One of the most important issues in the study of the morphological features of the central nervous system is the study of blood supply of the head hemisphere, covering a considerable portion of it. Considering the differences in the interpretation of the literature, the main purpose of our study was to study the nutritional sources of the parenchymal elements in the brain, the types of intracranial vessels, their electron microscopic and morphometric features.
Atkins GB, Jain MK, Hamik A. 2011. Endothelial differentiation: molecular mechanisms of specification and heterogeneity. Arterioscler Thromb Vasc Biol. 31:1476–1484.
Baramidze D, McHedlishvili G, Gordeladze Z, Levkovitch Y. 1992. Cerebral microcirculation: heterogeneity of pial arterial network controlling microcirculation of cerebral cortex. Int J Microcirc Clin Exp. 11:143–155.
Baramidze DG, Reidler RM, Gadamski R, McHedlishvili GI. 1982. Pattern and innervation of pial microvascular effectors which control blood supply to cerebral cortex. Blood Vessels. 19:284–291
Bell MA, Ball MJ. 1985. Laminar variation in the microvascular architecture of normal human visual cortex (area 17). Brain Res. 335:139–143.
Blinder P, Tsai PS, Kaufhold JP, Knutsen PM, Suhl H, Kleinfeld D. 2013. The cortical angiome: an interconnected vascular network with noncolumnar patterns of blood flow. Nat Neurosci. 16:889–897.
Bonhoeffer T, Grinvald A. 1991. Iso-orientation domains in cat visual cortex are arranged in pinwheel-like patterns. Nature. 353:429–431.
Boynton GM. 2005. Imaging orientation selectivity: decoding conscious perception in V1. Nat Neurosci. 8:541–542.
Cheng K, Waggoner RA, Tanaka K. 2001. Human ocular dominance columns as revealed by high-field functional magnetic resonance imaging. Neuron. 32:359–374.
Cox SB, Woolsey TA, Rovainen CM. 1993. Localized dynamic changes in cortical blood flow with whisker stimulation corresponds to matched vascular and neuronal architecture of rat barrels. J Cereb Blood Flow Metab. 13:899–913.