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本文引用的文献

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Automatic construction of subject-specific human airway geometry including trifurcations based on a CT-segmented airway skeleton and surface.
Biomech Model Mechanobiol. 2017 Apr;16(2):583-596. doi: 10.1007/s10237-016-0838-6. Epub 2016 Oct 4.
2
A multiscale MDCT image-based breathing lung model with time-varying regional ventilation.
J Comput Phys. 2013 Jul 1;244:168-192. doi: 10.1016/j.jcp.2012.12.007.
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Cardiovascular and lung mesh generation based on centerlines.
Int J Numer Method Biomed Eng. 2013 Jun;29(6):665-82. doi: 10.1002/cnm.2549. Epub 2013 Apr 19.
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Effect of carrier gas properties on aerosol distribution in a CT-based human airway numerical model.
Ann Biomed Eng. 2012 Jul;40(7):1495-507. doi: 10.1007/s10439-011-0503-2. Epub 2012 Jan 14.
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Efficient, physiologically realistic lung airflow simulations.
IEEE Trans Biomed Eng. 2011 Oct;58(10):3016-9. doi: 10.1109/TBME.2011.2161868. Epub 2011 Jul 14.
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The lung physiome: merging imaging-based measures with predictive computational models.
Wiley Interdiscip Rev Syst Biol Med. 2009 Jul-Aug;1(1):61-72. doi: 10.1002/wsbm.17.
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Simulation of pulmonary air flow with a subject-specific boundary condition.
J Biomech. 2010 Aug 10;43(11):2159-63. doi: 10.1016/j.jbiomech.2010.03.048. Epub 2010 May 18.
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On intra- and intersubject variabilities of airflow in the human lungs.
Phys Fluids (1994). 2009 Oct;21(10):101901. doi: 10.1063/1.3247170. Epub 2009 Oct 13.
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Computational model of airflow in upper 17 generations of human respiratory tract.
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