Literature DB >> 24170574

Stent graft visualization and planning tool for endovascular surgery using finite element analysis.

S von Sachsen1, B Senf, O Burgert, J Meixensberger, H J Florek, F W Mohr, C D Etz.   

Abstract

PURPOSE: A new approach to optimize stent graft selection for endovascular aortic repair is the use of finite element analysis. Once the finite element model is created and solved, a software module is needed to view the simulation results in the clinical work environment. A new tool for interpretation of simulation results, named Medical Postprocessor, that enables comparison of different stent graft configurations and products was designed, implemented and tested.
METHODS: Aortic endovascular stent graft ring forces and sealing states in the vessel landing zone of three different configurations were provided in a surgical planning software using the Medical Imaging Interaction Tool Kit (MITK) software system. For data interpretation, software modules for 2D and 3D presentations were implemented. Ten surgeons evaluated the software features of the Medical Postprocessor. These surgeons performed usability tests and answered questionnaires based on their experience with the system.
RESULTS: The Medical Postprocessor visualization system enabled vascular surgeons to determine the configuration with the highest overall fixation force in 16+/-6 s, best proximal sealing in 56+/-24s and highest proximal fixation force in 38+/- s. The majority considered the multiformat data provided helpful and found the Medical Postprocessor to be an efficient decision support system for stent graft selection. The evaluation of the user interface results in an ISONORM-conform user interface (113.5 points).
CONCLUSION: The Medical Postprocessor visualization software tool for analyzing stent graft properties was evaluated by vascular surgeons. The results show that the software can assist the interpretation of simulation results to optimize stent graft configuration and sizing.

Mesh:

Year:  2013        PMID: 24170574     DOI: 10.1007/s11548-013-0943-2

Source DB:  PubMed          Journal:  Int J Comput Assist Radiol Surg        ISSN: 1861-6410            Impact factor:   2.924


  15 in total

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2.  Surgical stent planning: simulation parameter study for models based on DICOM standards.

Authors:  S Scherer; T Treichel; N Ritter; G Triebel; W G Drossel; O Burgert
Journal:  Int J Comput Assist Radiol Surg       Date:  2010-07-22       Impact factor: 2.924

3.  Effect of curvature on displacement forces acting on aortic endografts: a 3-dimensional computational analysis.

Authors:  C Alberto Figueroa; Charles A Taylor; Victoria Yeh; Allen J Chiou; Christopher K Zarins
Journal:  J Endovasc Ther       Date:  2009-06       Impact factor: 3.487

4.  In vitro measurement and calculation of drag force on iliac limb stentgraft in a compliant arterial wall model.

Authors:  A Sinha Roy; K Westt; R S Rontala; R K Greenberg; R K Banerjee
Journal:  Mol Cell Biomech       Date:  2007-12

5.  The proximal fixation strength of modern EVAR grafts in a short aneurysm neck. An in vitro study.

Authors:  W M P F Bosman; T J V D Steenhoven; D R Suárez; J W Hinnen; E R Valstar; J F Hamming
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Authors:  W Stelter; T Umscheid; P Ziegler
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8.  The effect of vessel material properties and pulsatile wall motion on the fixation of a proximal stent of an endovascular graft.

Authors:  T J Corbett; D S Molony; A Callanan; T M McGloughlin
Journal:  Med Eng Phys       Date:  2010-10-14       Impact factor: 2.242

9.  Device-specific resistance to in vivo displacement of stent-grafts implanted with maximum iliac fixation.

Authors:  Erin H Murphy; Eric D Johnson; Frank R Arko
Journal:  J Endovasc Ther       Date:  2007-08       Impact factor: 3.487

10.  Computational mechanics of Nitinol stent grafts.

Authors:  C Kleinstreuer; Z Li; C A Basciano; S Seelecke; M A Farber
Journal:  J Biomech       Date:  2008-07-17       Impact factor: 2.712

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