Effect of tubular inhomogeneities on feedback-mediated dynamics of a model of a thick ascending limb
about
Mathematical modeling of renal hemodynamics in physiology and pathophysiology.Bifurcation study of blood flow control in the kidney.Modeling the effects of positive and negative feedback in kidney blood flow controlModeling Transport and Flow Regulatory Mechanisms of the KidneyMathematical modeling of kidney transport.Tubular fluid flow and distal NaCl delivery mediated by tubuloglomerular feedback in the rat kidney.Advancement in integrated models of renal function: closing the gap between simulation and real life.
P2860
Q35589540-304863C7-CC34-4953-BC5C-500BCCB5995DQ36622375-31FA3BB3-9D92-4134-909C-8AA51925A86EQ36880107-0F9163B9-A445-4633-BFAA-684A2BA9DDFBQ37063839-06572710-D121-4F26-9BFB-31773C5A9090Q37100813-D8526602-54D6-4C57-98C9-36C2125F1FF6Q37131821-221F8530-E959-45A9-B3FE-87DB0161E000Q44603759-F80D3DAC-876B-43C9-BFA9-18CEDD937B3B
P2860
Effect of tubular inhomogeneities on feedback-mediated dynamics of a model of a thick ascending limb
description
2012 nî lūn-bûn
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2012年の論文
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2012年学术文章
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name
Effect of tubular inhomogeneit ...... odel of a thick ascending limb
@en
type
label
Effect of tubular inhomogeneit ...... odel of a thick ascending limb
@en
prefLabel
Effect of tubular inhomogeneit ...... odel of a thick ascending limb
@en
P356
P1476
Effect of tubular inhomogeneit ...... odel of a thick ascending limb
@en
P2093
Anita T Layton
Hwayeon Ryu
P304
P356
10.1093/IMAMMB/DQS020
P577
2012-04-17T00:00:00Z