Nganguia, H., Young, Y.-N., Layton, A., Hu, W.-F., & Lai, M.-C. (2014). Immersed Interface Method for Drop Electrohydrodynamic H13\textendash006.
Reference author: Anita Layton
First name
Anita
Last name
Layton
Moss, R., & Layton, A. (2014). Impacts of UT-A2 inhibition on urine composition: a mathematical model (1137.8) The FASEB Journal, 28, 1137\textendash8.
Fry, B., & Layton, A. (2014). Structural organization of the renal medulla has a significant impact on oxygen distribution (890.11) The FASEB Journal, 28, 890\textendash11.
Moss, R., & Layton, A. (2013). Modeling the effects of medullary blood flow regulation on pressure natriuresis The Federation of American Societies for Experimental Biology.
Sgouralis, I., & Layton, A. (2013). Nephrovascular interactions in a mathematical model of rat renal autoregulation The Federation of American Societies for Experimental Biology.
Layton, A., Edwards, A. elie, & Vallon, V. (2017). Modeling the Effects of Functional Adaptation to Reduction in Renal Mass The FASEB Journal, 31, 716\textendash2.
Layton, A., Vallon, V., & Edwards, A. elie. (2016). Effect of SGLT Inhibition on Medullary Oxygen Consumption: A Multi-Nephron Model of the Rat Kidney The FASEB Journal, 30, 740\textendash2.
Sgouralis, I., & Layton, A. (2016). Internephron Coupling Increases the Efficiency of Dynamic Autoregulation The FASEB Journal, 30, 739\textendash6.
Chen, Y., Edwards, A. elie, Sullivan, J., & Layton, A. (2016). Sex Differences in Hypertension: A Modeling Study The FASEB Journal, 30, 959\textendash1.
Baird, A., Braam, B., & Layton, A. (2015). Implications of Increased Renal Venous Pressure for Renal Hemodynamic and Reabsorptive Function Studied by a Mathematical Model of the Kidney The FASEB Journal, 29, 808\textendash19.
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