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Calibration schemes of a field-compatible optical spectroscopic system to quantify neovascular changes in the dysplastic cervix

机译:现场兼容光谱系统的校准方案,用于量化增生子宫颈中的新血管变化

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A significant challenge in detecting cervical pre-cancer in low-resource settings is the lack of effective screening facilities and trained personnel to detect the disease before it is advanced. Light based technologies, particularly quantitative optical spectroscopy, have the potential to provide an effective, low cost, and portable solution for cervical pre-cancer screening in these communities. We have developed and characterized a portable USB-powered optical spectroscopic system to quantify total hemoglobin content, hemoglobin saturation, and reduced scattering coefficient of cervical tissue in vivo. The system consists of a high-power LED as light source, a bifurcated fiber optic assembly, and two USB spectrometers for sample and calibration spectra acquisitions. The system was subsequently tested in Leogane, Haiti, where diffuse reflectance spectra from 33 colposcopically normal sites in 21 patients were acquired. Two different calibration methods, i.e., a post-study diffuse reflectance standard measurement and a real time self-calibration channel were studied. Our results suggest that a self-calibration channel enabled more accurate extraction of scattering contrast through simultaneous real-time correction of intensity drifts in the system. A self-calibration system also minimizes operator bias and required training. Hence, future contact spectroscopy or imaging systems should incorporate a self-calibration channel to reliably extract scattering contrast.
机译:在资源贫乏地区检测子宫颈癌的一个重大挑战是缺乏有效的筛查设备和训练有素的人员来在疾病发展之前对其进行检测。基于光的技术,尤其是定量光谱技术,有可能为这些社区的宫颈癌前筛查提供有效,低成本和便携式的解决方案。我们已经开发并表征了便携式USB供电的光学光谱系统,以量化体内总血红蛋白含量,血红蛋白饱和度和降低的宫颈组织散射系数。该系统由一个高功率LED作为光源,一个分叉的光纤组件以及两个用于采样和校准光谱采集的USB光谱仪组成。该系统随后在海地的Leogane进行了测试,从21例患者的33个阴道镜正常部位获得了漫反射光谱。研究了两种不同的校准方法,即研究后的漫反射标准测量和实时自校准通道。我们的结果表明,自校准通道可通过同时实时校正系统中的强度漂移来更准确地提取散射对比度。自校准系统还可以最大程度地减少操作员的偏见和所需的培训。因此,未来的接触光谱或成像系统应结合自校准通道,以可靠地提取散射对比度。

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