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We began analyzing https://link.springer.com/article/10.1007/BF02460618, but it redirected us to https://link.springer.com/article/10.1007/BF02460618. The analysis below is for the second page.

Title[redir]:
Dynamical behaviour of biological regulatory networks—I. Biological role of feedback loops and practical use of the concept of the loop-characteristic state | Bulletin of Mathematical Biology
Description:
In the field of biological regulation, models dictated by expreimental work are usually complex networks comprising intertwined feedback loops. In this paper the biological roles of individual positive loops (multistationarity, differentiation) and negative loops (homeostasis, with or without oscillations, buffering of gene dosage effect) are discussed. The relationship between feedback loops and steady states is then clarified, and the problem: “How can one conveniently disentangle complex networks?” is then considered. Initiated long ago, logical descriptions have been generalized from various viewpoints; these developments are briefly discussed. The recent concept of the loop-characteristic state, defined as the logical state located at the level of the thresholds involved in the loop, together with its application, are then presented. Biological applications are also discussed.

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Keywords {🔍}

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Topics {✒️}

loop-characteristic state published loop-characteristic state month download article/chapter piece-linear differential equations logical state located chemical reaction systems leveraging network structure complex regulatory systems biological regulatory networks gene dosage effect logical description privacy choices/manage cookies regulatory networks related subjects nonlinear chemical kinetics coli k12—revisited full article pdf high-feedback loops mathematical biology aims check access instant access arginine biosynthesis ine genetic control circuits positive feedback circuits immunological control loops continuous description logical identification european economic area initiated long ago editions du cnrs pereira da silva rue des chevaux rhode saint genèse bd du triomphe positive real eigenvalues individual positive loops immune response model gene expression accepting optional cookies harvard university press regulatory circuits discrete mapping approach article bulletin conditions privacy policy main content log dynamical system article thomas logical analysis google scholar journal finder publish

Questions {❓}

  • The relationship between feedback loops and steady states is then clarified, and the problem: “How can one conveniently disentangle complex networks?

Schema {🗺️}

WebPage:
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         headline:Dynamical behaviour of biological regulatory networks—I. Biological role of feedback loops and practical use of the concept of the loop-characteristic state
         description:In the field of biological regulation, models dictated by expreimental work are usually complex networks comprising intertwined feedback loops. In this paper the biological roles of individual positive loops (multistationarity, differentiation) and negative loops (homeostasis, with or without oscillations, buffering of gene dosage effect) are discussed. The relationship between feedback loops and steady states is then clarified, and the problem: “How can one conveniently disentangle complex networks?” is then considered. Initiated long ago, logical descriptions have been generalized from various viewpoints; these developments are briefly discussed. The recent concept of the loop-characteristic state, defined as the logical state located at the level of the thresholds involved in the loop, together with its application, are then presented. Biological applications are also discussed.
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      headline:Dynamical behaviour of biological regulatory networks—I. Biological role of feedback loops and practical use of the concept of the loop-characteristic state
      description:In the field of biological regulation, models dictated by expreimental work are usually complex networks comprising intertwined feedback loops. In this paper the biological roles of individual positive loops (multistationarity, differentiation) and negative loops (homeostasis, with or without oscillations, buffering of gene dosage effect) are discussed. The relationship between feedback loops and steady states is then clarified, and the problem: “How can one conveniently disentangle complex networks?” is then considered. Initiated long ago, logical descriptions have been generalized from various viewpoints; these developments are briefly discussed. The recent concept of the loop-characteristic state, defined as the logical state located at the level of the thresholds involved in the loop, together with its application, are then presented. Biological applications are also discussed.
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External Links {🔗}(111)

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