Department of Cognitive Neurobiology, Center for Brain Research, Medical University of Vienna, Spitalgasse 4, A-1090, Vienna, Austria.
Department of Cognitive Neurobiology, Center for Brain Research, Medical University of Vienna, Spitalgasse 4, A-1090, Vienna, Austria; Anatomical Neuropharmacology Unit, Department of Pharmacology, Medical Research Council, Oxford University, OX1 3TH, Oxford, UK.
Neuron. 2014 Mar 5;81(5):1126-1139. doi: 10.1016/j.neuron.2014.01.021.
The temporary interaction of distinct gamma oscillators effects binding, association, and information routing. How independent gamma oscillations are generated and maintained by pyramidal cells and interneurons within a cortical circuit remains unknown. We recorded the spike timing of identified parvalbumin-expressing basket cells in the CA1 hippocampus of anesthetized rats and simultaneously detected layer-specific gamma oscillations using current-source-density analysis. Spike timing of basket cells tuned the phase and amplitude of gamma oscillations generated around stratum pyramidale, where basket cells selectively innervate pyramidal cells with GABAergic synapses. Basket cells did not contribute to gamma oscillations generated at the apical tuft of pyramidal cells. This gamma oscillation was selectively modulated by a subset of local GABAergic interneurons and by medial entorhinal cortex layer 3 neurons. The generation of independent and layer-specific gamma oscillations, implemented onto hippocampal pyramidal cells along their somato-dendritic axis, can be explained by selective axonal targeting and precisely controlled temporal firing of GABAergic interneurons.
不同γ振荡器的短暂相互作用影响着结合、关联和信息传递。在皮质回路中,锥体细胞和中间神经元如何产生和维持独立的γ振荡仍然未知。我们记录了麻醉大鼠 CA1 海马中被识别的表达 Parvalbumin 的篮状细胞的尖峰时间,并同时使用电流源密度分析检测层特异性 γ振荡。篮状细胞的尖峰时间调节了围绕 Stratum Pyramidale 产生的γ振荡的相位和幅度,其中篮状细胞选择性地用 GABA 能突触支配锥体细胞。篮状细胞对在锥体细胞的顶端树突簇产生的γ振荡没有贡献。这种γ振荡被局部 GABA 能中间神经元的亚群和内侧缰核皮质 3 层神经元选择性地调节。沿着其树突-胞体轴作用于海马锥体细胞的独立和层特异性γ振荡的产生,可以通过 GABA 能中间神经元的选择性轴突靶向和精确控制的时间放电来解释。