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皮层神经元中的动态时空突触整合:重新审视神经元增益

Dynamic spatiotemporal synaptic integration in cortical neurons: neuronal gain, revisited.

作者信息

Azouz Rony

机构信息

Department of Physiology, Faculty of Health Sciences, Ben-Gurion University, Beer-Sheva, Israel.

出版信息

J Neurophysiol. 2005 Oct;94(4):2785-96. doi: 10.1152/jn.00542.2005. Epub 2005 Jun 29.

Abstract

Gain modulation is a ubiquitous phenomenon in cortical neurons, providing flexibility to operate under changing conditions. The prevailing view is that this modulation reflects a change in the relationship between mean input and output firing rate brought about by variation in neuronal membrane characteristics. An alternative mechanism is proposed for neuronal gain modulation that takes into account the capability of cortical neurons to process spatiotemporal synaptic correlations. Through the use of numerical simulations, it is shown that voltage-gated and leak conductances, membrane potential, noise, and input firing rate modify the sensitivity of cortical neurons to the degree of temporal correlation between their synaptic inputs. These changes are expressed in a change of the temporal window for synaptic integration and the range of input correlation over which response probability is graded. The study also demonstrates that temporal integration depends on the distance between the inputs and that this interplay of space and time is modulated by voltage-gated and leak conductances. Thus, gain modulation may reflect a change in the relationship between spatiotemporal synaptic correlations and output firing probability. It is further proposed that by acting synergistically with the network, dynamic spatiotemporal synaptic integration in cortical neurons may serve a functional role in the formation of dynamic cell assemblies.

摘要

增益调制是皮层神经元中普遍存在的现象,为在不断变化的条件下运作提供了灵活性。目前的观点认为,这种调制反映了神经元膜特性变化所导致的平均输入与输出放电率之间关系的改变。本文提出了一种用于神经元增益调制的替代机制,该机制考虑了皮层神经元处理时空突触相关性的能力。通过数值模拟表明,电压门控电导和漏电导、膜电位、噪声以及输入放电率会改变皮层神经元对其突触输入之间时间相关性程度的敏感性。这些变化表现为突触整合时间窗口的改变以及响应概率分级的输入相关性范围的改变。该研究还表明,时间整合取决于输入之间的距离,并且这种空间和时间的相互作用受到电压门控电导和漏电导的调制。因此,增益调制可能反映了时空突触相关性与输出放电概率之间关系的变化。进一步提出,通过与网络协同作用,皮层神经元中的动态时空突触整合可能在动态细胞集合的形成中发挥功能性作用。

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