Wilson Daniel E, Whitney David E, Scholl Benjamin, Fitzpatrick David
Max Planck Florida Institute for Neuroscience, Jupiter, Florida, USA.
Integrative Biology and Neuroscience Graduate Program, Florida Atlantic University, Jupiter, Florida, USA.
Nat Neurosci. 2016 Aug;19(8):1003-9. doi: 10.1038/nn.4323. Epub 2016 Jun 13.
The majority of neurons in primary visual cortex are tuned for stimulus orientation, but the factors that account for the range of orientation selectivities exhibited by cortical neurons remain unclear. To address this issue, we used in vivo two-photon calcium imaging to characterize the orientation tuning and spatial arrangement of synaptic inputs to the dendritic spines of individual pyramidal neurons in layer 2/3 of ferret visual cortex. The summed synaptic input to individual neurons reliably predicted the neuron's orientation preference, but did not account for differences in orientation selectivity among neurons. These differences reflected a robust input-output nonlinearity that could not be explained by spike threshold alone and was strongly correlated with the spatial clustering of co-tuned synaptic inputs within the dendritic field. Dendritic branches with more co-tuned synaptic clusters exhibited greater rates of local dendritic calcium events, supporting a prominent role for functional clustering of synaptic inputs in dendritic nonlinearities that shape orientation selectivity.
初级视皮层中的大多数神经元都对刺激方向进行了调谐,但解释皮层神经元所表现出的方向选择性范围的因素仍不清楚。为了解决这个问题,我们使用了在体双光子钙成像技术来表征雪貂视皮层第2/3层单个锥体神经元树突棘突触输入的方向调谐和空间排列。单个神经元的总突触输入可靠地预测了神经元的方向偏好,但无法解释神经元之间方向选择性的差异。这些差异反映了一种强大的输入-输出非线性,这种非线性不能仅由动作电位阈值来解释,并且与树突域内共调谐突触输入的空间聚类密切相关。具有更多共调谐突触簇的树突分支表现出更高的局部树突钙事件发生率,这支持了突触输入的功能聚类在塑造方向选择性的树突非线性中起重要作用。