Groupe de Recherche en Neurosciences, Département de chimie-biologie, Université du Québec à Trois-Rivières, Trois-Rivières, QC, Canada.
Eur J Neurosci. 2012 Oct;36(7):2949-63. doi: 10.1111/j.1460-9568.2012.08215.x. Epub 2012 Jul 11.
The purpose of this study was to identify and compare the afferent projections to the primary visual cortex in intact and enucleated C57BL/6 mice and in ZRDCT/An anophthalmic mice. Early loss of sensory-driven activity in blind subjects can lead to activations of the primary visual cortex by haptic or auditory stimuli. This intermodal activation following the onset of blindness is believed to arise through either unmasking of already present cortical connections, sprouting of novel cortical connections or enhancement of intermodal cortical connections. Studies in humans have similarly demonstrated heteromodal activation of visual cortex following relatively short periods of blindfolding. This suggests that the primary visual cortex in normal sighted subjects receives afferents, either from multisensory association cortices or from primary sensory cortices dedicated to other modalities. Here cortical afferents to the primary visual cortex were investigated to determine whether the visual cortex receives sensory input from other modalities, and whether differences exist in the quantity and/or the structure of projections found in sighted, enucleated and anophthalmic mice. This study demonstrates extensive direct connections between the primary visual cortex and auditory and somatosensory areas, as well as with motor and association cortices in all three animal groups. This suggests that information from different sensory modalities can be integrated at early cortical stages and that visual cortex activations following visual deprivations can partly be explained by already present intermodal corticocortical connections.
本研究旨在识别和比较正常视力、去眼和先天性失明(ZRDCT/An)小鼠初级视皮层的传入投射。在失明患者中,早期丧失感觉驱动活动可导致触觉或听觉刺激激活初级视皮层。这种失明后出现的模态间激活被认为是通过已经存在的皮质连接去掩蔽、新的皮质连接发芽或模态间皮质连接增强而产生的。人类研究同样表明,在相对较短的蒙眼期后,视觉皮层会出现异模态激活。这表明正常视力受试者的初级视皮层接收来自多感觉联合皮质或其他感觉模态的初级感觉皮质的传入。本研究旨在确定初级视皮层是否从其他感觉模态接收感觉输入,以及在正常视力、去眼和先天性失明小鼠中,发现的投射的数量和/或结构是否存在差异。本研究表明,初级视皮层与听觉和躯体感觉区域之间存在广泛的直接连接,以及在所有三组动物中与运动和联合皮质之间存在广泛的直接连接。这表明来自不同感觉模态的信息可以在早期皮质阶段整合,并且视觉剥夺后视觉皮层的激活可以部分解释为已经存在的模态间皮质皮质连接。