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将皮层尖峰模式编码与听觉感知相联系。

Linking cortical spike pattern codes to auditory perception.

作者信息

Walker Kerry M M, Ahmed Bashir, Schnupp Jan W H

机构信息

University of Oxford, UK.

出版信息

J Cogn Neurosci. 2008 Jan;20(1):135-52. doi: 10.1162/jocn.2008.20012.

Abstract

Abstract Neurometric analysis has proven to be a powerful tool for studying links between neural activity and perception, especially in visual and somatosensory cortices, but conventional neurometrics are based on a simplistic rate-coding hypothesis that is clearly at odds with the rich and complex temporal spiking patterns evoked by many natural stimuli. In this study, we investigated the possible relationships between temporal spike pattern codes in the primary auditory cortex (A1) and the perceptual detection of subtle changes in the temporal structure of a natural sound. Using a two-alternative forced-choice oddity task, we measured the ability of human listeners to detect local time reversals in a marmoset twitter call. We also recorded responses of neurons in A1 of anesthetized and awake ferrets to these stimuli, and analyzed these responses using a novel neurometric approach that is sensitive to temporal discharge patterns. We found that although spike count-based neurometrics were inadequate to account for behavioral performance on this auditory task, neurometrics based on the temporal discharge patterns of populations of A1 units closely matched the psychometric performance curve, but only if the spiking patterns were resolved at temporal resolutions of 20 msec or better. These results demonstrate that neurometric discrimination curves can be calculated for temporal spiking patterns, and they suggest that such an extension of previous spike count-based approaches is likely to be essential for understanding the neural correlates of the perception of stimuli with a complex temporal structure.

摘要

摘要 神经计量分析已被证明是研究神经活动与感知之间联系的有力工具,尤其是在视觉和躯体感觉皮层中,但传统的神经计量学基于一种简单的速率编码假设,这显然与许多自然刺激所引发的丰富而复杂的时间发放模式不一致。在本研究中,我们调查了初级听觉皮层(A1)中的时间发放模式编码与自然声音时间结构细微变化的感知检测之间的可能关系。使用二选一强制选择异常任务,我们测量了人类听众检测狨猴推特叫声中局部时间反转的能力。我们还记录了麻醉和清醒雪貂的A1神经元对这些刺激的反应,并使用一种对时间放电模式敏感的新型神经计量方法分析这些反应。我们发现,虽然基于放电计数的神经计量学不足以解释该听觉任务中的行为表现,但基于A1单位群体时间放电模式的神经计量学与心理测量性能曲线紧密匹配,但前提是发放模式在20毫秒或更高的时间分辨率下得到解析。这些结果表明,可以为时间发放模式计算神经计量判别曲线,并且它们表明,这种对先前基于放电计数方法的扩展可能对于理解具有复杂时间结构的刺激感知的神经相关性至关重要。

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