Gross P M, Blasberg R G, Fenstermacher J D, Patlak C S
Brain Res Bull. 1987 Jan;18(1):73-85. doi: 10.1016/0361-9230(87)90035-9.
Blood volume, blood flow, and blood-to-tissue transfer of an amino acid in circumventricular organs, such as the median eminence and subfornical organ, and the pituitary gland of conscious rats were measured by using quantitative autoradiographic techniques and computer-assisted processing of the tissue images. Retained erythrocyte and plasma volumes observed in circumventricular organs and the anterior and neural lobes of the pituitary gland were dissimilar but in all cases greater by several times than those in cerebral grey matter; these findings suggest the presence of a dense network of high-resistance microvessels in circumventricular organs. The rate of capillary blood flow in the subfornical organ and median eminence was similar to that of grey matter, whereas blood flow in the pituitary neural lobe was several times higher than in grey matter. Thus the apparent velocity of intracapillary blood flow is much higher in the neural lobe than in the subfornical organ. Blood-to-tissue transfer of a small neutral amino acid, alpha-aminoisobutyric acid, was 200 to 700 times more rapid in circumventricular organs and pituitary neural lobe than in the inferior colliculus and caudate nucleus, structures having a blood-brain barrier (BBB). Morphometric analyses indicated that capillary volume and surface area were two times larger in the neural lobe than in the subfornical organ. Moreover, capillaries of the neural lobe and subfornical organ had numerous endothelial fenestrations and cytoplasmic pits or vesicles, whereas capillaries of the inferior colliculus had no fenestrations and fewer vesicles. These studies demonstrate quantitative differences in the microcirculatory systems not only between circumventricular organs and BBB structures but also among circumventricular organs.
采用定量放射自显影技术及组织图像计算机辅助处理方法,对清醒大鼠的室周器官(如正中隆起和穹窿下器官)及垂体中的血容量、血流量和氨基酸的血 - 组织转运进行了测量。在室周器官以及垂体前叶和神经叶中观察到的红细胞和血浆保留量各不相同,但在所有情况下都比脑灰质中的量大几倍;这些发现表明室周器官中存在密集的高阻力微血管网络。穹窿下器官和正中隆起的毛细血管血流速率与灰质相似,而垂体神经叶中的血流比灰质高几倍。因此,神经叶内毛细血管血流的表观速度比穹窿下器官中的要高得多。一种小的中性氨基酸α - 氨基异丁酸的血 - 组织转运在室周器官和垂体神经叶中比在具有血脑屏障(BBB)的下丘和尾状核中快200至700倍。形态计量分析表明,神经叶中的毛细血管体积和表面积比穹窿下器官中的大两倍。此外,神经叶和穹窿下器官的毛细血管有许多内皮窗孔和细胞质凹陷或小泡,而下丘的毛细血管没有窗孔且小泡较少。这些研究表明,不仅室周器官和血脑屏障结构之间,而且室周器官之间的微循环系统都存在定量差异。