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A surgical confocal microlaparoscope for real-time optical biopsies.

机译:用于实时光学活检的外科共聚焦显微腹腔镜。

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摘要

The first real-time fluorescence confocal microlaparoscope has been developed that provides instant in vivo cellular images, comparable to those provided by histology, through a nondestructive procedure. The device includes an integrated contrast agent delivery mechanism and a computerized depth scan system. The instrument uses a fiber bundle to relay the image plane of a slit-scan confocal microlaparoscope into tissue. The confocal laparoscope was used to image the ovaries of twenty-one patients in vivo using fluorescein sodium and acridine orange as the fluorescent contrast agents.;The results indicate that the device is safe and functions as designed. A Monte Carlo model was developed to characterize the system performance in a scattering media representative of human tissues. The results indicate that a slit aperture has limited ability to image below the surface of tissue. In contrast, the results show that multi-pinhole apertures such as a Nipkow disk or a linear pinhole array can achieve nearly the same depth performance as a single pinhole aperture. The model was used to determine the optimal aperture spacing for the multi-pinhole apertures.;The confocal microlaparoscope represents a new type of in vivo imaging device. With its ability to image cellular details in real time, it has the potential to aid in the early diagnosis of cancer. Initially, the device may be used to locate unusual regions for guided biopsies. In the long term, the device may be able to supplant traditional biopsies and allow the surgeon to identify early stage cancer in vivo.
机译:已经开发出第一台实时荧光共聚焦显微腹腔镜,其通过无损程序提供了与组织学所提供的图像相当的即时体内细胞图像。该设备包括一个集成的造影剂传输机制和一个计算机化的深度扫描系统。该仪器使用纤维束将狭缝扫描共聚焦微腹腔镜的图像平面中继到组织中。共聚焦腹腔镜使用荧光素钠和a啶橙作为荧光造影剂,对二十一例患者的卵巢进行了成像。结果表明该装置安全可靠,设计合理。开发了蒙特卡洛模型以表征在代表人体组织的散射介质中的系统性能。结果表明,狭缝孔在组织表面以下成像的能力有限。相反,结果表明,诸如Nipkow圆盘或线性针孔阵列之类的多针孔孔径可以实现与单个针孔孔径几乎相同的深度性能。该模型用于确定多针孔孔径的最佳孔径间隔。共焦微腹腔镜代表一种新型的体内成像设备。凭借其实时成像细胞细节的能力,它有可能有助于癌症的早期诊断。最初,该设备可用于定位引导活检的异常区域。从长远来看,该设备可能能够取代传统的活组织检查,并允许外科医生在体内识别早期癌症。

著录项

  • 作者

    Tanbakuchi, Anthony Amir.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Biomedical.;Physics Optics.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 214 p.
  • 总页数 214
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;光学;肿瘤学;
  • 关键词

  • 入库时间 2022-08-17 11:37:41

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