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孤立丘脑网状核中纺锤体节律的模型。

A model of spindle rhythmicity in the isolated thalamic reticular nucleus.

作者信息

Destexhe A, Contreras D, Sejnowski T J, Steriade M

机构信息

Howard Hughes Medical Institute, La Jolla, California 92037.

出版信息

J Neurophysiol. 1994 Aug;72(2):803-18. doi: 10.1152/jn.1994.72.2.803.

Abstract
  1. The oscillatory properties of the isolated reticular (RE) thalamus were modeled with the use of compartmental models of RE cells. Hodgkin-Huxley type kinetic models of ionic channels were derived from voltage- and current-clamp data from RE cells. Interactions between interconnected RE cells were simulated with the use of a kinetic model of gamma-aminobutyric acid (GABA) inhibitory synapses. 2. The intrinsic bursting properties of RE cells in the model were due to the presence of a low-threshold Ca2+ current and two Ca(2+)-activated currents. The properties of these model RE cells were compared with RE neurons recorded intracellularly in vivo in cats. 3. Model RE cells densely interconnected with GABAA synapses produced synchronous oscillations at a frequency close to that of spindles (7-14 Hz). Networks of RE neurons organized in a two-dimensional array with only proximal connectivity also exhibited synchronized oscillations in the spindle range. In addition, the proximally connected network showed periods of high and low synchronicity, giving rise to waxing and waning oscillations in the population of RE cells. 4. The spatiotemporal behavior of the network was investigated during waxing and waning oscillations. The waxing and waning emerged as an alternation between periods of desynchronized and synchronized activity, corresponding to periods of irregular and coherent spatial activity. During synchronized periods, the network displayed propagating coherent waves of synchronous activity that had a tendency to form spirals. 5. Networks of model RE neurons fully connected through GABAB synapses exhibited perfectly synchronous oscillations at lower frequencies (0.5-1 Hz), but two-dimensional networks with proximal GABAB connectivity failed to synchronize. 6. These simulations demonstrate that networks of model neurons that include the main intrinsic currents found in RE cells can generate waxing and waning oscillatory activity similar to the spindle rhythmicity observed in the isolated RE nucleus in vivo. The model reveals the interplay between the intrinsic rhythmic properties of RE cells and the fast synaptic interactions in organizing synchronized rhythmicity.
摘要
  1. 利用网状丘脑(RE)细胞的房室模型对离体RE丘脑的振荡特性进行建模。离子通道的霍奇金-赫胥黎型动力学模型源自RE细胞的电压钳和电流钳数据。利用γ-氨基丁酸(GABA)抑制性突触的动力学模型模拟相互连接的RE细胞之间的相互作用。2. 模型中RE细胞的固有爆发特性归因于低阈值Ca2+电流和两种Ca(2+)激活电流的存在。将这些模型RE细胞的特性与在猫体内细胞内记录的RE神经元进行比较。3. 与GABAA突触紧密相连的模型RE细胞产生频率接近纺锤波(7 - 14赫兹)的同步振荡。仅具有近端连接性的二维阵列组织的RE神经元网络在纺锤波范围内也表现出同步振荡。此外,近端连接的网络显示出高同步性和低同步性的时期,导致RE细胞群体中出现增强和减弱的振荡。4. 在增强和减弱振荡期间研究了网络的时空行为。增强和减弱表现为去同步活动期和同步活动期之间的交替,分别对应于不规则和相干空间活动期。在同步期,网络显示出同步活动的传播相干波,这些波倾向于形成螺旋。5. 通过GABAB突触完全连接的模型RE神经元网络在较低频率(0.5 - 1赫兹)下表现出完美的同步振荡,但具有近端GABAB连接性的二维网络未能同步。6. 这些模拟表明,包含RE细胞中发现的主要固有电流的模型神经元网络可以产生类似于在离体RE核体内观察到的纺锤波节律的增强和减弱振荡活动。该模型揭示了RE细胞的固有节律特性与组织同步节律中的快速突触相互作用之间的相互作用。

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