Maslarova Anna, Lippmann Kristina, Salar Seda, Rösler Anton, Heinemann Uwe
Neuroscience Research Center and Institute of Neurophysiology, Charité Universitätsmedizin Berlin, Charitéplatz 1, 10117 Berlin, Germany.
Neuroscience Research Center and Institute of Neurophysiology, Charité Universitätsmedizin Berlin, Charitéplatz 1, 10117 Berlin, Germany.
Neurobiol Learn Mem. 2015 Nov;125:113-9. doi: 10.1016/j.nlm.2015.08.008. Epub 2015 Aug 28.
Previously stored information in the hippocampus is believed to be replayed during sharp wave-ripple activity thereby serving transfer of information from hippocampal areas CA3 and CA1 to the cortical mantle and memory consolidation. The subiculum represents the main hippocampal output and contains both regular spiking and burst firing neurons that may project to different targets in the CNS. We recorded laminar profiles and intracellular correlates of spontaneous subicular events in mouse horizontal hippocampal slices and investigated involvement of the different subtypes of subicular pyramidal cells. Subicular sharp wave-ripples (SWRs) depend on input from the CA3 and CA1 regions as shown by microdissection experiments between hippocampal subareas. The extracellular subicular waves are associated with multiple unit activity, which varies in form and size. Intracellular recordings reveal that the same pyramidal cell can show different responses to SWRs. In the majority of cases, SWRs cause subthreshold depolarizing potentials. Burster neurons regularly contribute to generation of SWRs by action potential firing, whereas regular-spiking neurons are often inhibited.
以往认为,海马体中先前存储的信息在尖波-涟漪活动期间会被重播,从而实现信息从海马体CA3区和CA1区向皮质层的传递以及记忆巩固。下托是海马体的主要输出部位,包含规则发放和爆发式发放的神经元,它们可能投射到中枢神经系统的不同靶点。我们记录了小鼠水平海马体切片中自发下托事件的层状分布和细胞内相关情况,并研究了下托锥体细胞不同亚型的参与情况。如海马体亚区之间的显微切割实验所示,下托尖波-涟漪(SWRs)依赖于来自CA3区和CA1区的输入。细胞外下托波与多单位活动相关,其形式和大小各不相同。细胞内记录显示,同一个锥体细胞对SWRs可能表现出不同的反应。在大多数情况下,SWRs会引起阈下去极化电位。爆发式发放神经元通过动作电位发放定期参与SWRs的产生,而规则发放神经元则常常受到抑制。