A living organism is a bundle of dynamic, integrated adaptive processes: not only does it continuously respond to constant changes in temperature, sunlight, nutrients, and other features of its environment, but it does so by coordinating hierarchies of feedback among cells, tissues, organs, and networks all continuously adapting to each other. At the root of it all is one of the most fundamental adaptive processes: the constant tug of war between chemistry and mechanics that interweaves chemical signals with endless reconfigurations of macromolecules, fibers, meshworks, and membranes. In this tutorial we explore how such chemomechanical feedback - as an inherently dynamic, iterative process connecting size and time scales - can and has been...
Living cilia stir, sweep and steer via swirling strokes of complex bending and twisting, paired with...
The need for smart materials in advanced applications, has promoted significantly the research in t...
A necessity of all living organisms from prokaryotes tomammals is the capability to respond rapidly ...
Dynamic materials that can sense changes in their surroundings and functionally respond by altering ...
Living organisms have unique homeostatic abilities, maintaining tight control of their local environ...
D ynamic materials that can sense changes in their surroundings and functionally respond by altering...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
Abstract What do nanoscopic biomolecular complexes between the cells that line our blood vessels hav...
Evolution in time-varying environments naturally leads to adaptable biological systems that can easi...
Nature demonstrates the efficiency of hierarchically integrated components that work in cooperation ...
Living organisms actively respond to their surroundings, be it searching for food or escaping from p...
Interactive materials are at the forefront of current materials research with few examples in the li...
Complex chemical systems, such as living biological matter, are highly organized structures based on...
Species ranging from single-cell organisms to social insects can undergo auto-chemotaxis, where the ...
This paper presents continuing research on responsive systems in architecture, the ability of archit...
Living cilia stir, sweep and steer via swirling strokes of complex bending and twisting, paired with...
The need for smart materials in advanced applications, has promoted significantly the research in t...
A necessity of all living organisms from prokaryotes tomammals is the capability to respond rapidly ...
Dynamic materials that can sense changes in their surroundings and functionally respond by altering ...
Living organisms have unique homeostatic abilities, maintaining tight control of their local environ...
D ynamic materials that can sense changes in their surroundings and functionally respond by altering...
The forthcoming generation of soft materials will be designed to autonomously adapt to their environ...
Abstract What do nanoscopic biomolecular complexes between the cells that line our blood vessels hav...
Evolution in time-varying environments naturally leads to adaptable biological systems that can easi...
Nature demonstrates the efficiency of hierarchically integrated components that work in cooperation ...
Living organisms actively respond to their surroundings, be it searching for food or escaping from p...
Interactive materials are at the forefront of current materials research with few examples in the li...
Complex chemical systems, such as living biological matter, are highly organized structures based on...
Species ranging from single-cell organisms to social insects can undergo auto-chemotaxis, where the ...
This paper presents continuing research on responsive systems in architecture, the ability of archit...
Living cilia stir, sweep and steer via swirling strokes of complex bending and twisting, paired with...
The need for smart materials in advanced applications, has promoted significantly the research in t...
A necessity of all living organisms from prokaryotes tomammals is the capability to respond rapidly ...