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双轴加载下被动和主动大鼠阴道的各向异性。

Anisotropy of the Passive and Active Rat Vagina Under Biaxial Loading.

机构信息

STRETCH Laboratory, 330A Kelly Hall, 325 Stanger Street, Virginia Tech, Blacksburg, VA, 24061, USA.

Department of Mechanical and Aerospace Engineering, La Sapienza University, 00184, Rome, Italy.

出版信息

Ann Biomed Eng. 2019 Jan;47(1):272-281. doi: 10.1007/s10439-018-02117-9. Epub 2018 Aug 22.

Abstract

Pelvic organ prolapse, the descent of the pelvic organs from their normal anatomical position, is a common condition among women that is associated with mechanical alterations of the vaginal wall. In order to characterize the complex mechanical behavior of the vagina, we performed planar biaxial tests of vaginal specimens in both the passive (relaxed) and active (contracted) states. Specimens were isolated from virgin, female Long-Evans rats (n = 16) and simultaneously stretched along the longitudinal direction (LD) and circumferential direction (CD) of the vagina. Tissue contraction was induced by electric field stimulation (EFS) at incrementally increasing values of stretch and, subsequently, by KCl. On average, the vagina was stiffer in the CD than in the LD (p < 0.001). The mean maximum EFS-induced active stress was significantly higher in the CD than in the LD (p < 0.01). On the contrary, the mean KCl-induced active stress was lower in the CD than in the LD (p < 0.01). When comparing the mean maximum EFS-induced active stress to the mean KCl-induced active stress, no differences were found in the CD (p = 0.366) but, in the LD, the mean active stress was much higher in response to the KCl stimulation (p < 0.001). Collectively, these results suggest that the anisotropic behavior of the vaginal tissue is determined not only by collagen and smooth muscle fiber organization but also by the innervation.

摘要

盆腔器官脱垂是指盆腔器官从正常解剖位置下降,是一种常见于女性的疾病,与阴道壁的机械改变有关。为了描述阴道的复杂力学行为,我们对处于被动(松弛)和主动(收缩)状态的阴道标本进行了平面双轴测试。标本取自处女雌性长耳大仓鼠(n=16),并同时沿阴道的纵向(LD)和周向(CD)方向拉伸。通过电场刺激(EFS)在逐渐增加的拉伸值和随后的 KCl 诱导组织收缩。平均而言,阴道在 CD 方向上比在 LD 方向上更硬(p<0.001)。EFS 诱导的主动应力的平均最大值在 CD 方向上明显高于 LD 方向(p<0.01)。相反,CD 方向上 KCl 诱导的主动应力的平均最大值低于 LD 方向(p<0.01)。比较 EFS 诱导的平均最大主动应力与 KCl 诱导的平均主动应力,在 CD 方向上没有差异(p=0.366),但在 LD 方向上,KCl 刺激引起的主动应力要高得多(p<0.001)。综上所述,这些结果表明,阴道组织的各向异性行为不仅由胶原和平滑肌纤维组织决定,还由神经支配决定。

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