Klausberger Thomas, Márton László F, Baude Agnes, Roberts J David B, Magill Peter J, Somogyi Peter
MRC Anatomical Neuropharmacology Unit, Department of Pharmacology, Oxford University, Mansfield Road, Oxford OX1 3TH, UK.
Nat Neurosci. 2004 Jan;7(1):41-7. doi: 10.1038/nn1159. Epub 2003 Nov 23.
Behavior-contingent network oscillations bring about transient, functionally coherent neuronal assemblies in the cerebral cortex, including the hippocampus. Inhibitory input on and close to the soma is believed to phase intrinsic oscillations and output of pyramidal cells, but the function of GABA release to pyramidal cell dendrites remains unknown. We recorded the oscillation-locked spike timing of identified bistratified interneurons in rats. These cells mainly innervated small dendritic shafts of pyramidal cells co-aligned with the glutamatergic Schaffer collateral/commissural input. During theta oscillations, bistratified cells fired at a phase when, on average, pyramidal cell dendrites are most hyperpolarized. Interneurons targeting the perisomatic domain discharge at an earlier phase. During sharp wave-associated ripples, bistratified cells fired with high frequency and in-phase with basket cells, on average 1-2 ms after the discharges in pyramidal cell somata and dendrites. Our results indicate that bistratified cells rhythmically modulate glutamatergic input to the dendrites of pyramidal cells to actively promote the precise input/output transformation during network oscillations.
行为相关的网络振荡在包括海马体在内的大脑皮层中产生短暂的、功能上连贯的神经元集合。人们认为,对胞体及其附近的抑制性输入会调节锥体神经元的固有振荡和输出相位,但GABA释放到锥体神经元树突的功能仍不清楚。我们记录了大鼠中已识别的双分层中间神经元的振荡锁定尖峰时间。这些细胞主要支配与谷氨酸能的沙费尔侧支/连合输入共对齐的锥体神经元的小树突轴。在θ振荡期间,双分层细胞在平均锥体神经元树突最超极化的相位放电。靶向胞体周围区域的中间神经元在较早的相位放电。在与尖波相关的涟漪期间,双分层细胞高频放电并与篮状细胞同相,平均在锥体神经元胞体和树突放电后1-2毫秒。我们的结果表明,双分层细胞有节奏地调节对锥体神经元树突的谷氨酸能输入,以在网络振荡期间积极促进精确的输入/输出转换。