439
Views
8
CrossRef citations to date
0
Altmetric
Articles

A fully coupled fluid-structure interaction model of the secondary lymphatic valve

, , , , &
Pages 813-823 | Received 03 Apr 2018, Accepted 06 Sep 2018, Published online: 06 Nov 2018

References

  • Benoit JN, Zawieja DC, Goodman AH, Granger HJ. 1989. Characterization of intact mesenteric lymphatic pump and its responsiveness to acute edemagenic stress. Am J Physiol Heart Circ Physiol. 257(6):H2059–H2069.
  • Bertram CD, Macaskill C, Davis MJ, Moore JE. 2014. Development of a model of a multi-lymphangion lymphatic vessel incorporating realistic and measured parameter values. Biomech Model Mechanobiol. 13(2):401–416.
  • Cao K, BukaČ M, Sucosky P. 2016. Three-dimensional macro-scale assessment of regional and temporal wall shear stress characteristics on aortic valve leaflets. Comput Methods Biomech Biomed Engin. 19(6):603–613.
  • Cariati M, Bains S, Grootendorst M, Suyoi A, Peters A, Mortimer P, Ellis P, Harries M, Van Hemelrijck M, Purushotham A. 2015. Adjuvant taxanes and the development of breast cancer‐related arm lymphoedema. Br J Surg. 102(9):1071–1078.
  • Chandran KB, Vigmostad SC. 2013. Patient-specific bicuspid valve dynamics: overview of methods and challenges. J Biomech. 46(2):208–216.
  • Davis MJ, Rahbar E, Gashev AA, Zawieja DC, Moore JE. 2011. Determinants of valve gating in collecting lymphatic vessels from rat mesentery. Am J Physiol Heart Circ Physiol. 301(1):H48–H60.
  • Dixon JB, Gashev AA, Zawieja DC, Moore JE, Jr, Coté GL. 2007. Image correlation algorithm for measuring lymphocyte velocity and diameter changes in contracting microlymphatics. Ann Biomed Eng. 35(3):387–396.
  • Dixon JB, Greiner ST, Gashev AA, Cote GL, Moore JE, Zawieja DC. 2006. Lymph flow, shear stress, and lymphocyte velocity in rat mesenteric prenodal lymphatics. Microcirculation. 13(7):597–610.
  • Dixon JB, Zawieja DC, Gashev AA, Coté GL. 2005. Measuring microlymphatic flow using fast video microscopy. J Biomed Opt. 10(6):064016–064017.
  • Gordon KD, Mortimer PS. 2007. A guide to lymphedema. Expert Rev Dermatol. 2(6):741–752.
  • Jamalian S, Bertram CD, Richardson WJ, Moore JE. 2013. Parameter sensitivity analysis of a lumped-parameter model of a chain of lymphangions in series. Am J Physiol Heart Circ Physiol. 305(12):H1709–H1717.
  • Lantz J, Renner J, Karlsson M. 2011. Wall shear stress in a subject specific human aorta—influence of fluid-structure interaction. Int J Appl Mechanics. 3(4):759–778.
  • Macdonald A. 2008. The computational modelling of collecting lymphatic vessels.
  • Margaris KN, Nepiyushchikh Z, Zawieja DC, Moore JE, Jr, Black R. 2016. Microparticle image velocimetry approach to flow measurements in isolated contracting lymphatic vessels. J Biomed Opt. 21(2):025002.
  • Marom G, Haj-Ali R, Raanani E, Schäfers H-J, Rosenfeld M. 2012. A fluid–structure interaction model of the aortic valve with coaptation and compliant aortic root. Med Biol Eng Comput. 50(2):173–182.
  • Mazzoni M, Skalak T, Schmid-Schönbein G. 1987. Structure of lymphatic valves in the spinotrapezius muscle of the rat. Blood Vessels. 24(6):304–312.
  • Mellor RH, Brice G, Stanton AW, French J, Smith A, Jeffery S, Levick JR, Burnand KG, Mortimer PS. 2007. Mutations in FOXC2 are strongly associated with primary valve failure in veins of the lower limb. Circulation. 115(14):1912–1920.
  • Mithieux SM, Weiss AS. 2005. Elastin. Adv Protein Chem. 70437–461.
  • Mortimer PS, Rockson SG. 2014. New developments in clinical aspects of lymphatic disease. J Clin Invest. 124(3):915–921.
  • Nivison-Smith L, Weiss A. 2011. Elastin based constructs. London, UK: INTECH Open Access Publisher.
  • Rahbar E, Weimer J, Gibbs H, Yeh AT, Bertram CD, Davis MJ, Hill MA, Zawieja DC, Moore JE. 2012. Passive pressure–diameter relationship and structural composition of rat mesenteric lymphangions. Lymphat Res Biol. 10(4):152–163.
  • Sabine A, Bovay E, Demir CS, Kimura W, Jaquet M, Agalarov Y, Zangger N, Scallan JP, Graber W, Gulpinar E, et al. 2015. FOXC2 and fluid shear stress stabilize postnatal lymphatic vasculature. J Clin Invest. 125(10):3861.
  • Swartz MA, Fleury ME. 2007. Interstitial flow and its effects in soft tissues. Annu Rev Biomed Eng. 9229–256.
  • Swartz MA, Skobe M. 2001. Lymphatic function, lymphangiogenesis, and cancer metastasis. Microsc Res Tech. 55(2):92–99.
  • Takada M. 1971. The ultrastructure of lymphatic valves in rabbits and mice. Am J Anat. 132(2):207–217.
  • Vajda J, Tomcsik M. 1971. The structure of the valves of the lymphatic vessels. Acta Anat (Basel). 78(4):521–531.
  • Wilson JT, van Loon R, Wang W, Zawieja DC, Moore JE. 2015. Determining the combined effect of the lymphatic valve leaflets and sinus on resistance to forward flow. J Biomech. 48(13):3584–3590.
  • Wilson JT, Wang W, Hellerstedt AH, Zawieja DC, Moore JE. 2013. Confocal image-based computational modeling of nitric oxide transport in a rat mesenteric lymphatic vessel. J Biomech Eng. 135(5):051005.
  • Zawieja DC, von der Weid PY, Gashev AA. 2011. Microlymphatic biology. Compre Physiol.
  • Zou Y, Zhang Y. 2009. An experimental and theoretical study on the anisotropy of elastin network. Ann Biomed Eng. 37(8):1572–1583.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.