Abstract figure legend Illustration of spatial calcium dynamics (left panels) and the state cycle approximation (middle panel) that enables reduced simulation of spatially dependent dynamics without explicit description of space (right panels). The selected example here illustrates a spontaneous calcium wave, showing temporal snapshots of local calcium
Michael A Colman +2 more
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Spatial Autocorrelation Dimension (<i>D<sub>i</sub></i> ) for the Characterisation of Atrial Fibrillatory Dynamics. [PDF]
Tiver KD, Dharmaprani D, Ganesan AN.
europepmc +1 more source
Dynamics of kink solitons under additive white noise in the power-law nonlinear Schrödinger equation. [PDF]
Alsatami KA.
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Programming chaotic centers for shaping light branching in topological nematic vortices. [PDF]
Yu X +7 more
europepmc +1 more source
Numerical Investigation of Dynamic Wrinkling Behaviors in Stiff-Film/PDMS-Substrate Structure. [PDF]
Bi H, Li W, Wang L, Wang B.
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Exact traveling-wave solutions and dynamical behavior of nonlinear low-pass electrical models in the fractional framework. [PDF]
Alsheekhhussain Z +5 more
europepmc +1 more source
Soliton solutions with bifurcation, sensitivity, chaotic and stability analysis of the (2+1)-dimensional Zoomeron equation using generalized Riccati equation mapping method. [PDF]
Zainab A +5 more
europepmc +1 more source
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Existence of chaos is proved in finite-dimensional invariant subspaces for both two- and three-wave interactions. For a simple Galerkin truncation of the 2D Navier–Stokes equation, existence of chaos is also proved.
Y Charles Li
exaly +3 more sources
SYNCHRONIZATION OF CHAOS AND THE TRANSITION TO WAVE TURBULENCE
We investigated the transition to wave turbulence in a spatially extended three-wave interacting model, where a spatially homogeneous state undergoing chaotic dynamics undergoes spatial mode excitation. The transition to this weakly turbulent state can be regarded as the loss of synchronization of chaos of mode oscillators describing the spatial ...
Ricardo Luiz Viana +3 more
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