Collective behaviour in multicell systems arises from exchange of chemicals/ signals between cells and may be different from their intrinsic behaviour. These chemicals are products of regulated networks of biochemical pathways that underlie cellular functions, and can exhibit a variety of dynamics arising from the non-linearity of the reaction processes. We have addressed the emergent synchronization properties of a ring of cells, diffusively coupled by the end product of an intracellular model biochemical pathway exhibiting non-robust birhythmic behaviour. The aim is to examine the role of intercellular interaction in stabilizing the non-robust dynamics in the emergent collective behaviour in the ring of cells. We show that, irrespective o...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The artificial intervention of biological rhythms remains an exciting challenge. Here, we proposed a...
We have studied the collective behaviour of a one-dimensional ring of cells for conditions when the...
The functional dynamics exhibited by cell collectives are fascinating examples of robust, synchroniz...
Cells interact/communicate among themselves to form structures that perform specialised functions. H...
Diverse biochemical rhythms are generated by thousands of cellular oscillators that somehow manage t...
While experimental and theoretical studies have established the prevalence of rhythmic behaviour at ...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms, which are coupled becau...
Biological systems such as yeast show coordinated activity driven by chemical communication between ...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The artificial intervention of biological rhythms remains an exciting challenge. Here, we proposed a...
We have studied the collective behaviour of a one-dimensional ring of cells for conditions when the...
The functional dynamics exhibited by cell collectives are fascinating examples of robust, synchroniz...
Cells interact/communicate among themselves to form structures that perform specialised functions. H...
Diverse biochemical rhythms are generated by thousands of cellular oscillators that somehow manage t...
While experimental and theoretical studies have established the prevalence of rhythmic behaviour at ...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms, which are coupled becau...
Biological systems such as yeast show coordinated activity driven by chemical communication between ...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The cell cycle and the circadian clock represent two major cellular rhythms. These rhythms are coupl...
The artificial intervention of biological rhythms remains an exciting challenge. Here, we proposed a...