KSim - BIBLIOGRAPHY
This is not an exhaustive bibliography, just a list of the few references cited in this website. For a complete reference list up to 1992 and a detailed account of
the development of medullary models, see:
Stephenson, JL. 1992. Urinary concentration and dilution : models. IN:
"Handbook of Physiology - Renal Physiology", sect.8, vol.2, ch.30,
1349-1408.
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Chon, KH, Holstein-Rathlou, NH, Marsh, DJ. Nonlinear analysis of
renal autoregulation in rats using principal dynamic modes. Ann Biomed
Eng. 27(1), 23-31, 1999
- Edwards, A,
Pallone, TL. A multiunit model of solute and water removal by inner
medullary vasa-recta. American Journal of Physiology - Heart &
Circulatory Physiology. 43(4), H1202-H1210, 1998
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Hargitay,
B, Kuhn, W. 1951. Das
Multiplikationsprinzip als Grundlage der Harnkonzentrierung in der
Niere. Z. Elektrochem. 55, 539-558
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Hervy, S. and S. R. Thomas (2003). "Inner medullary lactate production and urine-concentrating mechanism: a flat medullary model." Am J Physiol Renal Physiol 284(1): F65-81.
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Holstein-Rathlou,
NH, Marsh, DJ. A dynamic model of renal blood flow autoregulation.
Bull Math Biol. 56(3), 411-29, 1994
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Jamison, RL,
Kriz, W. 1982. Urinary concentrating mechanism: structure and
function. New York : Oxford university Press
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Jen, JF, Stephenson, JL. Externally driven countercurrent multiplication
in a mathematical model of the urinary concentrating mechanism of the
renal inner medulla. Bulletin of Mathematical Biology. 56,
491-514,1994
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Knepper, M. A., G. M. Saidel, V. C. Hascall and T. Dwyer, "Concentration of solutes in the renal inner medulla: interstitial hyaluronan as a mechano-osmotic transducer." Am J Physiol Renal Physiol 284(3): F433-446. 2003
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Kokko, JP,
Rector, F. 1972. Countercurrent multiplication system without
active transport in inner medulla. Kidney Int. 2 ,214-233
- Kuhn,
W, Ramel, A. Aktiver
Salztransport als möglicher Einzeleffekt bei der Harnkonzentrierung
in der Niere. Helvetica
Chimica Acta. 42, 628-660. 1959
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Layton, A. T., T. L. Pannabecker, W. H. Dantzler and H. E. Layton (2004). "Two modes for concentrating urine in rat inner medulla." Am J Physiol Renal Physiol.
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Lemley,
KV, Kriz, W. : The histotopography of the urinary concentrating
process. Kidney International. 31,538-548,1987
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Moore,
LC, Marsh, DJ. 1980.How descending limb of Henle's loop permeability
affects hypertonic urine formation. American Journal of Physiology Renal 239 F57-F71
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Niesel,
W, Röskenbleck, H. Möglichkeiten der Konzentrierung von Stoffen in
biologischen Gegenstromsystemen. Pflügers Arch. 276, 555-567.
1963
- Pallone, TL.
Renal vasa-recta - passive filters or active participants. News in
Physiological Sciences. 11, 191-192, 1996
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Pannabecker, T. L., D. E. Abbott and W. H. Dantzler (2004). "Three-dimensional functional reconstruction of inner medullary thin limbs of Henle's loop." Am J Physiol Renal Physiol 286(1): F38-45.
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Röskenbleck,
H, Niesel, W. Gekoppelte Gegenstromsystemen als Modell der
konzentrierenden Niere. Pflügers Arch. 277, 316-324. 1963
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Ruiz-Guinazu, A., G. Pehling, C. Rumrich and K. J. Ullrich (1961). "Glucose- und Milchsäurekonzentration an der Spitze des vasculären Gegenstromsystems im Nierenmark." Pflügers Archives 274: 311-317.
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Stephenson,
JL. 1972. Concentration of urine in a central core model of the
renal counter flow system. Kidney Int. 2 ,85-94
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Stephenson, JL,
Tewarson, RP, Mejia, R. 1974. Quantitative analysis of mass and
energy balance in non-ideal models of the renal counterflow system.
Proceedings of the National Academy of Sciences USA. 71, 1618-1622
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Tewarson,
RP, Stephenson, JL, Garcia, M, Zhang, Y. 1985. On the solution of
equations for renal counterflow models. Comp.Bol.Med. 15(5), 287-295
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Thomas,
SR. Effect of varying salt and urea permeabilities along descending
limbs of Henle in a model of the renal medullary urine concentrating
mechanism. Bulletin of Mathematical Biology. 53. (6).
825-843. 1991
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Thomas,
SR. Cycles and separations in a model of the renal medulla. American
Journal of Physiology - Renal 275:
F671-F690,1998
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Thomas, S. R. (2000). "Inner medullary lactate production and accumulation: A vasa recta model." American Journal of Physiology Renal 279: F468-F481.
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Wang,
X, Thomas, SR., A.S. Wexler. Outer
medullary anatomy and the urine concentrating mechanism. American
Journal of Physiology - Renal 274:
F413-F424. 1998
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Wexler,
AS, Kalaba, RE, Marsh, DJ. Three-dimensional anatomy and renal
concentrating mechanism. I. Modeling results. American Journal of
Physiology Renal 260: F368-F383,1991
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