Scannell J W, Young M P
Department of Psychology, University of Newcastle, Newcastle-upon-Tyne, UK.
Proc Biol Sci. 1999 May 7;266(1422):875-81. doi: 10.1098/rspb.1999.0718.
Human functional brain imaging detects blood flow changes that are thought to reflect the activity of neuronal populations and, thus, the responses of neurons that carry behaviourally relevant information. Since this relationship is poorly understood, we explored the link between the activity of single neurons and their neuronal population. The functional imaging results were in good agreement with levels of population activation predicted from the known effects of sensory stimulation, learning and attention on single cortical neurons. However, the nature of the relationship between population activation and single neuron firing was very surprising. Population activation was strongly influenced by those neurons firing at low rates and so was very sensitive to the baseline or 'spontaneous' firing rate. When neural representations were sparse and neurons were tuned to several stimulus dimensions, population activation was hardly influenced by the few neurons whose firing was most strongly modulated by the task or stimulus. Measures of population activation could miss changes in information processing given simultaneous changes in neurons' baseline firing, response modulation or tuning width. Factors that can modulate baseline firing, such as attention, may have a particularly large influence on population activation. The results have implications for the interpretation of functional imaging signals and for cross-calibration between different methods for measuring neuronal activity.
人类功能性脑成像可检测到血流变化,这些变化被认为反映了神经元群体的活动,从而反映了携带行为相关信息的神经元的反应。由于这种关系尚未得到充分理解,我们探索了单个神经元的活动与其神经元群体之间的联系。功能成像结果与根据感觉刺激、学习和注意力对单个皮层神经元的已知影响所预测的群体激活水平高度一致。然而,群体激活与单个神经元放电之间关系的本质非常令人惊讶。群体激活受到低放电率神经元的强烈影响,因此对基线或“自发”放电率非常敏感。当神经表征稀疏且神经元被调整到几个刺激维度时,群体激活几乎不受少数其放电受任务或刺激强烈调制的神经元的影响。考虑到神经元基线放电、反应调制或调谐宽度的同时变化,群体激活的测量可能会遗漏信息处理的变化。能够调节基线放电的因素,如注意力,可能对群体激活有特别大的影响。这些结果对功能成像信号的解释以及不同神经元活动测量方法之间的交叉校准具有启示意义。