OCT angiography in the monitoring of vaginal health.

IF 6.6 3区 医学 Q1 ENGINEERING, BIOMEDICAL APL Bioengineering Pub Date : 2023-11-07 eCollection Date: 2023-12-01 DOI:10.1063/5.0153461
Saijun Qiu, Afiba Arthur, Yuchen Jiang, Yusi Miao, Yan Li, Jingyi Wang, Yona Tadir, Felicia Lane, Zhongping Chen
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Abstract

Fractional-pixel CO2 laser therapy shows promise for treating the genitourinary syndrome of menopause (GSM). Nevertheless, it remains controversial in the field of female pelvic medicine. This is due to the inherent difficulties in obtaining noninvasive biopsies to evaluate the treatment's efficacy and safety objectively. To address this challenge, we developed a noninvasive intravaginal optical coherence tomography (OCT)/OCT angiography (OCTA) endoscopic system, whose probe features a shape identical to the laser treatment probe. This system can provide high-resolution OCT images to identify the microstructure of vaginal tissue and visualize the vasculature network in vivo. We conducted clinical research on 25 post-menopausal patients with GSM. OCT/OCTA scans were acquired at four different locations of the vagina (distal anterior, distal posterior, proximal anterior, and proximal posterior) during the whole laser treatment session. A U-Net deep learning model was applied to segment the vaginal epithelium for assessing vaginal epithelial thickness (VET). Blood vessel density and VET were quantified to monitor the efficacy of fractional-pixel CO2 laser therapy. Statistical correlation analyses between these metrics and other clinical scores were conducted, validating the utility of our system. This OCT/OCTA endoscopic system has great potential to serve as a noninvasive biopsy tool in gynecological studies to screen, evaluate, and guide laser treatment for GSM.

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OCT血管造影术在阴道健康监测中的应用。
部分像素CO2激光治疗有望治疗更年期泌尿生殖系统综合征(GSM)。尽管如此,它在女性盆腔医学领域仍然存在争议。这是由于在获得非侵入性活检以客观评估治疗的疗效和安全性方面存在固有的困难。为了应对这一挑战,我们开发了一种非侵入性阴道内光学相干断层扫描(OCT)/OCT血管造影术(OCTA)内窥镜系统,其探针形状与激光治疗探针相同。该系统可以提供高分辨率OCT图像,以识别阴道组织的微观结构并可视化体内的脉管系统网络。我们对25例绝经后GSM患者进行了临床研究。在整个激光治疗期间,在阴道的四个不同位置(前远端、后远端、前近端和后近端)进行OCT/OCTA扫描。应用U-Net深度学习模型对阴道上皮进行分割,以评估阴道上皮厚度(VET)。对血管密度和VET进行量化,以监测分数像素CO2激光治疗的疗效。在这些指标和其他临床评分之间进行了统计相关性分析,验证了我们系统的实用性。该OCT/OCTA内窥镜系统具有巨大的潜力,可作为妇科研究中的非侵入性活检工具,筛查、评估和指导GSM的激光治疗。
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来源期刊
APL Bioengineering
APL Bioengineering ENGINEERING, BIOMEDICAL-
CiteScore
9.30
自引率
6.70%
发文量
39
审稿时长
19 weeks
期刊介绍: APL Bioengineering is devoted to research at the intersection of biology, physics, and engineering. The journal publishes high-impact manuscripts specific to the understanding and advancement of physics and engineering of biological systems. APL Bioengineering is the new home for the bioengineering and biomedical research communities. APL Bioengineering publishes original research articles, reviews, and perspectives. Topical coverage includes: -Biofabrication and Bioprinting -Biomedical Materials, Sensors, and Imaging -Engineered Living Systems -Cell and Tissue Engineering -Regenerative Medicine -Molecular, Cell, and Tissue Biomechanics -Systems Biology and Computational Biology
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