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自膨胀式与球囊扩张式经导管主动脉瓣性能比较

Comparison of performance of self-expanding and balloon-expandable transcatheter aortic valves.

作者信息

Hatoum Hoda, Samaee Milad, Sathananthan Janarthanan, Sellers Stephanie, Kuetting Maximilian, Lilly Scott M, Ihdayhid Abdul R, Blanke Philipp, Leipsic Jonathon, Thourani Vinod H, Dasi Lakshmi Prasad

机构信息

Department of Biomedical Engineering, Michigan Technological University, Houghton, Mich.

Health Research Institute, Center of Biocomputing and Digital Health and Institute of Computing and Cybernetics, Michigan Technological University, Houghton, Mich.

出版信息

JTCVS Open. 2022 Apr 20;10:128-139. doi: 10.1016/j.xjon.2022.04.015. eCollection 2022 Jun.

Abstract

OBJECTIVE

To evaluate the flow dynamics of self-expanding and balloon-expandable transcatheter aortic valves pertaining to turbulence and pressure recovery. Transcatheter aortic valves are characterized by different designs that have different valve performance and outcomes.

METHODS

Assessment of transcatheter aortic valves was performed using self-expanding devices (26-mm Evolut [Medtronic], 23-mm Allegra [New Valve Technologies], and small Acurate neo [Boston Scientific]) and a balloon-expandable device (23-mm Sapien 3 [Edwards Lifesciences]). Particle image velocimetry assessed the flow downstream. A Millar catheter was used for pressure recovery calculation. Velocity, Reynolds shear stresses, viscous shear stress, and pressure gradients were calculated.

RESULTS

The maximal velocity at peak systole obtained with the Evolut R, Sapien 3, Acurate neo, and Allegra was 2.12 ± 0.19 m/sec, 2.41 ± 0.06 m/sec, 2.99 ± 0.10 m/sec, and 2.45 ± 0.08 m/sec, respectively ( < .001). Leaflet oscillations with the flow were clear with the Evolut R and Acurate neo. The Allegra shows the minimal range of Reynolds shear stress magnitudes (up to 320 Pa), and Sapien 3 the maximal (up to 650 Pa). The Evolut had the smallest viscous shear stress magnitude range (up to 3.5 Pa), and the Sapien 3 the largest (up to 6.2 Pa). The largest pressure drop at the vena contracta occurred with the Acurate neo transcatheter aortic valve with a pressure gradient of 13.96 ± 1.35 mm Hg. In the recovery zone, the smallest pressure gradient was obtained with the Allegra (3.32 ± 0.94 mm Hg).

CONCLUSIONS

Flow dynamics downstream of different transcatheter aortic valves vary significantly depending on the valve type, despite not having a general trend depending on whether or not valves are self-expanding or balloon-expandable. Deployment design did not have an influence on flow dynamics.

摘要

目的

评估自膨胀式和球囊扩张式经导管主动脉瓣在湍流和压力恢复方面的流体动力学。经导管主动脉瓣具有不同设计,其瓣膜性能和结果各异。

方法

使用自膨胀装置(26毫米的Evolut[美敦力公司]、23毫米的Allegra[新瓣膜技术公司]和小型Acurate neo[波士顿科学公司])以及球囊扩张装置(23毫米的Sapien 3[爱德华生命科学公司])对经导管主动脉瓣进行评估。粒子图像测速法评估下游血流情况。使用Millar导管计算压力恢复情况。计算速度、雷诺剪切应力、粘性剪切应力和压力梯度。

结果

Evolut R、Sapien 3、Acurate neo和Allegra在收缩期峰值时的最大速度分别为2.12±0.19米/秒、2.41±0.06米/秒、2.99±0.10米/秒和2.45±0.08米/秒(<0.001)。Evolut R和Acurate neo的瓣叶随血流的振荡清晰可见。Allegra的雷诺剪切应力大小范围最小(高达320帕),Sapien 3的最大(高达650帕)。Evolut的粘性剪切应力大小范围最小(高达3.5帕),Sapien 3的最大(高达6.2帕)。Acurate neo经导管主动脉瓣在缩窄处的压力降最大,压力梯度为13.96±1.35毫米汞柱。在恢复区,Allegra的压力梯度最小(3.32±0.94毫米汞柱)。

结论

不同经导管主动脉瓣下游的流体动力学因瓣膜类型而异,尽管瓣膜是自膨胀式还是球囊扩张式并无总体趋势。展开设计对流体动力学没有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a9b/9390782/7506342c69cb/fx1.jpg

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