Department of Brain and Cognitive Sciences, Picower Institute for Learning and Memory, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.
J Neurosci. 2013 Jul 10;33(28):11724-33. doi: 10.1523/JNEUROSCI.2196-12.2013.
Inhibitory neurons have been shown to perform a variety of functions within brain circuits, including shaping response functions in target cells. Still, how the properties of specific inhibitory neuron classes relate to their local circuits remains unclear. To better understand the distribution and origins of orientation selectivity in inhibitory neurons expressing the calcium binding protein parvalbumin (PV) in the mouse primary visual cortex, we labeled PV(+) neurons with red fluorescent protein (RFP) and targeted them for cell-attached electrophysiological recordings. PV(+) neurons could be broadly tuned or sharply tuned for orientation but tended to be more broadly tuned than unlabeled neurons on average. The dendritic morphology of PV(+) cells, revealed by intracellular labeling, was strongly correlated with tuning: highly tuned PV(+) neurons had shorter dendrites that branched nearer to the soma and had smaller dendritic fields overall, whereas broadly tuned PV(+) neurons had longer dendrites that branched farther from the soma, producing larger dendritic fields. High-speed two-photon calcium imaging of visual responses showed that the orientation preferences of highly tuned PV(+) neurons resembled the preferred orientations of neighboring cells. These results suggest that the diversity of the local neighborhood and the nature of dendritic sampling may both contribute to the response selectivity of PV(+) neurons.
抑制性神经元在大脑回路中表现出多种功能,包括塑造靶细胞的反应功能。然而,特定抑制性神经元类别的特性如何与其局部回路相关仍然不清楚。为了更好地了解在小鼠初级视觉皮层中表达钙结合蛋白 parvalbumin (PV) 的抑制性神经元中,朝向选择性的分布和起源,我们用红色荧光蛋白 (RFP) 标记 PV(+)神经元,并对其进行细胞贴附电生理记录。PV(+)神经元可以对朝向进行广泛调谐或锐调谐,但平均而言,它们比未标记的神经元更容易进行广泛调谐。通过细胞内标记揭示的 PV(+)细胞的树突形态与调谐强烈相关:高度调谐的 PV(+)神经元的树突较短,分枝更靠近胞体,总体上树突场较小,而广泛调谐的 PV(+)神经元的树突较长,分枝离胞体更远,产生更大的树突场。高速双光子钙成像显示,高度调谐的 PV(+)神经元的朝向偏好与邻近细胞的偏好朝向相似。这些结果表明,局部邻域的多样性和树突采样的性质都可能对 PV(+)神经元的反应选择性产生影响。