Cardin Jessica A, Palmer Larry A, Contreras Diego
Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania 19106, USA.
J Neurosci. 2007 Sep 26;27(39):10333-44. doi: 10.1523/JNEUROSCI.1692-07.2007.
Although several lines of evidence suggest that stimulus selectivity in somatosensory and visual cortices is critically dependent on unselective inhibition, particularly in the thalamorecipient layer 4, no comprehensive comparison of the responses of excitatory and inhibitory cells has been conducted. Here, we recorded intracellularly from a large population of regular spiking (RS; presumed excitatory) and fast spiking (FS; presumed inhibitory) cells in layers 2-6 of primary visual cortex. In layer 4, where selectivity for orientation and spatial frequency first emerges, we found no untuned FS cells. Instead, the tuning of the spike output of layer 4 FS cells was significantly but moderately broader than that of RS cells. However, the tuning of the underlying synaptic responses was not different, indicating that the difference in spike-output selectivity resulted from differences in the transformation of synaptic input into firing rate. Layer 4 FS cells exhibited significantly lower input resistance and faster time constants than layer 4 RS cells, leading to larger and faster membrane potential (V(m)) fluctuations. FS cell V(m) fluctuations were more broadly tuned than those of RS cells and matched spike-output tuning, suggesting that the broader spike tuning of these cells was driven by visually evoked synaptic noise. These differences were not observed outside of layer 4. Thus, cell type-specific differences in stimulus feature selectivity at the first level of cortical sensory processing may arise as a result of distinct biophysical properties that determine the dynamics of synaptic integration.
尽管有几条证据表明,体感皮层和视觉皮层中的刺激选择性严重依赖于非选择性抑制,尤其是在丘脑接受层4中,但尚未对兴奋性和抑制性细胞的反应进行全面比较。在这里,我们对初级视觉皮层2-6层中的大量常规放电(RS;推测为兴奋性)和快速放电(FS;推测为抑制性)细胞进行了细胞内记录。在对方向和空间频率的选择性首次出现的第4层中,我们没有发现非调谐的FS细胞。相反,第4层FS细胞的尖峰输出调谐明显但适度地比RS细胞更宽。然而,潜在的突触反应的调谐没有差异,这表明尖峰输出选择性的差异是由突触输入到放电率的转换差异导致的。第4层FS细胞的输入电阻明显低于第4层RS细胞,时间常数更快,导致更大、更快的膜电位(V(m))波动。FS细胞的V(m)波动比RS细胞的调谐更宽,并且与尖峰输出调谐匹配,这表明这些细胞更宽的尖峰调谐是由视觉诱发的突触噪声驱动的。在第4层之外没有观察到这些差异。因此,在皮层感觉处理的第一水平上,刺激特征选择性的细胞类型特异性差异可能是由决定突触整合动力学的独特生物物理特性导致的。