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@article{RUMI_2023_1_8_3_a3, author = {Giantesio, Giulia and Marzocchi, Alfredo and Musesti, Alessandro}, title = {Un modello matematico del tessuto muscolare}, journal = {Matematica, cultura e societ\`a}, pages = {239--249}, publisher = {mathdoc}, volume = {Ser. 1, 8}, number = {3}, year = {2023}, zbl = {1539.92022}, mrnumber = {2899010}, language = {it}, url = {http://geodesic.mathdoc.fr/item/RUMI_2023_1_8_3_a3/} }
TY - JOUR AU - Giantesio, Giulia AU - Marzocchi, Alfredo AU - Musesti, Alessandro TI - Un modello matematico del tessuto muscolare JO - Matematica, cultura e società PY - 2023 SP - 239 EP - 249 VL - 8 IS - 3 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/RUMI_2023_1_8_3_a3/ LA - it ID - RUMI_2023_1_8_3_a3 ER -
Giantesio, Giulia; Marzocchi, Alfredo; Musesti, Alessandro. Un modello matematico del tessuto muscolare. Matematica, cultura e società, Série 1, Tome 8 (2023) no. 3, pp. 239-249. http://geodesic.mathdoc.fr/item/RUMI_2023_1_8_3_a3/
[1] Active stress vs. Active strain in mechanobiology: Constitutive issues, J. Elasticity 107 (2012) 199-212. | DOI | MR | Zbl
, ,[2] A Systematic Review of Continuum Modeling of Skeletal Muscles: Current Trends, Limitations, and Recommendations. Applied bionics and biomechanics (2018) 7631818. | Zbl
, ,[3] A continuum constitutive model for the active behaviour of skeletal muscle, J. Mech. Phys. Solids 59 (3) (2011) 625-636. | DOI | MR | Zbl
, , ,[4] Meccanica dei Continui, Springer, 2019.
, , ,[5] Strain-dependent internal parameters in hyperelastic biological materials, International Journal of Non-Linear Mechanics, 95 (2017), 162-167. | Zbl
, ,[6] Loss of mass and performance in skeletal muscle tissue: a continuum model, Communications in Applied and Industrial Mathematics, 9 (2018), 1-19. | DOI | MR | Zbl
, , ,[7] A comparison between active strain and active stress in transversely isotropic hyperelastic materials, Journal of Elasticity 137 (2019), 63-82. | DOI | MR | Zbl
, , ,[8] A Comprehensive Approach for Studying Muscle-Tendon Mechanics, ASME Journal of Biomechanical Engineering 116 (1994) 51-55. | Zbl
, ,[9] Mechanics of Biological Tissue, Springer-Verlag, 2010. | Zbl
, ,[10] On the Active Response of Soft Living Tissues, Journal of Elasticity 88 (2007) 27-39. | DOI | MR | Zbl
, ,[11] Non-Linear Elastic Deformations, Dover Pubns, 1997. | MR | Zbl
,[12] A Physiology-Guided Classification of Active-Stress and Active-Strain Approaches for Continuum-Mechanical Modeling of Skeletal Muscle Tissue, Front. Physiol. 12 (2021). | Zbl
, , ,[13] Activation of a muscle as a mapping of stress-strain curves, Extreme Mechanics Letters 28 (2019) 37-42. | Zbl
, ,[14] On the origins of the idea of the multiplicative decomposition of the deformation gradient, Mathematics and Mechanics of Solids, 22 (2017) 771-772. | DOI | MR | Zbl
, ,[15] Modeling heart development, Journal of Elasticity 61 (2000) 165-197. | DOI | MR | Zbl
, ,[16] Optimum power output and structural design of sarcomeres, Journal of Theoretical Biology 149 (1991) 229-256. | Zbl
,[17] An overview of sarcopenia: facts and numbers on prevalenceand clinical impact, Journal of Cachexia, Sarcopenia and Muscle 1 (2010) 129-133. | Zbl
, , and ,[18] Kinesiology. The Mechanics and Pathomechanics of Human Movement, Lippincott Williams & Wilkins, 2nd ed., 2009.
,