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血管到假体大小不匹配在静脉瓣功能中的作用。

Role of vessel-to-prosthesis size mismatch in venous valve performance.

机构信息

Department of Mechanical Engineering, National Taiwan University of Science and Technology, Taipei, Taiwan.

California Medical Innovations Institute, San Diego, Calif.

出版信息

J Vasc Surg Venous Lymphat Disord. 2017 Jan;5(1):105-113.e1. doi: 10.1016/j.jvsv.2016.08.004. Epub 2016 Sep 29.

Abstract

BACKGROUND

Efforts to treat chronic venous insufficiency have focused on the development of prosthetic venous valves. The role of prosthetic valve-to-vessel size matching has not been determined. The purpose of this investigation was to assess the effect of size mismatching on venous valve function and to establish a mismatch limit that affects valve hemodynamic performance and venous wall stress to improve future valve designs and implants.

METHODS

Flow dynamics of prosthetic venous valves were studied in vitro using a pulse duplicator flow loop. Valve performance based on flow rate and pressure measurements was determined at oversizing ratios ranging from 4.2% to 25%. Valve open area ratios at different size mismatching ratios were investigated by image analysis. Finally, a wall stress analysis was used to determine the magnitude of circumferential (hoop) stress in the venous wall at various degrees of oversizing.

RESULTS

Our findings indicate that valve regurgitate volume, closing time, and pressure difference across the valve are significantly elevated at mismatch ratios greater than ∼15%. This is supported by increases in regurgitate velocity and open area relative to valves tested at near-nominal diameters. At this degree of size mismatch, the wall stress is increased by a factor of two to three times relative to physiologic pressures.

CONCLUSIONS

These findings establish a relationship between valve size matching and valve hemodynamic performance, including vessel wall stress, which should be considered in future valve implants. The size of the prosthetic valve should be within 15% of maximum vein size to optimize venous valve hemodynamic performance and to minimize the hoop wall stress.

摘要

背景

治疗慢性静脉功能不全的努力集中在人造静脉瓣膜的开发上。人造瓣膜与血管大小匹配的作用尚未确定。本研究的目的是评估大小不匹配对静脉瓣膜功能的影响,并确定一个不匹配限制,以影响瓣膜血流动力学性能和静脉壁应力,从而改进未来的瓣膜设计和植入物。

方法

使用脉动复制器流回路在体外研究人造静脉瓣膜的流动动力学。根据流量和压力测量确定在超过尺寸比为 4.2%至 25%的范围内的瓣膜性能。通过图像分析研究不同尺寸不匹配比的瓣膜开启面积比。最后,使用壁应力分析来确定在不同过度尺寸比下静脉壁的周向(环向)应力的大小。

结果

我们的发现表明,在不匹配比大于约 15%时,瓣膜反流量、关闭时间和瓣膜两端的压差显著升高。这与在接近标称直径测试的瓣膜相比,反流速度和开启面积的增加是一致的。在这种程度的尺寸不匹配下,壁应力相对于生理压力增加了两到三倍。

结论

这些发现确立了瓣膜尺寸匹配与瓣膜血流动力学性能之间的关系,包括血管壁应力,这应在未来的瓣膜植入物中加以考虑。人造瓣膜的尺寸应在最大静脉尺寸的 15%以内,以优化静脉瓣膜血流动力学性能并最小化环向壁应力。

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