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An integrated strategy for improving contrast, durability, and portability of a Pocket Colposcope for cervical cancer screening and diagnosis

机译:提高口袋高温镜对宫颈癌筛查和诊断的对比度,耐久性和可移植性的综合策略

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摘要

We have previously developed a portable Pocket Colposcope for cervical cancer screening in resource-limited settings. In this manuscript we report two different strategies (cross-polarization and an integrated reflector) to improve image contrast levels achieved with the Pocket Colposcope and evaluate the merits of each strategy compared to a standard-of-care digital colposcope. The desired outcomes included reduced specular reflection (glare), increased illumination beam pattern uniformity, and reduced electrical power budget. In addition, anti-fogging and waterproofing features were incorporated to prevent the Pocket Colposcope from fogging in the vaginal canal and to enable rapid disinfection by submersion in chemical agents.Cross-polarization (Generation 3 Pocket Colposcope) and a new reflector design (Generation 4 Pocket Colposcope) were used to reduce glare and improve contrast. The reflector design (including the angle and height of the reflector sidewalls) was optimized through ray-tracing simulations. Both systems were characterized with a series of bench tests to assess specular reflection, beam pattern uniformity, and image contrast. A pilot clinical study was conducted to compare the Generation 3 and 4 Pocket Colposcopes to a standard-of-care colposcope (Leisegang Optik 2). Specifically, paired images of cervices were collected from the standard-of-care colposcope and either the Generation 3 (n = 24 patients) or the Generation 4 (n = 32 patients) Pocket Colposcopes. The paired images were blinded by device, randomized, and sent to an expert physician who provided a diagnosis for each image. Corresponding pathology was obtained for all image pairs. The primary outcome measures were the level of agreement (%) and κ (kappa) statistic between the standard-of-care colposcope and each Pocket Colposcope (Generation 3 and Generation 4).Both generations of Pocket Colposcope had significantly higher image contrast when compared to the standard-of-care colposcope. The addition of anti-fog and waterproofing features to the Generation 3 and 4 Pocket Colposcope did not impact image quality based on qualitative and quantitative metrics. The level of agreement between the Generation 3 Pocket Colposcope and the standard-of-care colposcope was 75.0% (kappa = 0.4000, p = 0.0028, n = 24). This closely matched the level of agreement between the Generation 4 Pocket Colposcope and the standard-of-care colposcope which was also 75.0% (kappa = 0.4941, p = 0.0024, n = 32).Our results indicate that the Generation 3 and 4 Pocket Colposcopes perform comparably to the standard-of-care colposcope, with the added benefit of being low-cost and waterproof, which is ideal for use in resource-limited settings. Additionally, the reflector significantly reduces the electrical requirements of the Generation 4 Pocket Colposcope enhancing portability without altering performance compared to the Generation 3 system.
机译:我们以前在资源限制的环境中开发了一种用于宫颈癌筛查的便携式击力Colposcope。在本手稿中,我们报告了两种不同的策略(交叉极化和集成反射器),以提高用口袋高温镜实现的图像对比度水平,并与标准的数字COLIPOSCOPER相比评估每个策略的优点。所需的结果包括降低镜面反射(眩光),增加的照明光束图案均匀性和降低的电力预算。此外,防雾和防水功能被合并,以防止袖珍阴道镜从阴道腔雾化和使由在化学agents.Cross极化(第3代掌上阴道镜)和新的反射器设计浸没快速消毒(第4代口袋Coposcope)用于减少眩光并提高对比度。通过射线跟踪模拟优化反射器设计(包括反射器侧壁的角度和高度)。两种系统的特征在于一系列台式测试,以评估镜面反射,光束图案均匀性和图像对比度。进行了试验临床研究以将生成3和4个口袋阴影进行比较到护理标准的Colposcope(Leisegang Optik 2)。具体地,从护理标准岩镜和生成3(n = 24名患者)或生成4(n = 32名患者)口袋阴道镜,收集宫颈配对图像。配对图像被设备,随机化,并发送给为每个图像提供诊断的专家医师。为所有图像对获得相应的病理学。相比时的主要成果的措施,协议(%)和κ(卡帕)统计量之间的标准的护理阴道镜和每个口袋阴道镜(第3代和第4代)。无论是掌上阴道镜的世代有显著更高的图像对比度的水平到标准的COLPOSCOSCOSCOPE。在第3和第4代口袋COLPOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCOSCORACT基于定性和定量度量的抗雾和防水功能的增加。生成3个口袋高温镜和护理标准Colposcope之间的协议水平为75.0%(κ= 0.4000,P = 0.0028,N = 24)。此紧密匹配的第4代的Pocket阴道镜和标准的护理阴道镜这也是75.0%之间的一致程度(卡帕= 0.4941,P = 0.0024,N = 32)。我们的结果表明,第3代和4掌上Colposcepes相当于护理标准Coposcope,具有低成本和防水的额外益处,非常适合用于资源限制的设置。此外,反射器显著降低了第4代掌上阴道镜提高便携性的电气要求,而不改变性能相比第3代系统。

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