Measuring complexity in organisms and organizations

Author:

Rebout Nancy12ORCID,Lone Jean-Christophe1ORCID,De Marco Arianna23ORCID,Cozzolino Roberto3ORCID,Lemasson Alban4ORCID,Thierry Bernard1ORCID

Affiliation:

1. Physiologie de la Reproduction et des Comportements, CNRS, INRAE, Université de Tours, Nouzilly, France

2. Fondazione Ethoikos, Radicondoli, Italy

3. Parco Faunistico di Piano dell'Abatino, Poggio San Lorenzo, Italy

4. EthoS (Ethologie Animale et Humaine), Université de Rennes, Université de Normandie, CNRS, Rennes, France

Abstract

While there is no consensus about the definition of complexity, it is widely accepted that the ability to produce uncertainty is the most prominent characteristic of complex systems. We introduce new metrics that purport to quantify the complexity of living organisms and social organizations based on their levels of uncertainty. We consider three major dimensions regarding complexity: diversity based on the number of system elements and the number of categories of these elements; flexibility which bears upon variations in the elements; and combinability which refers to the patterns of connection between elements. These three dimensions are quantified using Shannon's uncertainty formula, and they can be integrated to provide a tripartite complexity index. We provide a calculation example that illustrates the use of these indices for comparing the complexity of different social systems. These indices distinguish themselves by a theoretical basis grounded on the amount of uncertainty, and the requirement that several aspects of the systems be accounted for to compare their degree of complexity. We expect that these new complexity indices will encourage research programmes aiming to compare the complexity levels of systems belonging to different realms.

Publisher

The Royal Society

Subject

Multidisciplinary

Reference59 articles.

1. Lamarck JB. 1809 Philosophie zoologique. Paris, France: Dentu.

2. Kauffman SA. 1993 The origins of order: self-organization and selection in evolution. New York, NY: Oxford University Press.

3. Maynard Smith J, Szathmáry E. 1995 The major transitions in evolution. Oxford, UK: Oxford University Press.

4. Metazoan complexity and evolution: is there a trend?;McShea DW;Evolution,1996

5. The hierarchical structure of organisms: a scale and documentation of a trend in the maximum

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