Cochran R P, Kunzelman K S
Department of Surgery, University of Washington, Seattle 98195.
J Card Surg. 1991 Dec;6(4):508-13. doi: 10.1111/j.1540-8191.1991.tb00352.x.
Recent reports have advocated the use of polytetrafluoroethylene (PTFE) suture for replacement or reinforcement of ruptured or elongated mitral valve chordae tendineae. The mechanical properties of PTFE (Gore-Tex) and other sutures were determined and compared to those of porcine mitral valve chordae. The results were analyzed to assess how closely chordal mechanical function may be simulated by synthetic suture materials. Chordae tendineae and suture samples were tested in uniaxial tension using an INSTRON Model 1000 at strain rates of 5 and 10 mm/min. The stress (g/mm2) was plotted versus strain, and the elastic modulus determined as the slope of the curve. Chordae tendineae exhibited a nonlinear viscoelastic stress/strain behavior. The elastic modulus of both suture types tested was significantly higher than that of the chordae. However, the PTFE suture did exhibit some viscoelastic characteristics (hysteresis and creep) that begin to approach the chordal behavior. Chordal viscoelastic behavior results from the inherent composite structure (collagen, elastin, endothelium, water, and ground substance). As yet, no synthetic materials are able to imitate this behavior with the appropriate tensile strength and fatigue resistant characteristics. At present, PTFE appears to be the best synthetic alternative for chordal replacement, due to its limited viscoelastic capabilities. Nevertheless, the need to more nearly approximate the mechanical behavior of mitral valve chordae tendineae with synthetic material warrants further investigation.
近期报告主张使用聚四氟乙烯(PTFE)缝线来替换或加固破裂或拉长的二尖瓣腱索。测定了PTFE(戈尔特斯)和其他缝线的力学性能,并与猪二尖瓣腱索的力学性能进行比较。对结果进行分析,以评估合成缝线材料模拟腱索力学功能的接近程度。使用英斯特朗1000型材料试验机,以5毫米/分钟和10毫米/分钟的应变速率对腱索和缝线样本进行单轴拉伸测试。绘制应力(克/平方毫米)与应变的关系图,并将弹性模量确定为曲线的斜率。腱索呈现出非线性粘弹性应力/应变行为。所测试的两种缝线类型的弹性模量均显著高于腱索的弹性模量。然而,PTFE缝线确实表现出一些粘弹性特征(滞后和蠕变),开始接近腱索的行为。腱索的粘弹性行为源于其固有的复合结构(胶原蛋白、弹性蛋白、内皮、水和基质)。目前,尚无合成材料能够在具备适当拉伸强度和抗疲劳特性的情况下模仿这种行为。目前,由于其有限的粘弹性能力,PTFE似乎是腱索置换的最佳合成替代品。尽管如此,用合成材料更接近二尖瓣腱索力学行为的需求仍值得进一步研究。