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[尾状核刺激产生大鼠镇痛作用后中枢葡萄糖代谢的变化——放射自显影脱氧葡萄糖A研究]

[Changes of central glucose metabolism following caudate stimulation produced analgesia in the rat--an autoradiographic deoxyglucose A study].

作者信息

Hu Z T, Wang Q P, Huang D K, Li K Y, He L F

机构信息

Department of Neurobiology, Shanghai Medical University.

出版信息

Sheng Li Xue Bao. 1992 Aug;44(4):355-61.

PMID:1293748
Abstract

Sokoloff's 2-deoxyglucose (2-DG) autoradiographic technique was used to identify changes of glucose metabolic rate in the rat brain following unilateral stimulation of the head of the caudate nucleus. The results were as follows. The local glucose metabolic rate after noxious stimulation was increased in the somatosensory cortex, cingulate cortex, ventroposterior and parafascicular nucleus of the thalamus, septal area, habenular nucleus, head of caudate nucleus, periaqueductal gray (PAG) and dorsal raphe nucleus (P < 0.05). After stimulating the head of the caudate nucleus, the local glucose metabolic rate of nucleus raphe magnus (rm) and nucleus paragigantocellularis (pgcl) was increased significantly and that of the PAG and dorsal raphe nucleus had a tendency to increase, while stimulation of the head of caudate nucleus could partially abolish the increased glucose metabolic rate in the somatosensory cortex, cingulate cortex, ventroposterior and parafascicular nucleus of the thalamus, septal area and habenular nucleus as induced by noxious stimulation. These results suggest that caudate stimulation is able to depress the activation of some brain structures related to nociception and to activate those related to antinociception. The pgcl, rm, PAG and dorsal raphe nucleus might be the key structures participating in the caudate stimulation produced analgesia.

摘要

采用索科洛夫的2-脱氧葡萄糖(2-DG)放射自显影技术,以确定单侧刺激尾状核头部后大鼠脑内葡萄糖代谢率的变化。结果如下。伤害性刺激后,体感皮层、扣带回皮层、丘脑腹后核和束旁核、隔区、缰核、尾状核头部、导水管周围灰质(PAG)和中缝背核的局部葡萄糖代谢率升高(P<0.05)。刺激尾状核头部后,中缝大核(rm)和巨细胞旁核(pgcl)的局部葡萄糖代谢率显著升高,PAG和中缝背核有升高趋势,而刺激尾状核头部可部分消除伤害性刺激所致体感皮层、扣带回皮层、丘脑腹后核和束旁核、隔区和缰核葡萄糖代谢率的升高。这些结果表明,尾状核刺激能够抑制一些与伤害感受相关脑结构的激活,并激活与抗伤害感受相关的脑结构。pgcl、rm、PAG和中缝背核可能是参与尾状核刺激产生镇痛作用的关键结构。

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