首页> 美国卫生研究院文献>Medical Physics >Three-dimensional imaging of xenograft tumors using optical computed and emission tomography
【2h】

Three-dimensional imaging of xenograft tumors using optical computed and emission tomography

机译:使用光学计算机断层摄影术和放射断层摄影术对异种移植肿瘤进行三维成像

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

The physical basis and preliminary applications of optical computed tomography (optical-CT) and optical emission computed tomography (optical-ECT) are introduced, as new techniques with potential to provide unique 3D information on a variety of aspects of tumor structure and function. A particular focus here is imaging tumor micro-vasculature, and the spatial distribution of viable tumor cells, although the techniques have the potential for much wider application. The principle attractiveness of optical-CT and optical-ECT are that high resolution (<20 μm) and high contrast co-registered 3D images of structure and function can be acquired for relatively large intact samples. The unique combination of high contrast and resolution offers advantages over micro-CT and micro-MRI, and the lack of requirement for sectioning offers advantages over confocal microscopy, conventional microscopy, and histological sectioning techniques. Optical-CT/ECT are implemented using in-house custom apparatus and a commercial dissecting microscope capable of both transmission and fluorescence imaging. Basic studies to characterize imaging performance are presented. Negligible geometrical distortion and accurate reconstruction of relative attenuation coefficients was observed. Optical-CT and optical-ECT are investigated here by application to high resolution imaging of HCT116 xenograft tumors, about 1 cc in dimension, which were transfected with constitutive red fluorescent protein (RFP). Tumor microvasculature was stained in vivo by tail vein injection of either passive absorbing dyes or active fluorescent markers (FITC conjugated lectin). Prior to imaging, the tumors were removed (ex vivo) and optically cleared in a key process to make the samples amenable to light transmission. The cleared tumors were imaged in three modes (i) optical-CT to image the 3D distribution of microvasculature as indicated by absorbing dye, (ii) optical-ECT using the FITC excitation and emission filter set, to determine microvasculature as indicated by lectin-endothelial binding, and (iii) optical-ECT using the DSRed2 filter set to determine the 3D distribution of viable tumor as indicated by RFP emission. A clear correlation was observed between the independent vasculature imaging modes (i) and (ii) and postimaging histo-logical sections, providing substantial validation of the optical-CT and optical-ECT techniques. Strong correlation was also observed between the RFP imaging of mode iii, and modes i and ii, supporting the intuitive conclusion that well-perfused regions contain significant viable tumor. In summary, optical-CT and optical-ECT, when combined with new optical clearing techniques, represent powerful new imaging modalities with potential for providing unique information on the structure and function of tumors.
机译:介绍了光学计算机断层扫描(optical-CT)和光发射计算机断层扫描(optical-ECT)的物理基础和初步应用,这是一种有潜力在肿瘤结构和功能的各个方面提供独特3D信息的新技术。尽管该技术具有广泛应用的潜力,但这里的重点是对肿瘤微脉管系统成像以及活瘤细胞的空间分布。光学CT和光学ECT的原理吸引力在于,对于相对较大的完整样本,可以获得结构和功能的高分辨率(<20μm)和高对比度共配准3D图像。高对比度和分辨率的独特组合提供了优于显微CT和显微MRI的优势,并且无需切片就可以提供优于共聚焦显微镜,常规显微镜和组织学切片技术的优势。使用内部定制设备和能够同时进行透射成像和荧光成像的商业解剖显微镜来实现光学CT / ECT。介绍了表征成像性能的基础研究。观察到可忽略的几何畸变和相对衰减系数的准确重建。本文通过将光学CT和光学ECT用于HCT116异种移植肿瘤的高分辨率成像,尺寸约为1 cc,并用组成型红色荧光蛋白(RFP)转染。通过尾静脉注射被动吸收染料或主动荧光标记物(FITC共轭凝集素)在体内对肿瘤微脉管进行染色。在成像之前,将肿瘤切除(离体)并在关键过程中进行光学清除,以使样品易于透光。清除的肿瘤以三种模式成像:(i)光学CT成像,以吸收染料指示微血管的3D分布;(ii)使用FITC激发和发射滤光片组进行光学ECT,以确定凝集素-指示的微血管内皮结合,以及(iii)使用DSRed2滤光片组进行光学ECT以确定活体肿瘤的3D分布,如RFP发射所示。在独立的血管成像模式(i)和(ii)与成像后的组织学切片之间观察到明显的相关性,从而为光学CT和光学ECT技术提供了实质性的验证。在模式iii的RFP成像与模式i和ii的RFP成像之间也观察到强相关性,支持直观的结论,即灌注良好的区域包含明显的存活肿瘤。总而言之,光学CT和光学ECT与新的光学清除技术结合使用时,将代表强大的新成像方式,并有可能提供有关肿瘤结构和功能的独特信息。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号