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The finite deformation of the balloon catheter

The finite deformation of the balloon catheter
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摘要 The balloon-based catheters are attractive tot the minimally invasive procedures because these cameters can be configured to match requirements on size and shape for the interaction with the soft tissue. An analytical mechanic model is developed for the deformed balloon to determine the shape of the inflated catheter. The bridges along latitudinal direction should be high stretchable due to the high elongation along the latitude of the inflatable catheter, These results agree well with the finite element method without any parameter fitting. The balloon-based catheters are attractive tot the minimally invasive procedures because these cameters can be configured to match requirements on size and shape for the interaction with the soft tissue. An analytical mechanic model is developed for the deformed balloon to determine the shape of the inflated catheter. The bridges along latitudinal direction should be high stretchable due to the high elongation along the latitude of the inflatable catheter, These results agree well with the finite element method without any parameter fitting.
出处 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2016年第1期2-5,共4页 力学快报(英文版)
基金 the National Key Basic Research Program of China(Grant No.2015CB351900) National Natural Science Foundation of China(Grant No.11202113) the Ministry of Education of China(Grant No.201327)
关键词 Balloon-based catheter Stretchable electronics Expansion Balloon-based catheter Stretchable electronics Expansion
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参考文献8

  • 1S.f. Seldinger, Catheter replacement of the needle in percutaneous arteriography-a new technique, Acta Radiol. 39 (1953) 368-3?6.
  • 2B.J Scherlag, S.H. Lau, R.H. Helfant, Catheter technique for recording his bundle activity in man, Circulation 39 (1969) 13.
  • 3R. Mueller, T. Sanborn, The history of interventionat cardiology, Am. Heart. J. 129 (1995) 146-172.
  • 4R.M. Donlan, J.W. Costerton, Biofilms: Survival mechanisms of clinically relevant microorganisms, Clin. Microbiol. Rev. 15 (2002) 167-193.
  • 5K. Nademanee, J. McKenzie, E. Kosar, A new approach for catheter ablation of atrial fibrillation: Mapping of the electrophysiologic substrate, J. Am. Colt. Cardiol. 43 (2004) 2044-2053.
  • 6J. Huang, Q.-Y. Yuan, Z.*W. Zhu, Catheter-based transendocardial microbubble and pEGFP delivery combination of intracardiac ultrasonic exposure enhances EGFP gene expression, Int. J. Cardiol. 145 (2010) 583-584.
  • 7D.-H. Rim, N. Lu, R. Ghaffari, et al., Materials for moltifunctional balloon catheters with capabilities in cardiac electrophysiological mapping and ablation therapy, Nature Mater. 10 (2011) 316-323.
  • 8S. Timoshenko, S. Woinowsky-Krieger, Theory of Plates and Shells, McGraw-Hill Classic Textbook Reissue Series, New York, 1959.

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