Lauwers Frederic, Cassot Francis, Lauwers-Cances Valerie, Puwanarajah Prasanna, Duvernoy Henri
Functional Neuroimaging Laboratory, INSERM U825, CHU Purpan, 31059 Toulouse-cedex 3, France.
Neuroimage. 2008 Feb 1;39(3):936-48. doi: 10.1016/j.neuroimage.2007.09.024. Epub 2007 Sep 21.
Studies on human brain microcirculation have thus far yielded few quantitative data, preventing the closest possible interpretation of functional imaging methods such as fMRI and PET that necessarily rely on robustly delineated morphology of haemodynamic systems. Inadequate data in this area can lead to severe underestimation of the spatial specificity of the BOLD response. We took thick sections of Indian ink injected human brain and, using confocal laser microscopy and a novel three-dimensional computer-assisted method we extracted and analyzed hundreds of thousands of vascular segments within a large area of cortex. From this database the global densities, the statistical distributions of diameters and lengths were analysed, separating the tree-like and the net-like parts of the microcirculation. Furthermore, our analysis included variations in volume density along the cortical depth and along vectors parallel to the cortical surface. These morphometric parameters are all key requirements for a sound model of cerebral microcirculation.
迄今为止,对人类脑微循环的研究几乎没有产生定量数据,这使得功能成像方法(如功能磁共振成像和正电子发射断层扫描)难以进行尽可能精确的解释,因为这些方法必然依赖于对血流动力学系统形态的清晰描绘。该领域数据不足可能导致对血氧水平依赖(BOLD)反应的空间特异性严重低估。我们获取了注射印度墨水的人脑厚切片,并使用共聚焦激光显微镜和一种新颖的三维计算机辅助方法,在大面积皮层内提取并分析了数十万条血管段。从这个数据库中,分析了全局密度、直径和长度的统计分布,区分了微循环的树状部分和网状部分。此外,我们的分析还包括沿皮质深度以及沿平行于皮质表面的向量的体积密度变化。这些形态测量参数都是健全的脑微循环模型的关键要求。