首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Functional anatomy of human eyeblink conditioning determined with regional cerebral glucose metabolism and positron-emission tomography.
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Functional anatomy of human eyeblink conditioning determined with regional cerebral glucose metabolism and positron-emission tomography.

机译:通过区域脑葡萄糖代谢和正电子发射断层扫描确定的人眨眼条件的功能解剖。

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摘要

Relative cerebral glucose metabolism was examined with positron-emission tomography (PET) as a measure of neuronal activation during performance of the classically conditioned eyeblink response in 12 young adult subjects. Each subject received three sessions: (i) a control session with PET scan in which unpaired presentations of the tone conditioned stimulus and corneal airpuff unconditioned stimulus were administered, (ii) a paired training session to allow associative learning to occur, and (iii) a paired test session with PET scan. Brain regions exhibiting learning-related activation were identified as those areas that showed significant differences in glucose metabolism between the unpaired control condition and well-trained state in the 9 subjects who met the learning criterion. Areas showing significant activation included bilateral sites in the inferior cerebellar cortex/deep nuclei, anterior cerebellar vermis, contralateral cerebellar cortex and pontine tegmentum, ipsilateral inferior thalamus/red nucleus, ipsilateral hippocampal formation, ipsilateral lateral temporal cortex, and bilateral ventral striatum. Among all subjects, including those who did not meet the learning criterion, metabolic changes in ipsilateral cerebellar nuclei, bilateral cerebellar cortex, anterior vermis, contralateral pontine tegmentum, ipsilateral hippocampal formation, and bilateral striatum correlated with degree of learning. The localization to cerebellum and its associated brainstem circuitry is consistent with neurobiological studies in the rabbit model of eyeblink classical conditioning and neuropsychological studies in brain-damaged humans. In addition, these data support a role for the hippocampus in conditioning and suggest that the ventral striatum may also be involved.
机译:用正电子发射断层扫描(PET)检查了相对的大脑葡萄糖代谢,作为在12位年轻成人受试者中进行经典条件性眨眼反应期间神经元激活的量度。每个受试者接受三节训练:(i)通过PET扫描进行的对照训练,在该训练中进行了无条件的音调条件刺激和角膜气喘无条件刺激的表现,(ii)配对训练过程以允许进行联想学习,以及(iii)与PET扫描配对的测试会话。表现出与学习相关的激活的脑区域被确定为在满足学习标准的9名受试者中,未配对的控制条件和训练有素的状态之间显示出葡萄糖代谢显着差异的区域。表现出明显激活的区域包括小脑下皮质/深核的双侧部位,小脑前部的,骨,对侧小脑皮质和桥脑桥,同侧下丘脑/红色核,同侧海马形成,同侧外侧颞皮质和双侧腹侧。在所有受试者中,包括那些不符合学习标准的受试者,同侧小脑核,双侧小脑皮质,前ver,对侧脑桥盖骨,同侧海马形成和双侧纹状体的代谢变化与学习程度相关。小脑及其相关脑干电路的定位与眨眼经典条件下的兔子模型中的神经生物学研究以及对脑部受损的人的神经心理学研究一致。此外,这些数据支持了海马在调节中的作用,并暗示腹侧纹状体也可能参与其中。

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