Nonequilibrium irreversible thermodynamics constitute a meaningful point of view suitable to explore life with a rich paradigm. This analytical framework can be used to span the gap from molecular processes to plant function and shows great promise to create a holistic description of life. Since living organisms dissipate energy, exchange entropy and matter with their environment, they can be assimilated to dissipative structures. This concept inherited from nonequilibrium thermodynamics has four properties which defines a scale independent framework suitable to provide a simpler and more comprehensive view of the highly complex plant biology. According to this approach, a biological function is modeled as a cascade of dissipative structure...
An overall synthesis of biology and non-equilibrium thermodynamics remains a challenge at the interf...
Today it is possible to finally go beyond the limits of the analytical paradigm by enriching it with...
All organisms depend on a supply of energetic resources to power behavior and the irreversible entro...
While it is clear that thermodynamics plays a nontrivial role in biological processes, exactly how t...
The importance of the second law of thermodynamics, already called the most metaphysical of all laws...
The purpose of this review article is to present some of the recent contributions that show the use ...
The causal element of biological evolution and development can be understood in terms of a potential...
The First Principle of Thermodynamics is concerned with conservation, the Second Principle with evol...
Soil-plant systems exchange both energy and matter with their surroundings and are consequently open...
Living cells represent open, nonequilibrium, self organizing, and dissipative systems maintained wit...
Living organisms are open dissipative thermodynamic systems that rely on mechanothermo-electrochemic...
Some critical trends in information theory, its role in living systems and utilization in fluctuatio...
Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Sys...
The main purpose of this research is to strengthen and exploit the link between engineering thermody...
This work describes the kinetic conditions under which dissipation can compensate for the entropic c...
An overall synthesis of biology and non-equilibrium thermodynamics remains a challenge at the interf...
Today it is possible to finally go beyond the limits of the analytical paradigm by enriching it with...
All organisms depend on a supply of energetic resources to power behavior and the irreversible entro...
While it is clear that thermodynamics plays a nontrivial role in biological processes, exactly how t...
The importance of the second law of thermodynamics, already called the most metaphysical of all laws...
The purpose of this review article is to present some of the recent contributions that show the use ...
The causal element of biological evolution and development can be understood in terms of a potential...
The First Principle of Thermodynamics is concerned with conservation, the Second Principle with evol...
Soil-plant systems exchange both energy and matter with their surroundings and are consequently open...
Living cells represent open, nonequilibrium, self organizing, and dissipative systems maintained wit...
Living organisms are open dissipative thermodynamic systems that rely on mechanothermo-electrochemic...
Some critical trends in information theory, its role in living systems and utilization in fluctuatio...
Nonequilibrium Thermodynamics: Transport and Rate Processes in Physical, Chemical and Biological Sys...
The main purpose of this research is to strengthen and exploit the link between engineering thermody...
This work describes the kinetic conditions under which dissipation can compensate for the entropic c...
An overall synthesis of biology and non-equilibrium thermodynamics remains a challenge at the interf...
Today it is possible to finally go beyond the limits of the analytical paradigm by enriching it with...
All organisms depend on a supply of energetic resources to power behavior and the irreversible entro...