DiCarlo James J, Maunsell John H R
Howard Hughes Medical Institute and Division of Neuroscience, Balyor College of Medicine, Houston, Texas, USA.
J Neurophysiol. 2005 May;93(5):2974-86. doi: 10.1152/jn.00508.2004. Epub 2004 Nov 17.
We describe a new technique that uses the timing of neuronal and behavioral responses to explore the contributions of individual neurons to specific behaviors. The approach uses both the mean neuronal latency and the trial-by-trial covariance between neuronal latency and behavioral response. Reliable measurements of these values were obtained from single-unit recordings made from anterior inferotemporal (AIT) cortex and the frontal eye fields (FEF) in monkeys while they performed a choice reaction time task. These neurophysiological data show that the responses of AIT neurons and some FEF neurons have little covariance with behavioral response, consistent with a largely "sensory" response. The responses of another group of FEF neurons with longer mean latency covary tightly with behavioral response, consistent with a largely "motor" response. A very small fraction of FEF neurons had responses consistent with an intermediate position in the sensory-motor pathway. These results suggest that this technique is a valuable tool for exploring the functional organization of neuronal circuits that underlie specific behaviors.
我们描述了一种新技术,该技术利用神经元和行为反应的时间来探究单个神经元对特定行为的贡献。该方法同时使用了神经元潜伏期的平均值以及神经元潜伏期与行为反应之间的逐次试验协方差。通过对猴子执行选择反应时任务期间从前颞下皮质(AIT)和额叶眼区(FEF)进行的单单元记录,获得了这些值的可靠测量结果。这些神经生理学数据表明,AIT神经元和一些FEF神经元的反应与行为反应几乎没有协方差,这与主要是“感觉”反应一致。另一组平均潜伏期较长的FEF神经元的反应与行为反应紧密相关,这与主要是“运动”反应一致。极少数FEF神经元的反应与感觉运动通路中的中间位置一致。这些结果表明,该技术是探索构成特定行为基础的神经元回路功能组织的有价值工具。