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An in silico biomechanical analysis of the stent–esophagus interaction

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FINITE-ELEMENT MODEL, ZERO-STRESS STATE, GASTROINTESTINAL-TRACT, MECHANICAL-PROPERTIES, COMPUTER-SIMULATION, CONSTITUTIVE MODEL, LAYERED ESOPHAGUS, METALLIC STENTS, WALL STRESS, MUSCLE

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MLA
Peirlinck, Mathias, et al. “An in Silico Biomechanical Analysis of the Stent–Esophagus Interaction.” BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, vol. 17, no. 1, Springer Nature, 2018, pp. 111–31.
APA
Peirlinck, M., Debusschere, N., Iannaccone, F., Siersema, P. D., Verhegghe, B., Segers, P., & De Beule, M. (2018). An in silico biomechanical analysis of the stent–esophagus interaction. BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 17(1), 111–131.
Chicago author-date
Peirlinck, Mathias, Nic Debusschere, Francesco Iannaccone, Peter D. Siersema, Benedict Verhegghe, Patrick Segers, and Matthieu De Beule. 2018. “An in Silico Biomechanical Analysis of the Stent–Esophagus Interaction.” BIOMECHANICS AND MODELING IN MECHANOBIOLOGY 17 (1): 111–31.
Chicago author-date (all authors)
Peirlinck, Mathias, Nic Debusschere, Francesco Iannaccone, Peter D. Siersema, Benedict Verhegghe, Patrick Segers, and Matthieu De Beule. 2018. “An in Silico Biomechanical Analysis of the Stent–Esophagus Interaction.” BIOMECHANICS AND MODELING IN MECHANOBIOLOGY 17 (1): 111–131.
Vancouver
1.
Peirlinck M, Debusschere N, Iannaccone F, Siersema PD, Verhegghe B, Segers P, et al. An in silico biomechanical analysis of the stent–esophagus interaction. BIOMECHANICS AND MODELING IN MECHANOBIOLOGY. 2018;17(1):111–31.
IEEE
[1]
M. Peirlinck et al., “An in silico biomechanical analysis of the stent–esophagus interaction,” BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, vol. 17, no. 1, pp. 111–131, 2018.
@article{8538297,
  author       = {Peirlinck, Mathias and Debusschere, Nic and Iannaccone, Francesco and Siersema, Peter D. and Verhegghe, Benedict and Segers, Patrick and De Beule, Matthieu},
  issn         = {1617-7959},
  journal      = {BIOMECHANICS AND MODELING IN MECHANOBIOLOGY},
  keywords     = {FINITE-ELEMENT MODEL,ZERO-STRESS STATE,GASTROINTESTINAL-TRACT,MECHANICAL-PROPERTIES,COMPUTER-SIMULATION,CONSTITUTIVE MODEL,LAYERED ESOPHAGUS,METALLIC STENTS,WALL STRESS,MUSCLE},
  language     = {eng},
  number       = {1},
  pages        = {111--131},
  publisher    = {Springer Nature},
  title        = {An in silico biomechanical analysis of the stent–esophagus interaction},
  url          = {http://dx.doi.org/10.1007/s10237-017-0948-9},
  volume       = {17},
  year         = {2018},
}

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