Literature DB >> 22505492

Comparison of flow dynamics of Perimount Magna and Magna Ease aortic valve prostheses.

Daniel Wendt1, Sebastian Stühle, Jarowit Adam Piotrowski, Hermann Wendt, Matthias Thielmann, Heinz Jakob, Wojciech Kowalczyk.   

Abstract

The aim of the present study was to evaluate and compare the in vitro and flow dynamics of the Magna (MB) and the Magna Ease aortic valve bioprosthesis (MEB) within the ascending aorta. A 2D-particle-image-velocimetry (2D-PIV) study was performed to compare the flow dynamics induced by each pericardial Carpentier-Edwards Magna and Magna Ease aortic valve prosthesis in the aortic flow field directly behind the valve. Both prostheses (diameter 23 mm) were placed inside an artificial aorta under pulsatile flow conditions (70 Hz and 70 ml stroke volume). The flow field was evaluated according to velocity, shear strength, and vorticity. Both prostheses showed a jet flow type profile with a maximum velocity of 0.97±0.09 m/s for MB and 0.83±1.8 m/s for MEB. Flow fields of both valves were similar in acceleration, peak flow deceleration and leakage phase. Maximum shear strength was 20,285±11,774 l/s2 for MB and 17,006±8453 l/s2 for MEB. Vorticity was nearly similar for counterclockwise and clockwise rotation in both prostheses, but slightly higher with MB (251±41 l/s and -250±39 l/s vs. 225±48 l/s and -232±48 l/s). The point-of-interest (POI)-analysis revealed a higher velocity for left-sided aortic wall compared to right-sided at MB (0.12±0.09 m/s vs. 0.18±0.10 m/s, p<0.001), but was consistent at MEB (0.09±0.05 m/s vs. 0.08±0.04 m/s, p=0.508), respectively. Velocity, shear strength and vorticity in an in vitro test set-up are lower with MEB compared to MB, thus resulting in improved flow dynamics with a similar flow field, which might have a positive influence on blood rheology and potential valve degeneration.

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Year:  2012        PMID: 22505492     DOI: 10.1515/bmt-2011-0076

Source DB:  PubMed          Journal:  Biomed Tech (Berl)        ISSN: 0013-5585            Impact factor:   1.411


  6 in total

1.  Optimizations of stent and tissue leaflets in a new surgical bovine pericardial valve.

Authors:  Jinmiao Chen; Jun Yang; Li Zhang; Wenrui Ma; Shuyang Lu; Chunsheng Wang; Tao Hong
Journal:  J Thorac Dis       Date:  2019-11       Impact factor: 2.895

2.  The effects of positioning of transcatheter aortic valves on fluid dynamics of the aortic root.

Authors:  Elliott M Groves; Ahmad Falahatpisheh; Jimmy L Su; Arash Kheradvar
Journal:  ASAIO J       Date:  2014 Sep-Oct       Impact factor: 2.872

3.  Transcatheter aortic valves produce unphysiological flows which may contribute to thromboembolic events: An in-vitro study.

Authors:  Andrea Ducci; Francesco Pirisi; Spyridon Tzamtzis; Gaetano Burriesci
Journal:  J Biomech       Date:  2016-11-03       Impact factor: 2.712

4.  Two-Year Clinical Follow-Up Assessment of the Novel Cingular Surgical Bovine Pericardial Valve.

Authors:  Jinmiao Chen; Minzhi Lv; Yuntao Lu; Jiahui Fu; Yingqiang Guo; Liang Tao; Xinmin Zhou; Tianxiang Gu; Lai Wei; Tao Hong; Chunsheng Wang
Journal:  Front Cardiovasc Med       Date:  2021-12-13

5.  One-year outcome with a bovine pericardial valve.

Authors:  Jinmiao Chen; Chen He; Minzhi Lv; Yingqiang Guo; Liang Tao; Tao Hong; Chunsheng Wang
Journal:  JTCVS Open       Date:  2020-04-21

6.  The Fluid Dynamical Performance of the Carpentier-Edwards PERIMOUNT Magna Ease Prosthesis.

Authors:  Philipp Marx; Wojciech Kowalczyk; Aydin Demircioglu; Gary Neil Brault; Hermann Wendt; Sharaf-Eldin Shehada; Konstantinos Tsagakis; Mohamed El Gabry; Heinz Jakob; Daniel Wendt
Journal:  Biomed Res Int       Date:  2018-01-10       Impact factor: 3.411

  6 in total

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