Department of Pediatrics, Loma Linda University School of Medicine, Loma Linda, CA, 92350, USA.
Molecular and Integrative Physiology, Loma Linda University, Loma Linda, CA, 92350, USA.
Sci Rep. 2017 Mar 22;7(1):239. doi: 10.1038/s41598-017-00161-4.
The role of the cerebrovascular network and its acute response to TBI is poorly defined and emerging evidence suggests that cerebrovascular reactivity is altered. We explored how cortical vessels are physically altered following TBI using a newly developed technique, vessel painting. We tested our hypothesis that a focal moderate TBI results in global decrements to structural aspects of the vasculature. Rats (naïve, sham-operated, TBI) underwent a moderate controlled cortical impact. Animals underwent vessel painting perfusion to label the entire cortex at 1 day post TBI followed by whole brain axial and coronal images using a wide-field fluorescence microscope. Cortical vessel network characteristics were analyzed for classical angiographic features (junctions, lengths) wherein we observed significant global (both hemispheres) reductions in vessel junctions and vessel lengths of 33% and 22%, respectively. Biological complexity can be quantified using fractal geometric features where we observed that fractal measures were also reduced significantly by 33%, 16% and 13% for kurtosis, peak value frequency and skewness, respectively. Acutely after TBI there is a reduction in vascular network and vascular complexity that are exacerbated at the lesion site and provide structural evidence for the bilateral hemodynamic alterations that have been reported in patients after TBI.
脑血管网络及其对 TBI 的急性反应的作用尚未明确,新出现的证据表明脑血管反应性发生了改变。我们使用新开发的血管染色技术探讨了 TBI 后皮质血管的物理变化。我们提出了一个假设,即局灶性中度 TBI 会导致血管结构方面的全面下降。大鼠(未受伤、假手术、TBI)接受中度控制性皮质撞击。动物在 TBI 后 1 天进行血管染色灌注,以标记整个皮质,然后使用宽场荧光显微镜进行全脑轴位和冠状位图像。分析皮质血管网络特征的经典血管造影特征(交点、长度),我们观察到血管交点和血管长度分别显著减少 33%和 22%,这是全球性的(两个半球)减少。使用分形几何特征可以量化生物学复杂性,我们观察到分形测量值也分别显著减少了 33%、16%和 13%,用于峰度、峰值频率和偏度。TBI 后立即出现血管网络和血管复杂性的减少,在损伤部位加剧,并为 TBI 后患者报告的双侧血液动力学改变提供了结构证据。