Key result
A hybrid model of protein interactions in cardiac tension development showed quantitative agreement with experimental studies of steady state and length switch experiments in rat and rabbit models.
A novel hybrid computational model of cardiac protein interactions successfully reconstructs electro-mechanical phenomena, offering a tool to study cooperativity mechanisms and pathophysiological changes in cardiac tension.
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May aid mechanistic studies of cardiac tension in animal models; leaves open human validation and clinical translation.
Sachse et al. (2003) studied Cardiac tension development. Hybrid model of protein interactions was evaluated on Reconstruction of steady state and length switches experiments. A hybrid model of protein interactions in cardiac tension development showed quantitative agreement with experimental studies of steady state and length switch experiments in rat and rabbit models.
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