Zilkha Neurogenetic Institute, Keck School of Medicine, University of Southern California, Los Angeles, California, USA.
Nat Neurosci. 2013 Sep;16(9):1179-81. doi: 10.1038/nn.3493. Epub 2013 Aug 11.
Cortical processing of sensory information begins with the transformation of thalamically relayed signals. We optogenetically silenced intracortical circuits to isolate thalamic inputs to layer 4 neurons and found that intracortical excitation linearly amplified thalamocortical responses underlying frequency and direction selectivity, with spectral range and tuning preserved, and prolonged the response duration. This signal pre-amplification and prolongation enhanced the salience of thalamocortically relayed information and ensured its robust, faithful and more persistent representation.
感觉信息的皮质处理始于丘脑中继信号的转换。我们用光遗传学方法沉默了皮质内回路,以分离层 4 神经元的丘脑输入,发现皮质内兴奋线性放大了基础频率和方向选择性的丘脑皮质反应,保留了频谱范围和调谐,并延长了反应持续时间。这种信号预放大和延长增强了丘脑皮质传递信息的显著性,并确保了其稳健、真实和更持久的表示。