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Journal of Mathematical Biology|January 1, 1993
Non-locality in biological systems results from hierarchy. Application to the nervous systemG A ChauvetJournal of Mathematical Biology|January 1, 1993
An n-level field theory of biological neural networksG A ChauvetMathematical Biosciences|March 1, 1995
On associative motor learning by the cerebellar cortex: from Purkinje unit to network with variational learning rulesG A ChauvetPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 29, 1993
Hierarchical functional organization of formal biological systems: a dynamical approach. II. The concept of non-symmetry leads to a criterion of evolution deduced from an optimum principle of the (O-FBS) sub-systemG A ChauvetPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 29, 1993
Hierarchical functional organization of formal biological systems: a dynamical approach. III. The concept of non-locality leads to a field theory describing the dynamics at each level of organization of the (D-FBS) sub-systemG A ChauvetPhilosophical Transactions of the Royal Society of London. Series B, Biological Sciences|March 29, 1993
Hierarchical functional organization of formal biological systems: a dynamical approach. I. The increase of complexity by self-association increases the domain of stability of a biological systemG A ChauvetNeural Networks : the Official Journal of the International Neural Network Society|March 29, 2003
Purkinje local circuits with delays: mathematical conditions of stability for learning and retrievalP Chauvet, G A. ChauvetMathematical Biosciences|March 6, 1999
On the role of anatomy in learning by the cerebellar cortexB Daya, G A ChauvetComptes Rendus De L'Academie Des Sciences. Serie III, Sciences De La Vie|May 1, 1995
On the functional organization in a biological structure: the example of enzyme organizationG A Chauvet, R CostalatMathematical Biosciences|January 20, 1998
An algorithmic method for determining the kinetic system of receptor-channel complexesJ M Chrétien, G A ChauvetPageof 2