1Department of Psychology and Center for Brain Science, Harvard University, Cambridge, Massachusetts 02138, USA.
J Neurophysiol. 2010 Feb;103(2):793-800. doi: 10.1152/jn.00546.2009. Epub 2009 Dec 2.
Neuroimaging experiments in humans suggest that regions in parietal cortex and along the posterior midline are functionally connected to the medial temporal lobe and are active during memory retrieval. It is unknown whether macaques have a similar network. We examined functional connectivity in isoflurane-anesthetized macaques to identify a network associated with posterior parahippocampal cortex (PPHC). Functional connectivity was observed between the PPHC and retrosplenial, posterior cingulate, superior temporal gyrus, and inferior parietal cortex. PPHC correlations were distinct from regions in parietal and temporal cortex activated by an oculomotor task. Comparison of macaque and human PPHC correlations revealed similarities that suggest the temporal-parietal region identified in the macaque may share a common lineage with human Brodmann area 39, a region thought to be involved in recollection. These results suggest that macaques and humans may have homologous PPHC-parietal pathways. By specifying the location of the putative macaque homologue in parietal cortex, we provide a target for future physiological exploration of this area's role in mnemonic or alternative processes.
人类神经影像学实验表明,顶叶皮层区域以及后中线附近的区域与内侧颞叶在功能上相连,并在记忆检索过程中活跃。目前尚不清楚猕猴是否存在类似的网络。我们在异氟醚麻醉的猕猴中检查了功能连接,以确定与后旁海马回(PPHC)相关的网络。在 PPHC 与后扣带回、后顶叶、上颞叶和下顶叶之间观察到功能连接。PPHC 的相关性与由眼球运动任务激活的顶叶和颞叶区域的区域不同。猕猴和人类 PPHC 相关性的比较显示出相似性,这表明在猕猴中确定的颞顶区域可能与人类布罗德曼区 39 具有共同的谱系,该区域被认为与回忆有关。这些结果表明,猕猴和人类可能具有同源的 PPHC-顶叶通路。通过指定顶叶皮层中假定的猕猴同源物的位置,我们为未来对该区域在记忆或替代过程中的作用的生理学探索提供了一个目标。