Zhang Jinke, Du Meng, Fang JInghui, Lv Shengmiao, Lou Wenjin, Xie Zhihua, Chen Zhiyi, Gong Xiaojing
Research Center for Biomedical Optics and Molecular Imaging, Shenzhen Key Laboratory for Molecular Imaging, Guangdong Provincial Key Laboratory of Biomedical Optical Imaging Technology, CAS Key Laboratory of Health Informatics, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.
Equal contribution.
Biomed Opt Express. 2022 Apr 4;13(5):2554-2565. doi: 10.1364/BOE.453191. eCollection 2022 May 1.
Female infertilities are highly associated with poor endometrial receptivity. A receptive endometrium is generally characterized by the normal uterine cavity, intact endometrial surface, appropriate endometrial thickness, and echo pattern. Acquiring comprehensive structural information is the prerequisite of endometrium assessment, which is beyond the ability of any single-modality imaging method. In this paper, we introduce a custom-made intrauterine dual-modality (OCT/ultrasound) endoscopic imaging system and achieve imaging of rabbit uteri, for the first time to our knowledge. The endometrial features of the injured uteri in both ultrasonic and OCT images are consistent with their corresponding pathology. The quantified parameters, including uterine thickness and endometrial surface roughness, show the correlation with the endometrial injury degree but with poor performance for injury classification. The combination of these parameters was proved to assess the degrees of endometrial injury more accurately. Our work shows the potential of the dual-modality system to be translated into a clinical tool, providing multiple quantitative imaging information and helping evaluate the endometrial receptivity and diagnose infertility.
女性不孕症与子宫内膜容受性差密切相关。具有容受性的子宫内膜通常具有正常的子宫腔、完整的子宫内膜表面、合适的子宫内膜厚度和回声模式。获取全面的结构信息是子宫内膜评估的前提,这超出了任何单一模态成像方法的能力。在本文中,我们介绍了一种定制的宫内双模态(光学相干断层扫描/超声)内镜成像系统,并首次实现了对兔子宫的成像。超声图像和光学相干断层扫描图像中受损子宫的子宫内膜特征与其相应的病理学特征一致。包括子宫厚度和子宫内膜表面粗糙度在内的量化参数显示出与子宫内膜损伤程度的相关性,但在损伤分类方面表现不佳。这些参数的组合被证明能更准确地评估子宫内膜损伤程度。我们的工作表明,这种双模态系统有潜力转化为临床工具,提供多种定量成像信息,有助于评估子宫内膜容受性和诊断不孕症。