Wolfart Jakob, Debay Damien, Le Masson Gwendal, Destexhe Alain, Bal Thierry
Unité de Neurosciences Integratives et Computationnelles, Centre National de la Recherche Scientifique, 91198 Gif-sur-Yvette, France.
Nat Neurosci. 2005 Dec;8(12):1760-7. doi: 10.1038/nn1591. Epub 2005 Oct 30.
Characterizing the responsiveness of thalamic neurons is crucial to understanding the flow of sensory information. Typically, thalamocortical neurons possess two distinct firing modes. At depolarized membrane potentials, thalamic cells fire single action potentials and faithfully relay synaptic inputs to the cortex. At hyperpolarized potentials, the activation of T-type calcium channels promotes burst firing, and the transfer is less accurate. Our results suggest that this duality no longer holds if synaptic background activity is taken into account. By injecting stochastic conductances into guinea-pig thalamocortical neurons in slices, we show that the transfer function of these neurons is strongly influenced by conductance noise. The combination of synaptic noise with intrinsic properties gives a global responsiveness that is more linear, mixing single-spike and burst responses at all membrane potentials. Because in thalamic neurons, background synaptic input originates mainly from cortex, these results support a determinant role of corticothalamic feedback during sensory information processing.
表征丘脑神经元的反应性对于理解感觉信息流至关重要。通常,丘脑皮质神经元具有两种不同的放电模式。在去极化膜电位时,丘脑细胞发放单个动作电位并忠实地将突触输入传递至皮层。在超极化电位时,T型钙通道的激活促进爆发式放电,且传递不太准确。我们的结果表明,如果考虑突触背景活动,这种二元性就不再成立。通过向豚鼠脑片的丘脑皮质神经元中注入随机电导,我们表明这些神经元的传递函数受到电导噪声的强烈影响。突触噪声与内在特性的结合产生了一种更线性的全局反应性,在所有膜电位下混合了单峰和爆发反应。因为在丘脑神经元中,背景突触输入主要源自皮层,所以这些结果支持了皮质丘脑反馈在感觉信息处理过程中的决定性作用。
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