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Ocular dominance column development: strabismus changes the spacing of adjacent columns in cat visual cortex

机译:眼优势柱发育:斜视改变猫视觉皮层中相邻柱的间距

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摘要

To investigate the role of visual experience for the gross layout of ocular dominance (OD) columns in the visual cortex, I compared the respective patterns in normally raised and strabismic cats. OD domains were visualized by (1) transneuronal labeling of the afferents from the left or right eye with intraocular 3H-proline injections or (2) 14C-2- deoxyglucose autoradiography after monocular visual stimulation in awake animals. To obtain the complete pattern of OD columns, flat-mount sections were prepared from the unfolded cortical hemispheres. Eliminating correlated activity between the two eyes by making the animals strabismic influenced the gross layout of the OD domains. In area 17, OD domains become more sharply delineated than in normal animals and spaced more widely. Spatial frequency analyses revealed a mean spacing of adjacent columns of 1100–1300 microns in strabismic and of 800–1000 microns in normal cats. In area 18, the spacing of the ocular dominance domains is larger than in area 17 for both normal and strabismic cats (1500–1650 microns), but little influenced by strabismus. These results indicate that in area 17 decreased correlation of activity between the eyes alters the periodicity of OD columns. In addition, these observations suggest that not only the segregation of afferents into distinct columns but also the final expression of the columnar grid is influenced by visual experience, and in particular by the temporal patterning of neural activity. This is further evidence for the hypothesis that the development of OD columns is governed by activity-dependent self-organizing principles.
机译:为了调查视觉体验在视觉皮层中眼优势(OD)列的总体布局中的作用,我比较了正常饲养和斜视猫的各自模式。通过在清醒动物中单眼视觉刺激后,通过眼内3H-脯氨酸注射或(2)14C-2-脱氧葡萄糖放射自显影,通过(1)左眼或右眼传入神经的经神经元标记来可视化OD域。为了获得OD柱的完整图案,从展开的皮层半球制备了平面安装的切片。通过使动物产生斜视来消除两只眼睛之间的相关活动,从而影响了OD域的总体布局。与普通动物相比,在区域17中,OD域的轮廓更加清晰,间距更宽。空间频率分析显示,斜视中相邻列的平均间距为1100-1300微米,正常猫中为800-1000微米。对于正常猫和斜视猫(1500-1650微米),在区域18的眼优势域的间距都大于区域17,但斜视的影响很小。这些结果表明,在区域17中,两眼之间活动的相关性降低,从而改变了OD列的周期性。此外,这些观察结果表明,不仅视觉传入分隔成不同的列,而且柱状网格的最终表达还受到视觉体验的影响,尤其是神经活动的时间模式。这进一步证明了以下假设:OD柱的开发受活动相关的自组织原则支配。

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