Key result
A discrete mathematical propagating model defined conditions for zero ventricular gradient and demonstrated that primary T-waves cannot be obtained from recorded and secondary T-waves by linear operations.
This theoretical study provides rigorous mathematical definitions for ECG T-wave concepts, demonstrating that primary T-waves cannot be derived from recorded and secondary T-waves via linear operations.
No takes yet. Share an insight, caveat, or question.
Mathematical model refines T-wave definitions; leaves open their role in clinical ECG interpretation.
Cohn et al. (1982) studied Electrocardiogram T-wave concepts (ventricular gradient, recovery waveforms). Discrete mathematical propagating model and computer simulation was evaluated on Mathematical definition and analysis of ventricular gradient and T-waves. A discrete mathematical propagating model defined conditions for zero ventricular gradient and demonstrated that primary T-waves cannot be obtained from recorded and secondary T-waves by linear operations.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: