Contribution of sublinear and supralinear dendritic integration to neuronal computations

被引:96
作者
Tran-Van-Minh, Alexandra [1 ]
Caze, Romain D. [2 ,3 ]
Abrahamsson, Therese [1 ,4 ]
Cathala, Laurence [5 ]
Gutkin, Boris S. [2 ,6 ]
DiGregorio, David A. [1 ]
机构
[1] Inst Pasteur, Unit Dynam Neuronal Imaging, Dept Neurosci, CNRS UMR 3571, F-75724 Paris 15, France
[2] Ecole Normale Super, Inst Etud Cognit, Grp Neural Theory, LNC INSERM U960, F-75231 Paris, France
[3] Univ London Imperial Coll Sci Technol & Med, Dept Bioengn, London, England
[4] McGill Univ, Montreal Gen Hosp, Ctr Res Neurosci, Dept Neurol & Neurosurg,Res Inst,Hlth Ctr, Montreal, PQ H3G 1A4, Canada
[5] Univ Paris 06, Team Brain Dev Repair & Aging, Sorbonne Univ, UMR 8256 B2A, Paris, France
[6] Fed Res Univ, Higher Sch Econ, Moscow, Russia
关键词
dendrites; neural computation; nonlinear transformations; Boolean analysis; binary neruons; uncaging; input-output transformation; votlage activated channels; ACTION-POTENTIALS; SYNAPTIC INTEGRATION; PYRAMIDAL NEURONS; COMBINING VOLTAGE; ACTIVE DENDRITES; APICAL DENDRITES; BASAL DENDRITES; THIN DENDRITES; TIME-COURSE; CEREBELLAR;
D O I
10.3389/fncel.2015.00067
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Nonlinear dendritic integration is thought to increase the computational ability of neurons. Most studies focus on how supralinear summation of excitatory synaptic responses arising from clustered inputs within single dendrites result in the enhancement of neuronal firing, enabling simple computations such as feature detection. Recent reports have shown that sublinear summation is also a prominent dendritic operation, extending the range of subthreshold input-output (sI/O) transformations conferred by dendrites. Like supralinear operations, sublinear dendritic operations also increase the repertoire of neuronal computations, but feature extraction requires different synaptic connectivity strategies for each of these operations. In this article we will review the experimental and theoretical findings describing the biophysical determinants of the three primary classes of dendritic operations: linear, sublinear, and supralinear. We then review a Boolean algebra-based analysis of simplified neuron models, which provides insight into how dendritic operations influence neuronal computations. We highlight how neuronal computations are critically dependent on the interplay of dendritic properties (morphology and voltage-gated channel expression), spiking threshold and distribution of synaptic inputs carrying particular sensory features. Finally, we describe how global (scattered) and local (clustered) integration strategies permit the implementation of similar classes of computations, one example being the object feature binding problem.
引用
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页数:15
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