Ex vivo evaluation of the Ozaki procedure in comparison with the native aortic valve and prosthetic valves.

IF 1.6 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS Interactive cardiovascular and thoracic surgery Pub Date : 2022-08-03 DOI:10.1093/icvts/ivac199
Hiroyuki Saisho, Michael Scharfschwerdt, Tim Schaller, Najla Sadat, Anas Aboud, Stephan Ensminger, Buntaro Fujita
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引用次数: 6

Abstract

Objectives: We investigated the hydrodynamic performance and cusp kinematics of the Ozaki neocuspidized aortic valve in comparison with the native aortic and prosthetic valves in an ex vivo study.

Methods: Native aortic valves of swine hearts were replaced by aortic valve substitutes, and their hydrodynamic performance (effective orifice area and mean pressure gradient) was evaluated in a mock circulation under defined conditions. The following aortic valve substitutes were investigated: native aortic valve, Ozaki valve, Perimount Magna Ease, Trifecta and St. Jude Medical Masters. All prosthetic valves had a labelled size of 21 mm.

Results: The Ozaki valve and native aortic valve showed a similar and significantly larger orifice area than all investigated prosthetic valves particularly at high flow rates. There was no significant difference between the Ozaki valve and the native aortic valve. The native aortic valve and Ozaki valve showed a similar increase in orifice area with increasing flow through the valve while prosthetic valves showed a markedly weaker increase. Similarly, the native and Ozaki valve showed a similar increase in mPG with forward flow which was weaker than prosthetic valves. Cusp kinematics were similar between the native and Ozaki valve, whilst prosthetic valves were clearly distinguishable from them.

Conclusions: The Ozaki procedure showed excellent hydrodynamic performance compared to prosthetic valves and showed similar cusp motion characteristics to the native aortic valve. Our results suggest that the Ozaki neocuspidized valve behaves physiologically in many aspects, which may contribute to beneficial clinical outcomes.

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Ozaki手术与天然主动脉瓣和人工主动脉瓣的体外评价。
目的:在离体研究中,我们研究了Ozaki新型主动脉瓣的流体力学性能和尖端运动学,并与天然主动脉瓣和人工主动脉瓣进行了比较。方法:用主动脉瓣替代物代替猪心脏的天然主动脉瓣,并在规定条件下的模拟循环中评估其流体动力学性能(有效孔面积和平均压力梯度)。研究了以下主动脉瓣替代物:原生主动脉瓣、Ozaki瓣膜、perimont Magna Ease、Trifecta和St. Jude Medical Masters。所有假体瓣膜的标记尺寸为21毫米。结果:Ozaki瓣膜和天然主动脉瓣膜的孔口面积与所有研究的人工瓣膜相似且明显更大,特别是在高流速时。Ozaki瓣膜与天然主动脉瓣膜无明显差异。原生主动脉瓣和Ozaki瓣膜的孔口面积随着瓣膜流量的增加而增加,而人工瓣膜的孔口面积增加明显较弱。同样,原生瓣膜和Ozaki瓣膜在前向血流中表现出相似的mPG增加,但比人工瓣膜弱。原生瓣膜和尾崎瓣膜的尖端运动学相似,而人工瓣膜与它们明显不同。结论:与人工瓣膜相比,Ozaki手术具有良好的流体动力学性能,并具有与天然主动脉瓣相似的尖端运动特征。我们的研究结果表明,Ozaki新瓣膜在许多方面表现出生理行为,这可能有助于有益的临床结果。
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来源期刊
Interactive cardiovascular and thoracic surgery
Interactive cardiovascular and thoracic surgery CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
3.30
自引率
0.00%
发文量
292
审稿时长
2-4 weeks
期刊介绍: Interactive CardioVascular and Thoracic Surgery (ICVTS) publishes scientific contributions in the field of cardiovascular and thoracic surgery, covering all aspects of surgery of the heart, vessels and the chest. The journal publishes a range of article types including: Best Evidence Topics; Brief Communications; Case Reports; Original Articles; State-of-the-Art; Work in Progress Report.
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