Lempel Augusto Abel, Trägenap Sigrid, Tepohl Clara, Kaschube Matthias, Fitzpatrick David
bioRxiv. 2024 Dec 24:2023.07.09.547747. doi: 10.1101/2023.07.09.547747.
Sensory cortical areas guide behavior by transforming stimulus-driven inputs into selective responses representing relevant features. A classic example is the representation of edge orientations in the visual cortex , where layer 4 (L4) neurons co-activated by an orientation provide feedforward inputs to specific functional modules in layer 2/3 (L2/3) that share strong recurrent connections . The aligned state of feedforward-recurrent interactions is critical for amplifying selective cortical responses , but how it develops remains unclear. Using simultaneous electrophysiology and calcium imaging in visually naïve animals we find that coactivity of L4 neurons and L2/3 modular responses elicited by oriented gratings lacks the tight relationship to orientation preference found in experienced animals. One factor that could contribute to the lack of functionally specific coactivity is high variability in naïve L4 neuron responses that decreases significantly following experience. But a computational model of feedforward-recurrent interaction suggests that high variability alone is insufficient to explain the naïve state and provides a biological signature of feedforward-recurrent misalignment that we confirm with whole-cell recordings: dynamic changes in orientation tuning of L2/3 subthreshold responses shortly after stimulus onset. In conclusion, we provide diverse evidence for a realignment of feedforward-recurrent interactions following experience that is critical for building reliable sensory representations with interlaminar temporal coherence.
感觉皮层区域通过将刺激驱动的输入转化为代表相关特征的选择性反应来指导行为。一个经典的例子是视觉皮层中边缘方向的表征,其中由一个方向共同激活的第4层(L4)神经元向第2/3层(L2/3)中具有强循环连接的特定功能模块提供前馈输入。前馈-循环相互作用的对齐状态对于放大选择性皮层反应至关重要,但它是如何发展的仍不清楚。通过在视觉未成熟动物中同时进行电生理学和钙成像,我们发现由定向光栅引发的L4神经元的共同活动和L2/3模块反应与在经验丰富的动物中发现的方向偏好缺乏紧密关系。导致缺乏功能特异性共同活动的一个因素是未成熟L4神经元反应的高变异性,这种变异性在经历后会显著降低。但是一个前馈-循环相互作用的计算模型表明,仅高变异性不足以解释未成熟状态,并提供了一个前馈-循环未对齐的生物学特征,我们通过全细胞记录证实了这一点:刺激开始后不久L2/3阈下反应的方向调谐的动态变化。总之,我们提供了多种证据,证明经验后前馈-循环相互作用的重新对齐对于建立具有层间时间一致性的可靠感觉表征至关重要。