Research Institute of Molecular Pathology (IMP), Dr Bohr-Gasse 7, 1030 Vienna, Austria.
Neuron. 2012 Oct 18;76(2):435-49. doi: 10.1016/j.neuron.2012.07.008. Epub 2012 Oct 17.
The ability to group stimuli into perceptual categories is essential for efficient interaction with the environment. Discrete dynamics that emerge in brain networks are believed to be the neuronal correlate of category formation. Observations of such dynamics have recently been made; however, it is still unresolved if they actually match perceptual categories. Using in vivo two-photon calcium imaging in the auditory cortex of mice, we show that local network activity evoked by sounds is constrained to few response modes. Transitions between response modes are characterized by an abrupt switch, indicating attractor-like, discrete dynamics. Moreover, we show that local cortical responses quantitatively predict discrimination performance and spontaneous categorization of sounds in behaving mice. Our results therefore demonstrate that local nonlinear dynamics in the auditory cortex generate spontaneous sound categories which can be selected for behavioral or perceptual decisions.
将刺激分组到知觉类别中是与环境进行有效交互的关键。人们认为,大脑网络中出现的离散动力学是类别形成的神经元相关性。最近已经观察到了这种动力学;然而,它们是否实际上与知觉类别相匹配仍未解决。使用体内双光子钙成像技术在小鼠听觉皮层中,我们表明,声音引起的局部网络活动受到几种反应模式的限制。反应模式之间的转换具有突然的切换,表明类似于吸引子的离散动力学。此外,我们表明,局部皮质反应定量预测了行为小鼠中声音的辨别性能和自发分类。因此,我们的结果表明,听觉皮层中的局部非线性动力学产生了自发的声音类别,这些类别可以用于行为或知觉决策的选择。