Dynamic Behavior Analysis of the Glomerulo-Tubular Balance Mediated by the Efferent Blood Viscosity
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Publisher
Springer Berlin Heidelberg
Link
http://link.springer.com/content/pdf/10.1007/978-3-642-33914-1_36
Reference9 articles.
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3. Daz-Sylvester, P., Mac Laughlin, M., Amorena, C.: Peritubular fluid viscosity modulates H1 flux in proximal tubules through NO release. Am. J. Physiol. Renal Physiol. 280, F239–F243 (2001)
4. Ditlevsen, S., Yip, K.P., Holstein-Rathlou, N.H.: Parameter estimation in a stochastic model of the tubuloglomerular feedback mechanism in a rat nephron. Math. Biosci. 194, 49–69 (2005)
5. Ditlevsen S., Yip K.P., Marsch D., Holstein-Rathlou N.H.: Parameter estimation of feedback gain in a stochastic model of renal hemodynamics: differences between spontaneously hypertensive and Sprague-Dawley rats. Am. J. Physiol. Renal Physiol. 292, F607–F616 (2007)
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