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Leaflet Material Selection for Aortic Valve Repair.

机译:主动脉瓣修复的传单材料选择。

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摘要

Leaflet replacement in aortic valve repair (AVr) is associated with increased longterm repair failure. Hemodynamic performance and mechanical stress levels were investigated after porcine AVr with 5 types of clinically relevant replacement materials to ascertain which material(s) would be best suited for repair. Porcine aortic roots with intact aortic valves were placed in a left-heart simulator mounted with a high-speed camera for baseline valve assessment. Then, the non-coronary leaflet was excised and replaced with autologous porcine pericardium (APP), glutaraldehyde-fixed bovine pericardial patch (BPP; Synovis(TM)), extracellular matrix scaffold (CorMatrix(TM)), or collagen-impregnated Dacron (HEMASHIELD(TM)). Hemodynamic parameters were measured over a range of cardiac outputs (2.5--6.5L/min) post-repair. Material properties of the above materials along with St. Jude Medical(TM) Pericardial Patch with EnCapTM Technology (SJM) were determined using pressurization experiments. Finite element models of the aortic valve and root complex were then constructed to verify the hemodynamic characteristics and determine leaflet stress levels.;This study demonstrates that APP and SJM have the closest profiles to normal aortic valves; therefore, use of either replacement material may be best suited. Increased stresses found in BPP, HEMASHIELD(TM), and CorMatrix(TM) groups may be associated with late repair failure.
机译:主动脉瓣修复(AVr)中的小叶置换与长期修复失败增加有关。用5种临床相关替代材料对猪AVr进行血流动力学性能和机械应力水平研究,以确定哪种材料最适合修复。将具有完整主动脉瓣的猪主动脉根置于装有高速相机的左心模拟器中,以评估基线瓣膜。然后,切除非冠状小叶,并用自体猪心包(APP),戊二醛固定的牛心包膜(BPP; Synovis™),细胞外基质支架(CorMatrixTM)或胶原浸渍的Dacron( HEMASHIELD(TM))。修复后在一系列心输出量(2.5--6.5L / min)上测量血流动力学参数。使用加压实验确定上述材料以及具有EnCapTM技术(SJM)的St. Jude Medical™心包贴的材料性能。然后建立主动脉瓣和根部复合体的有限元模型,以验证血液动力学特征并确定小叶应力水平。;本研究表明,APP和SJM具有与正常主动脉瓣最接近的轮廓;因此,使用任何一种替代材料可能是最合适的。在BPP,HEMASHIELD(TM)和CorMatrix(TM)组中发现的压力增加可能与后期修复失败有关。

著录项

  • 作者

    Abessi, Ovais.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Engineering Biomedical.;Engineering General.;Engineering Mechanical.
  • 学位 M.A.Sc.
  • 年度 2013
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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