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Optimizing modulation frequency for structured illumination in a fiber-optic microendoscope to image nuclear morphometry in columnar epithelium

机译:优化光纤微内窥镜中结构化照明的调制频率以成像柱状上皮细胞的核形态

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Fiber-optic microendoscopes have shown promise to image the changes in nuclear morphometry that accompany the development of precancerous lesions in tissue with squamous epithelium such as in the oral mucosa and cervix. However, fiber-optic microendoscopy image contrast is limited by out-of-focus light generated by scattering within tissue. The scattering coefficient of tissues with columnar epithelium can be greater than that of squamous epithelium resulting in decreased image quality. To address this challenge, we present a small and portable microendoscope system capable of performing optical sectioning using structured illumination (SI) in real-time. Several optical phantoms were developed and used to quantify the sectioning capabilities of the system. Columnar epithelium from cervical tissue specimens was then imaged ex vivo, and we demonstrate that the addition of SI achieves higher image contrast, enabling visualization of nuclear morphology.
机译:光纤显微内窥镜已显示出有望对伴随口腔上皮和子宫颈等鳞状上皮组织癌前病变发展的核形态学变化进行成像的前景。但是,光纤微内窥镜图像的对比度受到组织内散射产生的散焦光的限制。具有柱状上皮的组织的散射系数可能大于鳞状上皮的组织,导致图像质量下降。为了解决这一挑战,我们提出了一种小型便携式微型内窥镜系统,该系统能够使用结构化照明(SI)实时执行光学切片。开发了几种光学体模并将其用于量化系统的切片能力。然后,对离体的宫颈组织标本的柱状上皮进行了体外成像,并且我们证明了SI的添加可获得更高的图像对比度,从而能够可视化核形态。

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