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用于脱垂修复的倒刺缝线的机械生物相容性评估。

Evaluation of mechanical biocompatibility of cog threads for prolapse repair.

作者信息

Ferreira N M, Silva M E T, Parente M P L, Pinheiro F, Mascarenhas T, Fernandes A A

机构信息

LAETA, INEGI, University of Porto, Porto, Portugal.

LAETA, INEGI, Porto, Portugal.

出版信息

Proc Inst Mech Eng H. 2025 Feb;239(2):155-164. doi: 10.1177/09544119251321130. Epub 2025 Apr 2.

Abstract

Pelvic floor disorders (PFD), including Pelvic Organ Prolapse (POP), can negatively impact a woman's daily activities and quality of life. POP is a growing concern, with an increasing number of cases each year and significant numbers of women going through surgery to alleviate it. Traditional interventions like the use of mesh implants have certain limitations such as repeated surgeries. An alternative surgical intervention technique using injectable biodegradable cog threads was suggested. The application of Finite element analysis (FEA) to this research allows us to personalize and select suitable POP correction techniques and study the effect of alternative reinforcement techniques. The 3D computational model of the vagina will be used to simulate defect repair using cog threads. To accurately model this, we conducted uniaxial tensile tests on both the polycaprolactone (PCL) cog threads and the sow's vaginal tissues, which mimic human tissue, providing vital data for precise finite element modeling. The study's findings suggest that cog threads may have the potential to provide benefits in the treatment of POP. This study provides a starting point for further research on cog threads as one possible treatment option for POP.

摘要

盆底功能障碍(PFD),包括盆腔器官脱垂(POP),会对女性的日常活动和生活质量产生负面影响。POP日益受到关注,每年病例数不断增加,大量女性接受手术以缓解该问题。像使用网状植入物这样的传统干预措施存在某些局限性,例如需要重复手术。有人提出了一种使用可注射生物可降解齿状线的替代性手术干预技术。将有限元分析(FEA)应用于这项研究,使我们能够个性化并选择合适的POP矫正技术,并研究替代性加固技术的效果。阴道的三维计算模型将用于模拟使用齿状线进行缺损修复。为了对此进行精确建模,我们对聚己内酯(PCL)齿状线和模拟人体组织的母猪阴道组织进行了单轴拉伸试验,为精确的有限元建模提供了重要数据。该研究结果表明,齿状线可能在POP治疗中具有潜在益处。这项研究为进一步研究齿状线作为POP的一种可能治疗选择提供了一个起点。

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