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首页> 外文期刊>Scientific reports. >Ovine multiparity is associated with diminished vaginal muscularis, increased elastic fibres and vaginal wall weakness: implication for pelvic organ prolapse
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Ovine multiparity is associated with diminished vaginal muscularis, increased elastic fibres and vaginal wall weakness: implication for pelvic organ prolapse

机译:绵羊多装是与阴道肌肉减弱,增加的弹性纤维和阴道壁弱点有关:对骨盆器官脱垂的含义

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Pelvic Organ Prolapse (POP) is a major clinical burden affecting 25% of women, with vaginal delivery a major contributing factor. We hypothesised that increasing parity weakens the vagina by altering the extracellular matrix proteins and smooth muscle thereby leading to POP vulnerability. We used a modified POP-quantification (POP-Q) system and a novel pressure sensor to measure vaginal wall weakness in nulliparous, primiparous and multiparous ewes. These measurements were correlated with histological, biochemical and biomechanical properties of the ovine vagina. Primiparous and multiparous ewes had greater displacement of vaginal tissue compared to nulliparous at points Aa, Ap and Ba and lower pressure sensor measurements at points equivalent to Ap and Ba. Vaginal wall muscularis of multiparous ewes was thinner than nulliparous and had greater elastic fibre content. Collagen content was lower in primiparous than nulliparous ewes, but collagen organisation did not differ. Biomechanically, multiparous vaginal tissue was weaker and less stiff than nulliparous. Parity had a significant impact on the structure and function of the ovine vaginal wall, as the multiparous vaginal wall was weaker and had a thinner muscularis than nulliparous ewes. This correlated with “POP-Q” and pressure sensor measurements showing greater tissue laxity in multiparous compared to nulliparous ewes.
机译:骨盆器官脱垂(POP)是影响25%女性的主要临床负担,阴道分娩是一个主要的贡献因素。我们假设通过改变细胞外基质蛋白和平滑肌越来越平滑的平滑肌肉,越来越多的平位削弱了阴道。我们使用了修改的POP - 量化(POP-Q)系统和新型压力传感器,以测量无流动,初始和多气体母羊中的阴道壁虚弱。这些测量与绵羊阴道的组织学,生物化学和生物力学性质相关。与点AA,AP和BA的无尺寸,在相当于AP和BA的点,初步和多体EWE具有更大的阴道组织位移。多体EWES的阴道壁肌肉肌肉稀疏而不是嵌入的,具有更大的弹性纤维含量。初步性比嵌入母羊血脂含量较低,但胶原蛋白组织没有差异。生物力学,多种阴道组织较弱,较小而不是无流动。奇偶校验对绵羊阴道壁的结构和功能产生了重大影响,因为多体阴道壁较弱并且具有比无损伤的母羊更薄的肌肉。与无流体母线相比,这种与“POP-Q”和压力传感器测量相关的压力传感器测量相关。

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