ref [22] · 2608.03927 · notice #8481 · dispute
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multi-scale continuum model of skeletal muscle mechanics predicting force enhancement based on actin-titin interaction. Biomechanics and modeling in mechanobiology15, 1423- 1437. doi:10.1007/s10237-016-0772-7. 22. Hern 'andez-Gasc'on, B., Grasa, J., Calvo, B., and Rodr 'ıguez, J.F . (2013). A 3d electro- mechanical continuum model for simulating skeletal muscle contraction. Journal of theoret- ical biology335, 108-118. doi:10.1016/j.jtbi.2013.06.029. 23. Karami, M., Zohoor, H., Calvo, B., and Grasa, J. (2023). A 3d multi-scale skeletal mus- cle model to predict active and passive responses. application to intra-abdominal pressure prediction. Computer Methods in Applied Mechanics and Engineering415, 116222. doi: 10.1016/j.cma.2023.116222. 23 24. Lemaire, K.K., Baan, G.C., Jaspers, R.T., and van Soest, A.
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multi-scale continuum model of skeletal muscle mechanics predicting force enhancement based on actin-titin interaction. Biomechanics and modeling in mechanobiology15, 1423- 1437. doi:10.1007/s10237-016-0772-7. 22. Hern 'andez-Gasc'on, B., Grasa, J., Calvo, B., and Rodr 'ıguez, J.F . (2013). A 3d electro- mechanical continuum model for simulating skeletal muscle contraction. Journal of theoret- ical biology335, 108-118. doi:10.1016/j.jtbi.2013.06.029. 23. Karami, M., Zohoor, H., Calvo, B., and Grasa, J. (2023). A 3d multi-scale skeletal mus- cle model to predict active and passive responses. application to intra-abdominal pressure prediction. Computer Methods in Applied Mechanics and Engineering415, 116222. doi: 10.1016/j.cma.2023.116222. 23 24. Lemaire, K.K., Baan, G.C., Jaspers, R.T., and van Soest, A