Publication | Closed Access
Spatial Symmetry Breaking Determines Spiral Wave Chirality
26
Citations
24
References
2014
Year
Cardiac MuscleWave Break InitiationPhysicsCardiac MechanicSymmetry (Physics)Spiral WavesElectrophysiologyPeriodic Travelling WaveSpiral Wave ChiralityTopological PhaseBiophysics
Chirality represents a fundamental property of spiral waves. Introducing obstacles into cardiac monolayers leads to the initiation of clockwise-rotating, counterclockwise-rotating, and pairs of spiral waves. Simulations show that the precise location of the obstacle and the pacing frequency determine spiral wave chirality. Instabilities predicted by curves relating the action potential duration and the pacing frequency at different spatial locations predict sites of wave break initiation and, hence, spiral wave chirality.
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