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使用同时进行的 PET/fMRI 评估神经血管耦联与 D2/D3 多巴胺受体占有率。

Neurovascular coupling to D2/D3 dopamine receptor occupancy using simultaneous PET/functional MRI.

机构信息

Athinoula A. Martinos Center for Biomedical Imaging, Department of Radiology, Massachusetts General Hospital, Charlestown, MA 02129, USA.

出版信息

Proc Natl Acad Sci U S A. 2013 Jul 2;110(27):11169-74. doi: 10.1073/pnas.1220512110. Epub 2013 May 30.

Abstract

This study employed simultaneous neuroimaging with positron emission tomography (PET) and functional magnetic resonance imaging (fMRI) to demonstrate the relationship between changes in receptor occupancy measured by PET and changes in brain activity inferred by fMRI. By administering the D2/D3 dopamine receptor antagonist [(11)C]raclopride at varying specific activities to anesthetized nonhuman primates, we mapped associations between changes in receptor occupancy and hemodynamics [cerebral blood volume (CBV)] in the domains of space, time, and dose. Mass doses of raclopride above tracer levels caused increases in CBV and reductions in binding potential that were localized to the dopamine-rich striatum. Moreover, similar temporal profiles were observed for specific binding estimates and changes in CBV. Injection of graded raclopride mass doses revealed a monotonic coupling between neurovascular responses and receptor occupancies. The distinct CBV magnitudes between putamen and caudate at matched occupancies approximately matched literature differences in basal dopamine levels, suggesting that the relative fMRI measurements reflect basal D2/D3 dopamine receptor occupancy. These results can provide a basis for models that relate dopaminergic occupancies to hemodynamic changes in the basal ganglia. Overall, these data demonstrate the utility of simultaneous PET/fMRI for investigations of neurovascular coupling that correlate neurochemistry with hemodynamic changes in vivo for any receptor system with an available PET tracer.

摘要

本研究采用正电子发射断层扫描(PET)和功能磁共振成像(fMRI)同时进行神经影像学研究,以证明通过 PET 测量的受体占有率变化与 fMRI 推断的大脑活动变化之间的关系。通过以不同的比活度向麻醉的非人类灵长类动物施用 D2/D3 多巴胺受体拮抗剂 [(11)C]raclopride,我们绘制了受体占有率变化与脑血流动力学(脑血容量,CBV)之间的空间、时间和剂量关联图。高于示踪剂水平的大量 raclopride 导致 CBV 增加和结合潜力降低,这些变化局限于多巴胺丰富的纹状体。此外,特定结合估计值和 CBV 变化的时间曲线相似。递增 raclopride 质量剂量的注射揭示了神经血管反应和受体占有率之间的单调耦合。在匹配占有率时,壳核和尾状核之间的 CBV 差异与基础多巴胺水平的文献差异大致匹配,表明相对 fMRI 测量值反映了基础 D2/D3 多巴胺受体占有率。这些结果可为将多巴胺能占有率与基础神经节内的血液动力学变化相关联的模型提供基础。总的来说,这些数据证明了同时进行 PET/fMRI 对于研究神经血管耦合的有用性,这种耦合将神经化学与体内的血液动力学变化相关联,适用于任何具有可用 PET 示踪剂的受体系统。

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本文引用的文献

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