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Optical design of an optical coherence tomography and multispectral fluorescence imaging endoscope to detect early stage ovarian cancer

机译:光学相干断层扫描和多光谱荧光成像内窥镜检测早期卵巢癌的光学设计

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The five year survival rate for ovarian cancer is over 90% if early detection occurs, yet no effective early screening method exists. We have designed and are constructing a dual modality Optical Coherence Tomography (OCT) and Multispectral Fluorescence Imaging (MFI) endoscope to optically screen the Fallopian tube and ovary for early stage cancer. The endoscope reaches the ovary via the natural pathway of the vagina, cervix, uterus and Fallopian tube. In order to navigate the Fallopian tube the endoscope must have an outer diameter of 600 μm, be highly flexible, steerable, tracking and non-perforating. The imaging systems consists of six optical subsystems, two from OCT and four from MFI. The optical subsystems have independent and interrelated design criteria. The endoscope will be tested on realistic tissue models and ex vivo tissue to prove feasibility of future human trials. Ultimately the project aims to provide women the first effective ovarian cancer screening technique.
机译:如果能及早发现,卵巢癌的五年生存率将超过90%,但尚无有效的早期筛查方法。我们已经设计并正在构建双模态光学相干断层扫描(OCT)和多光谱荧光成像(MFI)内窥镜,以光学筛查输卵管和卵巢以检测早期癌症。内窥镜通过阴道,子宫颈,子宫和输卵管的自然通路到达卵巢。为了导航输卵管,内窥镜必须具有600μm的外径,并且具有高度的柔韧性,可操纵性,跟踪性和非穿孔性。成像系统由六个光学子系统组成,其中两个来自OCT,四个来自MFI。光学子系统具有独立且相互关联的设计标准。内窥镜将在现实的组织模型和离体组织上进行测试,以证明未来人类试验的可行性。该项目最终旨在为女性提供首个有效的卵巢癌筛查技术。

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