Xu Yiwen, Pickering J Geoffrey, Nong Zengxuan, Ward Aaron D
Department of Medical Biophysics, The University of Western Ontario, London, Ontario, Canada.
Robarts Research Institute, The University of Western Ontario, London, Ontario, Canada.
J Microsc. 2017 Apr;266(1):89-103. doi: 10.1111/jmi.12522. Epub 2017 Feb 20.
Immunohistochemical tissue staining enhances microvasculature characteristics, including the smooth muscle in the medial layer of the vessel walls that is responsible for regulation of blood flow. The vasculature can be imaged in a comprehensive fashion using whole-slide scanning. However, since each such image potentially contains hundreds of small vessels, manual vessel delineation and quantification is not practically feasible. In this work, we present a fully automatic segmentation and vasculature quantification algorithm for whole-slide images. We evaluated its performance on tissue samples drawn from the hind limbs of wild-type mice, stained for smooth muscle using 3,3'-Diaminobenzidine (DAB) immunostain. The algorithm was designed to be robust to vessel fragmentation due to staining irregularity, and artefactual staining of nonvessel objects. Colour deconvolution was used to isolate the DAB stain for detection of vessel wall fragments. Complete vessels were reconstructed from the fragments by joining endpoints of topological skeletons. Automatic measures of vessel density, perimeter, wall area and local wall thickness were taken. The segmentation algorithm was validated against manual measures, resulting in a Dice similarity coefficient of 89%. The relationships observed between these measures were as expected from a biological standpoint, providing further reinforcement of the accuracy of this system. This system provides a fully automated and accurate means of measuring the arteriolar and venular morphology of vascular smooth muscle.
免疫组织化学组织染色可增强微血管特征,包括血管壁中层负责调节血流的平滑肌。使用全切片扫描可以全面地对脉管系统进行成像。然而,由于每个这样的图像可能包含数百个小血管,手动勾勒血管轮廓并进行量化实际上是不可行的。在这项工作中,我们提出了一种用于全切片图像的全自动分割和脉管系统量化算法。我们使用3,3'-二氨基联苯胺(DAB)免疫染色对野生型小鼠后肢的组织样本进行平滑肌染色,评估了该算法的性能。该算法设计用于对由于染色不规则导致的血管断裂以及非血管物体的伪染色具有鲁棒性。使用颜色反卷积来分离DAB染色以检测血管壁片段。通过连接拓扑骨架的端点从片段重建完整的血管。自动测量血管密度、周长、壁面积和局部壁厚。将分割算法与手动测量结果进行验证,得到的骰子相似系数为89%。从生物学角度来看,这些测量之间观察到的关系符合预期,进一步证实了该系统的准确性。该系统提供了一种全自动且准确的方法来测量血管平滑肌的小动脉和小静脉形态。