Girault J A, Savaki H E, Desban M, Glowinski J, Besson M J
J Comp Neurol. 1985 Jan 8;231(2):137-49. doi: 10.1002/cne.902310202.
The functional role of the ventromedial thalamic nucleus (VM) was investigated by means of the quantitative autoradiographic 14C-deoxyglucose method. Local cerebral glucose utilization (LCGU) was measured bilaterally in 53 discrete brain areas of conscious rats 1 week and 1 month following electrolytic lesion of the VM. There was no difference observed in the LCGU values between the two groups of lesioned animals. In the VM-lesioned rats glucose consumption was decreased in several ipsilateral (pre-frontal, frontal, cingulate, sensorimotor, visual) and in some contralateral (cingulate, sensorimotor, visual) cortical areas. Furthermore, LCGU values were depressed bilaterally in the striatum, hippocampus, dentate gyrus, substantia nigra compacta, superficial layers of the superior colliculus, oculomotor complex, and cerebellar dentate nuclei. Glucose utilization was diminished also in the deep layers of the superior colliculus and in the fastigial nucleus ipsilateral to the lesion. Within the thalamus, glucose metabolism was decreased in several nuclei either bilaterally (reticular, intralaminar, paralamellar mediodorsal) or ipsilaterally (lateroposterior, ventrobasal, ventrolateral, ventroanterior, and medioventral) to the lesion. A significant correlation between the percentage of injured VM and the regional metabolic depression was demonstrated in the areas displaying the most pronounced decrease in LCGU. These results support a widespread influence of the VM on brain function extending beyond the limits of purely motor systems and reveal the consequences of a unilateral lesion of the thalamus on metabolic activity in several contralateral structures.
采用定量放射自显影14C-脱氧葡萄糖法研究了丘脑腹内侧核(VM)的功能作用。在VM电解损伤后1周和1个月,对清醒大鼠53个离散脑区的局部脑葡萄糖利用(LCGU)进行双侧测量。两组损伤动物的LCGU值没有差异。在VM损伤的大鼠中,几个同侧(前额叶、额叶、扣带回、感觉运动、视觉)和一些对侧(扣带回、感觉运动、视觉)皮质区域的葡萄糖消耗减少。此外,纹状体、海马、齿状回、黑质致密部、上丘表层、动眼神经复合体和小脑齿状核的LCGU值双侧降低。损伤同侧的上丘深层和顶核的葡萄糖利用也减少。在丘脑中,几个核团的葡萄糖代谢双侧(网状、板内核、板旁内侧背核)或同侧(后外侧、腹侧基底、腹外侧、腹前侧和腹内侧)降低。在LCGU下降最明显的区域,损伤的VM百分比与区域代谢抑制之间存在显著相关性。这些结果支持VM对脑功能的广泛影响超出了纯运动系统的范围,并揭示了丘脑单侧损伤对几个对侧结构代谢活动的影响。