Hall Amee J, Lomber Stephen G
Graduate Program in Neuroscience, University of Western Ontario, London, ON, Canada.
Exp Brain Res. 2008 Oct;190(4):413-30. doi: 10.1007/s00221-008-1485-7. Epub 2008 Jul 19.
The purpose of the present study was to identify projections from auditory to visual cortex and their organization. Retrograde tracers were used to identify the sources of auditory cortical projections to primary visual cortex (areas 17 and 18) in adult cats. Two groups of animals were studied. In the first group, large deposits were centered on the lower visual field representation of the vertical meridian located along the area 17 and 18 border. Following tissue processing, characteristic patterns of cell body labeling were identified in extrastriate visual cortex and the visual thalamus (LGN, MIN, & LPl). In auditory cortex, of the four tonotopically-organized regions, neuronal labeling was identified in the supragranular layers of the posterior auditory field (PAF). Little to no labeling was evident in the primary auditory cortex, the anterior auditory field, the ventral posterior auditory field or in the remaining six non-tonotopically organized regions of auditory cortex. In the second group, small deposits were made into the central or peripheral visual field representations of primary visual cortex. Labeled cells were identified in PAF following deposits into regions of primary visual cortex representing peripheral, but not central, visual field representations. Furthermore, a coarse topography was identified in PAF, with neurons projecting to the upper field representation being located in the gyral portion of PAF and neurons projecting to the lower field representation located in the sulcal portion of PAF. Therefore, direct projections can be identified from tonotopically organized auditory cortex to the earliest stages of visual cortical processing.
本研究的目的是确定从听觉皮层到视觉皮层的投射及其组织方式。逆行示踪剂被用于识别成年猫中听觉皮层向初级视觉皮层(17区和18区)投射的来源。研究了两组动物。在第一组中,大量示踪剂沉积集中在沿17区和18区边界的垂直子午线的下视野代表区。经过组织处理后,在纹外视觉皮层和视觉丘脑(外侧膝状体、中间层和外侧后核)中识别出细胞体标记的特征模式。在听觉皮层中,在四个音调组织区域中,神经元标记出现在后听觉场(PAF)的颗粒上层。在初级听觉皮层、前听觉场、腹侧后听觉场或听觉皮层的其余六个非音调组织区域中几乎没有标记。在第二组中,将少量示踪剂沉积到初级视觉皮层的中央或周边视野代表区。在将示踪剂沉积到代表周边而非中央视野的初级视觉皮层区域后,在PAF中识别出标记细胞。此外,在PAF中识别出一种粗略的地形图,投射到上视野代表区的神经元位于PAF的脑回部分,而投射到下视野代表区的神经元位于PAF的脑沟部分。因此,可以确定从音调组织的听觉皮层到视觉皮层处理的最早阶段存在直接投射。