Sakamoto S, Ishii K
Department of Radiology, Kobe University School of Medicine, 7-5-2 Kusunoki-Cho, Chuo-Ku, Kobe, Japan.
J Neurol Sci. 2000 Jan 1;172(1):41-8. doi: 10.1016/s0022-510x(99)00286-5.
Previous studies have reported that there exist different regional sensitivities to acute hypoxia. To better understand these differences, we estimated regional differences of cerebral blood flow (CBF), cerebral glucose metabolism (CMRglc) and kinetic constants (K(1), k(2), k(3)) in the human cortex under resting conditions. CBF, CMRglc, kinetic rate constants and glucose extraction rate (GER) were measured in eight normal male subjects (mean age: 26.1+/- 4.9 years) using the 15O-water autoradiographic technique and subsequently the dynamic and the static [18F]2-fluoro-2-deoxy-D-glucose technique with positron emission tomography (PET). Of all the brain structures investigated, the medial temporal lobe showed the lowest CBF (46.0 ml/100 g/min) and lowest CMRglc (3.97 mg/100 g/min). The medial temporal GER was lowest (8.9%), followed by the cerebellar GER (9.3%). While the cerebellar blood flow (64.0 ml/100 g/min) was the highest, the cerebellar metabolic rate for glucose (5.79 mg/100 g/min) was relatively low. The cerebellum showed the highest K(1) value (0.13) and k(2) value (0.16), and the lowest k(3) value (0.05). In the medial temporal cortices and cerebellum, CMRglc and GER were lower than those in the neocortices. These results indicate that there are great perfusional/metabolic differences between the medial temporal lobe, cerebellum and other brain regions in the normal human brain under resting conditions.
以往的研究报道,急性缺氧存在不同的区域敏感性。为了更好地理解这些差异,我们估算了静息状态下人类皮质中脑血流量(CBF)、脑葡萄糖代谢(CMRglc)和动力学常数(K(1)、k(2)、k(3))的区域差异。使用15O-水放射自显影技术,随后采用正电子发射断层扫描(PET)的动态和静态[18F]2-氟-2-脱氧-D-葡萄糖技术,对8名正常男性受试者(平均年龄:26.1±4.9岁)的CBF、CMRglc、动力学速率常数和葡萄糖摄取率(GER)进行了测量。在所有研究的脑结构中,内侧颞叶的CBF最低(46.0 ml/100 g/min),CMRglc最低(3.97 mg/100 g/min)。内侧颞叶的GER最低(8.9%),其次是小脑的GER(9.3%)。虽然小脑血流量(64.0 ml/100 g/min)最高,但小脑葡萄糖代谢率(5.79 mg/100 g/min)相对较低。小脑的K(1)值(0.13)和k(2)值(0.16)最高,k(3)值(0.05)最低。在内侧颞叶皮质和小脑中,CMRglc和GER低于新皮质。这些结果表明,在静息状态下,正常人类大脑的内侧颞叶、小脑和其他脑区之间存在巨大的灌注/代谢差异。