We address evolutionary dynamics and consider under which conditions the ecosystem interaction network allows punctuated equilibrium (i.e., alternation between hectic and quasi-stable phases). We focus on the links connecting various species and on the strength and sign of those links. For this study we consider the Tangled Nature model, which allows considerable flexibility and plasticity in the analysis of interspecies interactions. We find that it is necessary to have a proper balance of connectivity and interaction intensities so as to establish the kind of mutual cooperation and competition found in nature. It suggests evolutionary punctuated equilibrium as an emergent process, thus displaying features of complex systems. To explicitly demonstrate this fact we consider an extended form of thermodynamics, defining (for the present context) relevant out-of-equilibrium "collective" functions. We then show how to characterize the punctuated equilibrium through entropy-like and free energy-like quantities. Finally, from a close analogy to thermodynamic systems, we propose a protocol similar to simulated annealing. It is based on controlling the species' rate of mutation during the hectic periods, in this way enhancing the exploration of the genome space (similar to the known behavior of bacteria in stressful environments). This allows the system to more rapidly converge to long-duration quasi-stable phases.
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http://dx.doi.org/10.1016/j.jtbi.2016.10.008 | DOI Listing |
Plast Reconstr Surg
November 2024
Research and Innovation Hub, Innovation Aesthetics, London UK.
Introduction: The global aesthetic medicine industry is rapidly expanding, with conferences serving as crucial platforms for knowledge exchange and collaboration. However, concerns have emerged about the increasing prioritisation of commercial content over scientifically rigorous presentations. This study critically evaluates the balance between commercial and scientific content at aesthetic medicine conferences, utilising artificial intelligence (AI) tools to analyse the impact of industry sponsorship and live procedural demonstrations on educational value.
View Article and Find Full Text PDFComp Med
October 2024
1Department of Obstetrics and Gynecology, Mayo Clinic, Rochester, Minnesota.
The fetal sheep model has been widely used in fetal therapy research. However, there is a significant degree of variability among published normal values. Our study aimed to evaluate the literature available on normal values for hemodynamics, blood gases, and acid-base status in the sheep fetus and to determine the best possible estimation of such physiologic values.
View Article and Find Full Text PDFSoc Sci Med
August 2024
Institute of Health Policy, Management and Evaluation, Dalla Lana School of Public Health, University of Toronto, Canada.
There is a critical shortage of health professionals globally which is affecting the possibility of attaining universal health coverage. Developing countries in sub-Saharan Africa such as Ghana and Nigeria are disproportionately affected and the shortfall in health professionals is envisaged to worsen over the next decade. Countries have responded differently in addressing this shortage.
View Article and Find Full Text PDFPlants (Basel)
June 2024
Missouri Botanical Garden, 4344 Shaw Blvd., St. Louis, MI 63110, USA.
Fractal evolution is apparently effective in selectively preserving environmentally resilient traits for more than 80 million years in Streptotrichaceae (Bryophyta). An analysis simulated maximum destruction of ancestral traits in that large lineage. The constraints enforced were the preservation of newest ancestral traits, and all immediate descendant species obtained different new traits.
View Article and Find Full Text PDFJ Chem Phys
May 2024
Laboratoire de Physique de la Matière Condensée, CNRS - Ecole Polytechnique, IP Paris, 91120 Paris, Palaiseau, France.
The escape dynamics of sticky particles from textured surfaces is poorly understood despite importance to various scientific and technological domains. In this work, we address this challenge by investigating the escape time of adsorbates from prevalent surface topographies, including holes/pits, pillars, and grooves. Analytical expressions for the probability density function and the mean of the escape time are derived.
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