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首页> 外文期刊>Journal of biomedical materials research, Part A >Elongation of textile pelvic floor implants under load is related to complete loss of effective porosity, thereby favoring incorporation in scar plates
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Elongation of textile pelvic floor implants under load is related to complete loss of effective porosity, thereby favoring incorporation in scar plates

机译:载荷下织物骨盆底植入物的伸长与有效孔隙率的完全丧失有关,因此有利于整合在疤痕板上

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摘要

Use of textile structures for reinforcement of pelvic floor structures has to consider mechanical forces to the implant, which are quite different to the tension free conditions of the abdominal wall. Thus, biomechanical analysis of textile devices has to include the impact of strain on stretchability and effective porosity. Prolift? and Prolift + M?, developed for tension free conditions, were tested by measuring stretchability and effective porosity applying mechanical strain. For comparison, we used Dynamesh-PR4?, which was designed for pelvic floor repair to withstand mechanical strain. Prolift? at rest showed moderate porosity with little stretchability but complete loss of effective porosity at strain of 4.9 N/cm. Prolift + M? revealed an increased porosity at rest, but at strain showed high stretchability, with subsequent loss of effective porosity at strain of 2.5 N/cm. Dynamesh PR4? preserved its high porosity even under strain, but as consequence of limited stretchability. Though in tension free conditions Prolift? and Prolift + M? can be considered as large pore class I meshes, application of mechanical strain rapidly lead to collapse of pores. The loss of porosity at mechanical stress can be prevented by constructions with high structural stability. Assessment of porosity under strain was found helpful to define requirements for pelvic floor devices. Clinical studies have to prove whether devices with high porosity as well as high structural stability can improve the patients' outcome.
机译:使用纺织结构加固骨盆底结构必须考虑对植入物的机械力,该机械力与腹壁的无张力状态完全不同。因此,纺织品装置的生物力学分析必须包括应变对拉伸性和有效孔隙率的影响。 Prolift?通过测量可拉伸性和施加机械应变的有效孔隙率,测试了在无张力条件下开发的Prolift + M3和Prolift + M2。为了进行比较,我们使用了Dynamesh-PR4 ?,该产品设计用于骨盆底修复以承受机械应力。 Prolift?静止时显示出适中的孔隙率,几乎没有拉伸性,但在4.9 N / cm应变时完全丧失了有效孔隙率。 Prolift + M?揭示了在静止时孔隙率增加,但在应变时显示出高拉伸性,随后在2.5 N / cm应变时失去了有效孔隙率。 Dynamesh PR4?即使在应变下也能保持其高孔隙率,但是由于拉伸性有限。虽然处于无张力状态,Prolift吗?和Prolift + M?可以认为是I类大孔网,施加机械应变会迅速导致孔坍塌。具有高结构稳定性的构造可以防止机械应力下的孔隙率损失。发现在应变下的孔隙率评估有助于确定骨盆底装置的要求。临床研究必须证明具有高孔隙率和高结构稳定性的设备是否可以改善患者的预后。

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