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January 1, 2005EP Europace61 citationsOpen Access

Wavelength and vulnerability to atrial fibrillation: Insights from a computer model of human atria

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VJVincent JacquemetNVN. ViragLKLukas Kappenberger

Key Result

A biophysically based computer model confirmed that cardiac wavelength must be below a critical value for atrial fibrillation to be sustained via multiple re-entrant wavelets.

Structured PICO

P
Population
Biophysically based computer model of human atria
I
Intervention
Simulation of multiple re-entrant wavelets, different arrhythmogenic substrates, heterogeneities in refractoriness, and mother rotor
O
Outcome
Relationship between wavelength and AF perpetuation, and performance of different methods for wavelength estimation

Computer modeling demonstrates that accurate interpretation of cardiac wavelength in atrial fibrillation requires prior knowledge of the underlying wavelet dynamics.

Abstract

Abstract Aim To explain the contradictory results related to the concept of critical cardiac wavelength in the initiation and perpetuation of atrial fibrillation (AF). Methods A biophysically based computer model was used to: (1) study the relationship between wavelength and AF perpetuation in the presence of multiple re-entrant wavelets, (2) evaluate the performance of different existing methods for wavelength estimation in the presence of different arrhythmogenic substrates, and (3) document the impact of either heterogeneities in refractoriness or the presence of a mother rotor on wavelength estimation. Results The simulations confirmed that the wavelength must be below a critical value for AF to be sustained, when the perpetuation mechanism relies on multiple re-entrant wavelets. The estimated value of wavelength was not the same for all methods tested and depended in part on the nature of the spatio-temporal organization of the AF dynamics. Conclusion A priori information about the underlying wavelet dynamics is needed for a correct interpretation of the cardiac wavelength as estimated by the current clinical methods.

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Cite This Study

Jacquemet et al. (2005) studied Atrial fibrillation. Computer model of human atria was evaluated on Relationship between wavelength and AF perpetuation. A biophysically based computer model confirmed that cardiac wavelength must be below a critical value for atrial fibrillation to be sustained via multiple re-entrant wavelets.

synapsesocial.com/papers/6a0cfba8b31ab1d6e01e7675https://doi.org/10.1016/j.eupc.2005.03.017
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Study of atrial arrhythmias in a computer model based on magnetic resonance images of human atria2002 · 117 citations
  2. 2Wavelength and Atrial Vulnerability: an Endocavitary Approach in Humans1998 · 11 citations
  3. 3Simple Model for Identifying Critical Regions in Atrial Fibrillation2015 · 37 citations
  4. 4Cycle length statistics during human atrial fibrillation reveal refractory properties of the underlying substrate: a combined <i>in silico</i> and clinical test of concept study2020 · 10 citations
  5. 5Importance of Geometry and Refractory Period in Sustaining Atrial Fibrillation2005 · 91 citations