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Probe-based three-dimensional confocal laser endomicroscopy of brain tumors: technical note

机译:基于探针的脑肿瘤三维共聚焦激光内窥镜检查:技术说明

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Background: Confocal laser endomicroscopy (CLE) is used during fluorescence-guided brain tumor surgery for intraoperative microscopy of tumor tissue with cellular resolution. CLE could augment and expedite intraoperative decision-making and potentially aid in diagnosis and removal of tumor tissue. Objective: To describe an extension of CLE imaging modality that produces Z-stack images and three-dimensional (3D) pseudocolored volumetric images. Materials and methods: Hand-held probe-based CLE was used to collect images from GL261-luc2 gliomas in C57BL/6 mice and from human brain tumor biopsies. The mice were injected with fluorescein sodium (FNa) before imaging. Patients received FNa intraoperatively, and biopsies were imaged immediately in the operating room. Some specimens were counterstained with acridine orange, acriflavine, or Hoechst and imaged on a benchtop confocal microscope. CLE images at various depths were acquired automatically, compiled, rendered into 3D volumes using Fiji software and reviewed by a neuropathologist and neurosurgeons. Results: CLE imaging, Z-stack acquisition, and 3D image rendering were performed using 19 mouse gliomas and 31 human tumors, including meningiomas, gliomas, and pituitary adenomas. Volumetric images and Z-stacks provided additional information about fluorescence signal distribution, cytoarchitecture, and the course of abnormal vasculature. Conclusion: 3D and Z-stack CLE imaging is a unique new option for live intraoperative endomicroscopy of brain tumors. The 3D images afford an increased spatial understanding of tumor cellular architecture and visualization of related structures compared with two-dimensional images. Future application of specific fluorescent probes could benefit from this rapid in vivo imaging technology for interrogation of brain tumor tissue.
机译:背景:共聚焦激光内镜检查(CLE)用于荧光引导的脑肿瘤手术中,用于在术中对具有肿瘤分辨率的肿瘤组织进行显微镜检查。 CLE可以增强和加快术中决策,并可能有助于诊断和清除肿瘤组织。目的:描述CLE成像模式的扩展,该扩展可生成Z堆栈图像和三维(3D)伪彩色体积图像。材料和方法:基于手持式探针的CLE用于收集C57BL / 6小鼠GL261-luc2胶质瘤和人脑肿瘤活检组织的图像。在成像之前,给小鼠注射荧光素钠(FNa)。患者在术中接受了FNa,并且在手术室中立即对活检进行了成像。一些标本用a啶橙,a啶黄或Hoechst复染,并在台式共聚焦显微镜上成像。自动获取,编辑深度不同深度的CLE图像,使用Fiji软件将其渲染为3D体积,并由神经病理学家和神经外科医生进行检查。结果:使用19例小鼠脑胶质瘤和31种人类肿瘤(包括脑膜瘤,神经胶质瘤和垂体腺瘤)进行了CLE成像,Z-stack采集和3D图像渲染。体积图像和Z堆栈提供了有关荧光信号分布,细胞结构和异常脉管系统病程的其他信息。结论:3D和Z-stack CLE成像是实时术中脑瘤内镜检查的独特新选择。与二维图像相比,3D图像提供了对肿瘤细胞结构的更多空间了解以及相关结构的可视化。特定的荧光探针的未来应用可能会受益于这种用于询问脑肿瘤组织的快速体内成像技术。

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