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反应时视觉检测任务中神经群体反应的最佳时间解码

Optimal temporal decoding of neural population responses in a reaction-time visual detection task.

作者信息

Chen Yuzhi, Geisler Wilson S, Seidemann Eyal

机构信息

Department of Psychology and Center for Perceptual Systems, The University of Texas at Austin, 108 E. Dean Keeton, 1 University Station A8000, Austin, TX 78712-0187, USA.

出版信息

J Neurophysiol. 2008 Mar;99(3):1366-79. doi: 10.1152/jn.00698.2007. Epub 2008 Jan 16.

Abstract

Behavioral performance in detection and discrimination tasks is likely to be limited by the quality and nature of the signals carried by populations of neurons in early sensory cortical areas. Here we used voltage-sensitive dye imaging (VSDI) to directly measure neural population responses in the primary visual cortex (V1) of monkeys performing a reaction-time detection task. Focusing on the temporal properties of the population responses, we found that V1 responses are consistent with a stimulus-evoked response with amplitude and latency that depend on target contrast and a stimulus-independent additive noise with long-lasting temporal correlations. The noise had much lower amplitude than the ongoing activity reported previously in anesthetized animals. To understand the implications of these properties for subsequent processing stages that mediate behavior, we derived the Bayesian ideal observer that specifies how to optimally use neural responses in reaction time tasks. Using the ideal observer analysis, we show that 1) the observed temporal correlations limit the performance benefit that can be attained by accumulating V1 responses over time, 2) a simple temporal decorrelation operation with time-lagged excitation and inhibition minimizes the detrimental effect of these correlations, 3) the neural information relevant for target detection is concentrated in the initial response following stimulus onset, and 4) a decoder that optimally uses V1 responses far outperforms the monkey in both speed and accuracy. Finally, we demonstrate that for our particular detection task, temporal decorrelation followed by an appropriate running integrator can approach the speed and accuracy of the optimal decoder.

摘要

在检测和辨别任务中的行为表现可能受到早期感觉皮层区域神经元群体所携带信号的质量和性质的限制。在此,我们使用电压敏感染料成像(VSDI)直接测量执行反应时检测任务的猴子初级视觉皮层(V1)中的神经群体反应。聚焦于群体反应的时间特性,我们发现V1反应与一种刺激诱发反应一致,其幅度和潜伏期取决于目标对比度,以及一种具有持久时间相关性的与刺激无关的加性噪声。该噪声的幅度比先前在麻醉动物中报道的持续活动要低得多。为了理解这些特性对介导行为的后续处理阶段的影响,我们推导了贝叶斯理想观察者,它规定了在反应时任务中如何最佳地利用神经反应。使用理想观察者分析,我们表明:1)观察到的时间相关性限制了通过随时间累积V1反应所能获得的性能提升;2)一种具有时间滞后兴奋和抑制的简单时间去相关操作可将这些相关性的有害影响降至最低;3)与目标检测相关的神经信息集中在刺激开始后的初始反应中;4)一种最佳利用V1反应的解码器在速度和准确性方面都远优于猴子。最后,我们证明,对于我们特定的检测任务,时间去相关之后接适当的连续积分器可以接近最佳解码器的速度和准确性。

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