Zaharie Stefan-Dan, Franken Daniel J, van der Kuip Martijn, van Elsland Sabine, de Bakker Bernadette S, Hagoort Jaco, Roest Sanna L, van Dam Carmen S, Timmers Carlie, Solomons Regan, van Toorn Ronald, Kruger Mariana, van Furth A Marceline
Department of Anatomical Pathology, Faculty of Medicine and Health Sciences, Stellenbosch University and National Health Laboratory Services, Francie Van Zijl Dr, Parrow, Tygerberg Hospital, Cape Town 7505, South Africa.
Department of Paediatric Infectious Diseases and Immunology, Amsterdam Infection & Immunity Institute, Amsterdam UMC, Vrije Universiteit Amsterdam, De Boelelaan 1117, 1081 HV Amsterdam, the Netherlands.
Data Brief. 2020 Nov 14;33:106532. doi: 10.1016/j.dib.2020.106532. eCollection 2020 Dec.
This data article presents datasets associated with the research article entitled "The immunological architecture of granulomatous inflammation in central nervous system tuberculosis'' (Zaharie et al., 2020). The morphology of tuberculosis related granulomas within the central nervous system of human patients was visualized in six different three-dimensional (3D) models. Post-mortem, formalin fixed and paraffin embedded specimens from deceased tuberculous meningitis patients were immunohistochemically stained and 800 serial histologically stained sections were acquired. Images from all sections were obtained with an Olympus BX43 light microscope and structures were identified, labeled and made three-dimensional. The interactive 3D-models allows the user to directly visualize the morphology of the granulomas and to understand the localization of the granulomas. The 3D-models can be used for multiple purposes and provide both an educational source as a gold standard for further animal studies, human research and the development of in silico models on the topic of central nervous system tuberculosis.
本数据文章展示了与题为《中枢神经系统结核病中肉芽肿性炎症的免疫结构》(扎哈里等人,2020年)的研究文章相关的数据集。在六个不同的三维(3D)模型中可视化了人类患者中枢神经系统内与结核病相关的肉芽肿的形态。对死于结核性脑膜炎患者的尸检、福尔马林固定和石蜡包埋标本进行免疫组织化学染色,并获取了800个连续的组织学染色切片。使用奥林巴斯BX43光学显微镜获取所有切片的图像,并对结构进行识别、标记和三维重建。交互式3D模型允许用户直接可视化肉芽肿的形态,并了解肉芽肿的定位。这些3D模型可用于多种目的,既作为教育资源,也作为中枢神经系统结核病主题的进一步动物研究、人体研究和计算机模型开发的金标准。