...
首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >X-ray Micro-Computed Tomography for Nondestructive Three-Dimensional (3D) X-ray Histology
【24h】

X-ray Micro-Computed Tomography for Nondestructive Three-Dimensional (3D) X-ray Histology

机译:用于非破坏性三维(3D)X射线组织学的X射线微计算断层扫描

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Historically, micro-computed tomography (mu CT) has been considered unsuitable for histologic analysis of unstained formalin-fixed, paraffin-embedded soft tissue biopsy specimens because of a lack of image contrast between the tissue and the paraffin. However, we recently demonstrated that mu CT can successfully resolve microstructural detail in routinely prepared tissue specimens. Herein, we illustrate how mu CT imaging of standard formalin-fixed, paraffin-embedded biopsy specimens can be seamlessly integrated into conventional histology workflows, enabling nondestructive three-dimensional (3D) X-ray histology, the use and benefits of which we showcase for the exemplar of human lung biopsy specimens. This technology advancement was achieved through manufacturing a first-of-kind mu CT scanner for X-ray histology and developing optimized imaging protocols, which do not require any additional sample preparation. 3D X-ray histology allows for nondestructive 3D imaging of tissue microstructure, resolving structural connectivity and heterogeneity of complex tissue networks, such as the vascular network or the respiratory tract. We also demonstrate that 3D X-ray histology can yield consistent and reproducible image quality, enabling quantitative assessment of a tissue's 3D microstructures, which is inaccessible to conventional two-dimensional histology. Being nondestructive, the technique does not interfere with histology workflows, permitting subsequent tissue characterization by means of conventional Light microscopy-based histology, immunohistochemistry, and immunofluorescence. 3D X-ray histology can be readily applied to a plethora of archival materials, yielding unprecedented opportunities in diagnosis and research of disease.
机译:历史上,由于缺乏组织和石蜡之间的图像对比度,已经考虑了对未染色的福尔马林固定的石蜡组织活组织检查的组织学分析,因此被认为是不合适的。然而,我们最近证明了Mu CT可以在常规制备的组织标本中成功地解析微观结构细节。在此,我们说明了Mu CT成像的标准福尔马林固定,石蜡包埋的活检标本可以无缝地集成到常规的组织工作流中,从而实现无损三维(3D)X射线组织学,我们展示的使用和益处人肺活检标本的示例性。通过制造用于X射线组织学和开发优化的成像协议的一类MU CT扫描仪来实现该技术进步,这不需要任何额外的样品制备。 3D X射线组织学允许组织微观结构的非破坏性3D成像,解决复杂组织网络的结构连接和异质性,例如血管网络或呼吸道。我们还证明了3D X射线组织学可以产生一致和可重复的图像质量,从而能够对组织的3D微结构进行定量评估,其对传统的二维组织学不可访问。这种技术不会干扰组织学工作流程,允许随后通过常规光学显微镜的组织学,免疫组织化学和免疫荧光表征随后的组织表征。 3D X射线组织学可以容易地应用于血清杂志材料,产生前所未有的诊断和对疾病的研究机会。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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