We have recently characterised, using time-resolved USAXS and SAXS data at ID02 (Brunello et al., 2020, PNAS 117:8177-8186), the kinetics of the structural changes in the cardiac thick filament during
L-type calcium channels are essential for the excitation-contraction coupling in cardiac muscle. The Ca V 1.2 channel is the most predominant isoform in the ventricle which consists of a mult
The data presented in this repository is the training data (data set #1) used in our work Neural network emulation of the human ventricular cardiomyocyte action potential: A tool for more efficient co