Schon Karin, Atri Alireza, Hasselmo Michael E, Tricarico Marisa D, LoPresti Matthew L, Stern Chantal E
Department of Psychology, Boston University, Boston, Massachusetts 02215, USA.
J Neurosci. 2005 Oct 5;25(40):9112-23. doi: 10.1523/JNEUROSCI.1982-05.2005.
Recent computational modeling and slice physiology studies have suggested that long-term encoding may depend on sustained spiking during brief memory delays in parahippocampal neurons, and that this persistent spiking activity is modulated by effects of acetylcholine at muscarinic receptors. Our recent functional magnetic resonance imaging (fMRI) study has shown that sustained parahippocampal delay period activity during delayed match-to-sample performance in healthy young individuals predicted subsequent memory of visual stimuli on a recognition memory assessment 20 min later (Schon et al., 2004). The current study combined this fMRI paradigm with a pharmacological manipulation to test whether this long-term encoding-related delay activity is reduced in subjects who receive the muscarinic cholinergic antagonist scopolamine before fMRI scanning. Subsequent memory was predicted by sustained activity during brief memory delays bilaterally in the perirhinal/entorhinal cortex, in the right posterior parahippocampal and mid-fusiform gyri, and in the hippocampal body in healthy young individuals without a scopolamine challenge. This activity was reduced in subjects receiving scopolamine. The results are consistent with computational modeling data and behavioral pharmacological studies, suggesting that long-term encoding-related activity may be reduced if cholinergic receptors are blocked by scopolamine.
近期的计算模型和切片生理学研究表明,长期编码可能取决于海马旁神经元在短暂记忆延迟期间的持续放电,并且这种持续的放电活动受乙酰胆碱对毒蕈碱受体的作用调节。我们最近的功能磁共振成像(fMRI)研究表明,健康年轻个体在延迟样本匹配任务中,海马旁延迟期的持续活动可预测20分钟后在识别记忆评估中对视觉刺激的后续记忆(舍恩等人,2004年)。本研究将这种fMRI范式与药物操作相结合,以测试在fMRI扫描前接受毒蕈碱胆碱能拮抗剂东莨菪碱的受试者中,这种与长期编码相关的延迟活动是否会减少。在未接受东莨菪碱激发的健康年轻个体中,双侧嗅周/内嗅皮质、右侧海马旁后回和梭状回中部以及海马体在短暂记忆延迟期间的持续活动可预测后续记忆。接受东莨菪碱的受试者的这种活动减少。这些结果与计算模型数据和行为药理学研究一致,表明如果胆碱能受体被东莨菪碱阻断,与长期编码相关的活动可能会减少。