Shechter B, Depireux D A
Department of Anatomy and Neurobiology, School of Medicine, University of Maryland, Baltimore, MD 21201, USA.
Neuroscience. 2007 Sep 7;148(3):806-14. doi: 10.1016/j.neuroscience.2007.06.027. Epub 2007 Aug 10.
The steady-state spectro-temporal tuning of auditory cortical cells has been studied using a variety of broadband stimuli that characterize neurons by their steady-state responses to long duration stimuli, lasting from about a second to several minutes. Central sensory stations are thought to adapt in their response to stimuli presented over extended periods of time. For instance, we have previously shown that auditory cortical neurons display a second order of adaptation, whereby the rate of their adaptation to the repeated presentation of fixed alternating stimuli decreases with each presentation. The auditory grating (or ripple) method of characterizing central auditory neurons, and its extensions, have proven very effective. But these stimuli are typically used with spectro-temporal content held fixed over time-scales of seconds, introducing the possibility of rapid adaptation while the receptive field is being measured, whereas the neural response used to compute a spectro-temporal receptive field (STRF) assumes stationarity in the neural input/output function. We demonstrate dynamic changes in some parameters during the measurement of the STRF over a period of seconds, even absent of a relevant behavioral task. Specifically, we find in the primary auditory cortex of the awake ferret, small but systematic changes in duration and breadth of tuning of STRFs when comparing the early (0.25-1.75 s) and late (4.5-6 s) segments of the responses to these stimuli.
人们使用了各种宽带刺激来研究听觉皮层细胞的稳态光谱 - 时间调谐,这些刺激通过神经元对持续时间较长的刺激(持续约一秒到几分钟)的稳态反应来表征神经元。中枢感觉站被认为会在对长时间呈现的刺激的反应中产生适应。例如,我们之前已经表明,听觉皮层神经元表现出二阶适应性,即它们对固定交替刺激重复呈现的适应速率会随着每次呈现而降低。用于表征中枢听觉神经元的听觉光栅(或波纹)方法及其扩展已被证明非常有效。但是这些刺激通常在数秒的时间尺度上保持光谱 - 时间内容固定的情况下使用,这就引入了在测量感受野时快速适应的可能性,而用于计算光谱 - 时间感受野(STRF)的神经反应假设神经输入/输出函数是平稳的。我们证明,即使在没有相关行为任务的情况下,在数秒的时间段内测量STRF期间,某些参数也会发生动态变化。具体而言,我们发现在清醒雪貂的初级听觉皮层中,当比较对这些刺激反应的早期(0.25 - 1.75秒)和晚期(4.5 - 6秒)段时,STRF的调谐持续时间和宽度会有小但系统的变化。