1Rolfe DF, Brown GC. Cellular energy utilization and molecular origin of standard metabolic rate in mammals. Physiol Rev, 1997, 77:731-758.
2Ehrlich P. Ueber die beziehungen yon chemischer constitution, verteilung und pharmakologischer wirkung. Berlin: Gesammehe Arbeiten zur Immunitaetsforschung, 1904: 574.
4Brightman MW, Reese TS. Junctions between intimately apposed cell membranes in the vertebrate brain. J Cell Biol, 1969, 40:648-677.
5Paemeleire K. The cellular basis of neurovascular metabolic coupling. Acta Neurol Belg, 2002, 102:153-157.
6Hatashita S, Hoff JT. Brain edema and cerebrovascular permeability during cerebral ischemia in rats. Stroke, 1990, 21: 582-588.
7Petty MA, Wettstein JG. Elements of cerebral microvascular ischemia. Brain Res Brain Res Rev, 2001, 36:23-34.
8Lee E J, Hung YC, Lee MY. Early alterations in cerebral hemodynamics, brain metabolism, and blood- brain barrier permeability in experimental intracerebral hemorrhage. J Neurosurg, 1999, 91:1013-1019.
9Cohen Z, Bonvento G, Lacombe P, et al. Serotonin in the regulation of brain mierocirculation. Prog Neurobiol, 1996, 50: 335-362.
10Vaucher E, Hamel E. Cholinergie basal forebrain neurons project to cortical microvessels in the rat: electron microscopic study with anterogradely transported Phaseolus vulgaris leucoagglutinin and choline acetyltransferase immunocytochemistry. J Neurosci, 1995, 15:7427-7441.