Brandão Sofia, Da Roza Thuane, Parente Marco, Ramos Isabel, Mascarenhas Teresa, Natal Jorge Renato M
Department of Radiology, Centro Hospitalar de São João-EPE, Porto, Portugal.
Proc Inst Mech Eng H. 2013 Dec;227(12):1324-32. doi: 10.1177/0954411913502952. Epub 2013 Sep 12.
This article reviews the current role of magnetic resonance imaging in the study of the pelvic floor anatomy and pelvic floor dysfunction. The application of static and dynamic magnetic resonance imaging in the clinical context and for biomechanical simulation modeling is assessed, and the main findings are summarized. Additionally, magnetic resonance-based diffusion tensor imaging is presented as a potential tool to evaluate muscle fiber morphology. In this article, focus is set on pelvic floor muscle damage related to urinary incontinence and pelvic organ prolapse, sometimes as a consequence of vaginal delivery. Modeling applications that evaluate anatomical and physiological properties of pelvic floor are presented to further illustrate their particular characteristics. Finally, finite element method is described as a method for modeling and analyzing pelvic floor structures' biomechanical performance, based on material and behavioral properties of the tissues, and considering pressure loads that mimic real-life conditions such as active contraction or Valsalva maneuver.
本文综述了磁共振成像在盆底解剖学和盆底功能障碍研究中的当前作用。评估了静态和动态磁共振成像在临床环境以及生物力学模拟建模中的应用,并总结了主要发现。此外,基于磁共振的扩散张量成像被作为一种评估肌纤维形态的潜在工具进行介绍。在本文中,重点关注与尿失禁和盆腔器官脱垂相关的盆底肌肉损伤,有时这种损伤是阴道分娩的后果。介绍了评估盆底解剖和生理特性的建模应用,以进一步说明其特殊特征。最后,描述了有限元方法,该方法基于组织的材料和行为特性,并考虑模拟诸如主动收缩或瓦尔萨尔瓦动作等现实生活条件的压力负荷,对盆底结构的生物力学性能进行建模和分析。