健康和精神分裂症受试者脑灰质代谢与多巴胺D2/D3受体可用性之间的正相关:一项18f -氟脱氧葡萄糖和18F-fallypride正电子发射断层扫描研究

S. Mitelman, M. Buchsbaum, B. Christian, Brian M. Merrill, B. Buchsbaum, J. Mukherjee, D. Lehrer
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引用次数: 14

摘要

目的:在精神分裂症患者中,多巴胺D2/ d3受体可用性和葡萄糖代谢的重叠减少已经被报道。目前尚不清楚这些发现是与生理相关还是巧合。方法:为了确定这一点,我们对19名健康和25名未服药的精神分裂症受试者进行了两次连续的18f -氟脱氧葡萄糖和18F-fallypride正电子发射断层扫描。在两个诊断组中,对相同xyz位置和afni产生的感兴趣区域的体素中18f -氟脱氧葡萄糖摄取与18F-fallypride结合之间的相关性矩阵进行了评估。结果:在健康和精神分裂症受试者的纹状体和纹状体外灰质中,18f -氟脱氧葡萄糖摄取和18F-fallypride结合电位呈显著正相关。与健康受试者相比,精神分裂症患者的右侧扣带回和丘脑,包括中背核、外侧背核、前核和中线核的相关性明显较弱。精神分裂症患者下丘脑、乳状体、丘脑和几个丘脑核的D2/ d3受体可用性下降,小脑蚓部三个小叶的葡萄糖摄取增加。结论:多巴胺能系统可能参与了正常人大脑和精神病理中灰质代谢和神经代谢耦合的调节。未经治疗的精神分裂症患者的高多巴胺能状态可能至少部分解释了相应的灰质代谢减少。
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Positive association between cerebral grey matter metabolism and dopamine D2/D3 receptor availability in healthy and schizophrenia subjects: An 18F-fluorodeoxyglucose and 18F-fallypride positron emission tomography study
Abstract Objectives: Overlapping decreases in extrastriatal dopamine D2/D3-receptor availability and glucose metabolism have been reported in subjects with schizophrenia. It remains unknown whether these findings are physiologically related or coincidental. Methods: To ascertain this, we used two consecutive 18F-fluorodeoxyglucose and 18F-fallypride positron emission tomography scans in 19 healthy and 25 unmedicated schizophrenia subjects. Matrices of correlations between 18F-fluorodeoxyglucose uptake and 18F-fallypride binding in voxels at the same xyz location and AFNI-generated regions of interest were evaluated in both diagnostic groups. Results: 18F-fluorodeoxyglucose uptake and 18F-fallypride binding potential were predominantly positively correlated across the striatal and extrastriatal grey matter in both healthy and schizophrenia subjects. In comparison to healthy subjects, significantly weaker correlations in subjects with schizophrenia were confirmed in the right cingulate gyrus and thalamus, including the mediodorsal, lateral dorsal, anterior, and midline nuclei. Schizophrenia subjects showed decreased D2/D3-receptor availability in the hypothalamus, mamillary bodies, thalamus and several thalamic nuclei, and increased glucose uptake in three lobules of the cerebellar vermis. Conclusions: Dopaminergic system may be involved in modulation of grey matter metabolism and neurometabolic coupling in both healthy human brain and psychopathology. Hyperdopaminergic state in untreated schizophrenia may at least partly account for the corresponding decreases in grey matter metabolism.
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