Department of Physiology and Biophysics, Ruth and Bruce Rappaport Faculty of Medicine and Rappaport Institute, Technion-Israel Institute of Technology, Haifa, Israel.
Hippocampus. 2013 Mar;23(3):187-92. doi: 10.1002/hipo.22077. Epub 2012 Nov 5.
Recent studies suggest that memory formation in the hippocampus is modulated by the motivational significance of events, allowing past experience to adaptively guide behavior. The effects of motivation on memory are thought to depend on interactions between the hippocampus, the ventral tegmental area (VTA), and the nucleus accumbens (NAcc). Indeed, animal studies reveal anatomical pathways for circuit-level interaction between these regions. However, a homologue circuit connectivity in humans remains to be shown. We characterized this circuitry in humans by exploiting spontaneous low-frequency modulations in the fMRI signal (termed resting-state functional connectivity), which are thought to reflect functionally related regions and their organization into functional networks in the brain. We examined connectivity in this network across two datasets (hi-resolution, n = 100; standard resolution, n = 894). Results reveal convergent connectivity between the hippocampus, and both the NAcc and the VTA centered on ventral regions in the body of the hippocampus. Additionally, we found individual differences in the strength of connectivity within this network. Together, these results provide a novel task-independent characterization of circuitry underlying interactions between the hippocampus, NAcc, and VTA and provide a framework with which to understand how connectivity might reflect and constrain the effects of motivation on memory.
最近的研究表明,海马体中的记忆形成受到事件动机意义的调节,从而使过去的经验能够自适应地指导行为。动机对记忆的影响被认为取决于海马体、腹侧被盖区(VTA)和伏隔核(NAcc)之间的相互作用。事实上,动物研究揭示了这些区域之间的回路水平相互作用的解剖途径。然而,人类中同源的回路连接仍有待证明。我们通过利用 fMRI 信号中的自发低频调制(称为静息态功能连接)来描述人类中的这个回路,这些低频调制被认为反映了大脑中功能相关的区域及其组织成功能网络。我们在两个数据集(高分辨率,n=100;标准分辨率,n=894)中检查了这个网络的连接。结果表明,海马体与 NAcc 和 VTA 之间存在会聚连接,连接的中心位于海马体体部的腹侧区域。此外,我们还发现了这个网络中连接强度的个体差异。总之,这些结果提供了一种新颖的、与任务无关的海马体、NAcc 和 VTA 之间相互作用的回路特征描述,并提供了一个理解连接如何反映和限制动机对记忆的影响的框架。