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减少听觉传导通路中信息冗余。

Reduction of information redundancy in the ascending auditory pathway.

作者信息

Chechik Gal, Anderson Michael J, Bar-Yosef Omer, Young Eric D, Tishby Naftali, Nelken Israel

机构信息

Interdisciplinary Center for Neural Computation, Hebrew University of Jerusalem, Jerusalem 91904, Israel.

出版信息

Neuron. 2006 Aug 3;51(3):359-68. doi: 10.1016/j.neuron.2006.06.030.

Abstract

Information processing by a sensory system is reflected in the changes in stimulus representation along its successive processing stages. We measured information content and stimulus-induced redundancy in the neural responses to a set of natural sounds in three successive stations of the auditory pathway-inferior colliculus (IC), auditory thalamus (MGB), and primary auditory cortex (A1). Information about stimulus identity was somewhat reduced in single A1 and MGB neurons relative to single IC neurons, when information is measured using spike counts, latency, or temporal spiking patterns. However, most of this difference was due to differences in firing rates. On the other hand, IC neurons were substantially more redundant than A1 and MGB neurons. IC redundancy was largely related to frequency selectivity. Redundancy reduction may be a generic organization principle of neural systems, allowing for easier readout of the identity of complex stimuli in A1 relative to IC.

摘要

感觉系统的信息处理反映在沿其连续处理阶段的刺激表征变化中。我们在听觉通路的三个连续部位——下丘(IC)、听觉丘脑(MGB)和初级听觉皮层(A1),测量了对一组自然声音的神经反应中的信息含量和刺激诱导冗余。当使用峰计数、潜伏期或时间发放模式来测量信息时,相对于单个IC神经元,单个A1和MGB神经元中关于刺激身份的信息有所减少。然而,这种差异大多是由于发放率的不同。另一方面,IC神经元比A1和MGB神经元具有更高的冗余度。IC冗余主要与频率选择性有关。冗余减少可能是神经系统的一个通用组织原则,使得相对于IC而言,在A1中更容易读出复杂刺激的身份。

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