Company.
Witelski, T. P. , Ambrose, D. M. , Bertozzi, A. , Layton, A. T. , Li, Z. , & Minion, M. L. . (2012). PREFACE: SPECIAL ISSUE ON FLUID DYNAMICS, ANALYSIS AND NUMERICS. AMER INST MATHEMATICAL SCIENCES PO BOX 2604, SPRINGFIELD, MO 65801-2604 USA.
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Xie, L. , Layton, A. T. , Wang, N. , Larson, P. E. Z. , Zhang, J. L. , Lee, V. S. , Liu, C. , et al. (2016). Dynamic contrast-enhanced quantitative susceptibility mapping with ultrashort echo time MRI for evaluating renal function. American Journal of Physiology-Renal Physiology, 310, F174–F182. American Physiological Society Bethesda, MD.

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