Crime is inherent in our society and the routine activities of everyday life ensure that circumstances will be created that will facilitate criminal behavior. The very nature of society-the need to go out and work and interact with others-initiates processes and situations that will encourage some p
The fractal dimension of taxonomic systems
โ Scribed by Bruno Burlando
- Publisher
- Elsevier Science
- Year
- 1990
- Tongue
- English
- Weight
- 736 KB
- Volume
- 146
- Category
- Article
- ISSN
- 0022-5193
No coin nor oath required. For personal study only.
โฆ Synopsis
The hypothesis that biological diversity has a fractal geometry is tested through the examination of size-frequency distributions of taxa with different numbers of subtaxa. Data used derive from 44 checklists and catalogues of species concerning protists, fungi, plants and animals, and from three synoptic classifications of protists, plants and animals. Distributions give hyperbolic curves whose log-log plots are almost linear, with negative slopes. Long tails of distribution curves due to very large taxa call for skew variants of hyperbolic curves. The positive values of log-log regression line slopes correspond to the fractal dimensions D of the taxonomic assemblages, characterizing their diversity. Non-random occurrence of D values among groups suggests a relationship with true biologic diversity patterns, rather than an effect of taxonomic criteria. Differences in fractal dimension among the examined lists are discussed, the more relevant being the higher differentiation of marine groups with respect to continental ones. The fractal geometry of diversity is viewed as an evolutionary pattern possibly related to scaling evolutionary processes, suggested by the finding of hyperbolic trends at different taxonomic levels.
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