Trägenap Sigrid, Whitney David E, Fitzpatrick David, Kaschube Matthias
Frankfurt Institute for Advanced Studies (FIAS), Frankfurt, Germany.
International Max Planck Research School for Neural Circuits, Frankfurt, Germany.
Nat Neurosci. 2025 Feb;28(2):394-405. doi: 10.1038/s41593-024-01857-3. Epub 2025 Feb 4.
The fundamental structure of cortical networks arises early in development before the onset of sensory experience. However, how endogenously generated networks respond to the onset of sensory experience and how they form mature sensory representations with experience remain unclear. In this study, we examined this 'nature-nurture transform' at the single-trial level using chronic in vivo calcium imaging in ferret visual cortex. At eye opening, visual stimulation evokes robust patterns of modular cortical network activity that are highly variable within and across trials, severely limiting stimulus discriminability. These initial stimulus-evoked modular patterns are distinct from spontaneous network activity patterns present before and at the time of eye opening. Within a week of normal visual experience, cortical networks develop low-dimensional, highly reliable stimulus representations that correspond with reorganized patterns of spontaneous activity. Using a computational model, we propose that reliable visual representations derive from the alignment of feedforward and recurrent cortical networks shaped by novel patterns of visually driven activity.
皮层网络的基本结构在发育早期、感觉经验开始之前就已出现。然而,内源性生成的网络如何对感觉经验的开始做出反应,以及它们如何随着经验形成成熟的感觉表征,目前仍不清楚。在这项研究中,我们使用雪貂视觉皮层的慢性体内钙成像技术,在单试次水平上研究了这种“先天-后天转变”。在睁眼时,视觉刺激会引发模块化皮层网络活动的强烈模式,这些模式在试次内和试次间具有高度变异性,严重限制了刺激辨别能力。这些最初由刺激诱发的模块化模式与睁眼之前及睁眼时出现的自发网络活动模式不同。在正常视觉经验的一周内,皮层网络会形成低维、高度可靠的刺激表征,这些表征与自发活动的重组模式相对应。我们通过一个计算模型提出,可靠的视觉表征源自由视觉驱动活动的新模式塑造的前馈和循环皮层网络的对齐。