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新型可吸收聚己内酯瓣叶无缝线球囊扩张式胎儿心脏瓣膜装置的研制。

Development of Novel Sutureless Balloon Expandable Fetal Heart Valve Device Using Absorbable Polycaprolactone Leaflets.

机构信息

Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Office 232, 387 Technology Circle NW, Suite 200, Atlanta, GA, 30313-2412, USA.

The Heart Center, Nationwide Children's Hospital, 700 Children's Dr., Columbus, OH, 43205, USA.

出版信息

Ann Biomed Eng. 2024 Feb;52(2):386-395. doi: 10.1007/s10439-023-03386-9. Epub 2023 Oct 20.

DOI:10.1007/s10439-023-03386-9
PMID:37864043
Abstract

Congenital heart disease (CHD) accounts for nearly one-third of all congenital defects, and patients often require repeated heart valve replacements throughout their lives, due to failed surgical repairs and lack of durability of bioprosthetic valve implants. This objective of this study is to develop and in vitro test a fetal transcatheter pulmonary valve replacement (FTPVR) using sutureless techniques to attach leaflets, as an option to correct congenital defects such as pulmonary atresia with intact ventricular septum (PA/IVS), in utero. A balloon expandable design was analyzed using computational simulations to identify areas of failure. Five manufactured valves were assembled using the unique sutureless approach and tested in the fetal right heart simulator (FRHS) to evaluate hemodynamic characteristics. Computational simulations showed that the commissural loads on the leaflet material were significantly reduced by changing the attachment techniques. Hemodynamic analysis showed an effective orifice area of 0.08 cm, a mean transvalvular pressure gradient of 7.52 mmHg, and a regurgitation fraction of 8.42%, calculated over 100 consecutive cardiac cycles. In conclusion, the FTPVR exhibited good hemodynamic characteristics, and studies with biodegradable stent materials are underway.

摘要

先天性心脏病(CHD)占所有先天性缺陷的近三分之一,由于手术修复失败和生物假体瓣膜植入物缺乏耐久性,患者通常需要在其一生中多次更换心脏瓣膜。本研究的目的是开发一种使用无针线技术连接瓣叶的胎儿经导管肺动脉瓣置换术(FTPVR),作为一种在子宫内纠正先天性缺陷(如伴有完整室间隔的肺动脉瓣闭锁(PA/IVS))的选择。使用计算模拟分析了一种球囊可扩张设计,以确定失效区域。使用独特的无针线技术组装了五个制造的瓣膜,并在胎儿右心模拟器(FRHS)中进行测试,以评估血液动力学特性。计算模拟表明,通过改变连接技术,瓣叶材料上的交界负荷显著降低。血流动力学分析显示,在 100 个连续心动周期中,有效瓣口面积为 0.08cm,平均跨瓣压差为 7.52mmHg,反流分数为 8.42%。总之,FTPVR 表现出良好的血液动力学特性,正在进行使用可生物降解支架材料的研究。

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Tissue engineered vascular grafts transform into autologous neovessels capable of native function and growth.组织工程血管移植物可转化为具有天然功能和生长能力的自体新血管。
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Development of Tissue Engineered Heart Valves for Percutaneous Transcatheter Delivery in a Fetal Ovine Model.用于经皮导管输送的组织工程心脏瓣膜在胎儿绵羊模型中的研发
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Spontaneous reversal of stenosis in tissue-engineered vascular grafts.组织工程血管移植物狭窄的自发逆转。
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Fetal Transcatheter Trileaflet Heart Valve Hemodynamics: Implications of Scaling on Valve Mechanics and Turbulence.胎儿经导管三叶式心脏瓣膜血流动力学:对瓣膜力学和湍流的缩放影响。
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