Gross P M, Sposito N M, Pettersen S E, Panton D G, Fenstermacher J D
J Cereb Blood Flow Metab. 1987 Apr;7(2):154-60. doi: 10.1038/jcbfm.1987.38.
A midbrain nucleus of the auditory system, the inferior colliculus, was used as a model for analyzing spatial correlations or "coupling" among capillary density, tissue glucose metabolism, and several measures of microvascular function in the rat. The capillary bed of the inferior colliculus was examined with stereological techniques, and physiological measures were obtained with radioactive tracers, quantitative autoradiography, and image processing. Within the colliculus, capillary density, volume fraction, length, and surface area were highest in the central nucleus where the packing densities of neuropil and perikarya are greatest. Rates of glucose metabolism and blood flow correlated closely with capillary density in a 3 X 2 matrix of collicular subregions in the sagittal and coronal planes. The strength of this correlation suggests that estimates of capillary density can be made from measurements of tissue glucose metabolism within this structure under normal conditions. Microvascular blood volume and transcapillary flux of a neutral amino acid, alpha-aminoisobutyric acid, were homogeneous throughout the colliculus. The studies demonstrate quantitatively in a single brain nucleus a close correspondence between cytoarchitecture, richness of the capillary bed, and complexity of neural activity (inferred from local measures of glucose metabolism and blood flow). Such relationships were suggested by Craigie 67 years ago.
听觉系统的一个中脑核团——下丘,被用作分析大鼠毛细血管密度、组织葡萄糖代谢以及微血管功能的几种测量指标之间的空间相关性或“耦合”的模型。用体视学技术检查下丘的毛细血管床,并通过放射性示踪剂、定量放射自显影和图像处理获得生理测量值。在下丘内,中央核的毛细血管密度、体积分数、长度和表面积最高,而该区域的神经毡和核周体的堆积密度最大。在矢状面和冠状面的下丘亚区域的3×2矩阵中,葡萄糖代谢率和血流与毛细血管密度密切相关。这种相关性的强度表明,在正常情况下,可以通过测量该结构内的组织葡萄糖代谢来估计毛细血管密度。中性氨基酸α-氨基异丁酸的微血管血容量和跨毛细血管通量在下丘内是均匀的。这些研究在单个脑核团中定量地证明了细胞结构、毛细血管床的丰富程度和神经活动的复杂性(从局部葡萄糖代谢和血流测量推断)之间的密切对应关系。这种关系在67年前就由克雷吉提出过。