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The ideal mesh?

机译:理想的网格?

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摘要

Currently, more than 200 different textile constructions, so-called 'meshes', are available for use world-wide in the more than 20 million operations performed annually for the reinforcement of tissues. As any reintervention at the mesh-tissue compound is a surgical challenge, sometimes resulting in almost untreatable defects, huge efforts are being made to improve the biological and functional performance of the meshes. Based on numerous experimental and clinical studies in the past 20 years, our understanding of them has improved markedly. This includes the biomechanical aspects and the histopathological evaluation of the recipient tissue. Sufficiently large pores as well as structural stability in case of mechanical strain have been identified to be crucial to reduce excessive inflammation and fibrosis. Furthermore, large pores prevent bridging of the foreign body reaction through the pore and thereby help to reduce clinical adverse events as erosion, shrinkage or pain. However, with regard to the many different indications for meshes, there will never be one single ideal mesh for all purposes. To achieve an optimal performance, every construction should be designed according to the specific functional requirements, charging the surgeon to identify the best mesh for his purpose.
机译:目前,全世界每年有超过200万种用于组织增强的手术可使用200多种不同的纺织品结构,即所谓的“网眼”。由于对网状组织复合物的任何再次干预都是外科手术的挑战,有时会导致几乎无法治愈的缺陷,因此人们正在做出巨大的努力来改善网状体的生物学和功能性能。根据过去20年的大量实验和临床研究,我们对它们的了解已显着改善。这包括生物力学方面和受体组织的组织病理学评估。已经发现足够大的孔以及在机械应变情况下的结构稳定性对于减少过度的炎症和纤维化至关重要。此外,大孔可防止异物通过孔桥接,从而有助于减少临床不良事件,如糜烂,皱缩或疼痛。但是,关于网格的许多不同指示,对于所有目的,永远不会有一个理想的网格。为了获得最佳性能,应根据特定的功能要求设计每种结构,并要求外科医生根据自己的目的确定最佳的网格。

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