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二次谐波成像是一种有潜力的用于分期妊娠和预测早产的工具。

Second harmonic generation imaging as a potential tool for staging pregnancy and predicting preterm birth.

机构信息

University of Texas Southwestern Medical Center, Department of Obstetrics and Gynecology, 5323 Harry Hines Boulevard, Dallas, Texas 75390, USA.

出版信息

J Biomed Opt. 2010 Mar-Apr;15(2):026020. doi: 10.1117/1.3381184.

Abstract

We use second harmonic generation (SHG) microscopy to assess changes in collagen structure of murine cervix during cervical remodeling of normal pregnancy and in a preterm birth model. Visual inspection of SHG images revealed substantial changes in collagen morphology throughout normal gestation. SHG images collected in both the forward and backward directions were analyzed quantitatively for changes in overall mean intensity, forward to backward intensity ratio, collagen fiber size, and porosity. Changes in mean SHG intensity and intensity ratio take place in early pregnancy, suggesting that submicroscopic changes in collagen fibril size and arrangement occur before macroscopic changes become evident. Fiber size progressively increased from early to late pregnancy, while pores between collagen fibers became larger and farther apart. Analysis of collagen features in premature cervical remodeling show that changes in collagen structure are dissimilar from normal remodeling. The ability to quantify multiple morphological features of collagen that characterize normal cervical remodeling and distinguish abnormal remodeling in preterm birth models supports future studies aimed at development of SHG endoscopic devices for clinical assessment of collagen changes during pregnancy in women and for predicting risk of preterm labor which occurs in 12.5% of all pregnancies.

摘要

我们使用二次谐波产生(SHG)显微镜来评估正常妊娠宫颈重塑过程中和早产模型中小鼠宫颈胶原结构的变化。通过 SHG 图像的直观检查,我们发现胶原形态在整个正常妊娠过程中发生了显著变化。对沿前后两个方向采集的 SHG 图像进行了整体平均强度、前向后强度比、胶原纤维大小和孔隙率的定量分析。在妊娠早期出现了 SHG 强度和强度比的变化,这表明在宏观变化变得明显之前,胶原纤维大小和排列的亚微观变化已经发生。纤维大小从妊娠早期到晚期逐渐增加,而胶原纤维之间的孔隙则变得更大且相隔更远。对早产宫颈重塑过程中胶原结构变化的分析表明,胶原结构的变化与正常重塑不同。定量分析正常宫颈重塑过程中胶原的多种形态特征,并区分早产模型中的异常重塑的能力,为未来开发用于评估女性妊娠期间胶原变化和预测早产风险的 SHG 内镜设备的研究提供了支持,早产风险在所有妊娠中占 12.5%。

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