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Synchronization phenomena in nephron–nephron interaction
Author(s) -
NielsHenrik HolsteinRathlou,
KayPong Yip,
Olga Sosnovtseva,
Erik Mosekilde
Publication year - 2001
Publication title -
chaos an interdisciplinary journal of nonlinear science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 113
eISSN - 1089-7682
pISSN - 1054-1500
DOI - 10.1063/1.1376398
Subject(s) - nephron , synchronization (alternating current) , phase (matter) , blood pressure , flow (mathematics) , blood flow , physics , medicine , kidney , mathematics , mechanics , topology (electrical circuits) , combinatorics , quantum mechanics
Experimental data for tubular pressure oscillations in rat kidneys are analyzed in order to examine the different types of synchronization that can arise between neighboring functional units. For rats with normal blood pressure, the individual unit (the nephron) typically exhibits regular oscillations in its tubular pressure and flow variations. For such rats, both in-phase and antiphase synchronization can be demonstrated in the experimental data. For spontaneously hypertensive rats, where the pressure variations in the individual nephrons are highly irregular, signs of chaotic phase and frequency synchronization can be observed. Accounting for a hemodynamic as well as for a vascular coupling between nephrons that share a common interlobular artery, we develop a mathematical model of the pressure and flow regulation in a pair of adjacent nephrons. We show that this model, for appropriate values of the parameters, can reproduce the different types of experimentally observed synchronization. (c) 2001 American Institute of Physics.

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