Ruthazer E S, Stryker M P
Keck Center for Integrative Neuroscience, University of California, San Francisco 94143-0444, USA.
J Neurosci. 1996 Nov 15;16(22):7253-69. doi: 10.1523/JNEUROSCI.16-22-07253.1996.
Horizontal connections in area 17 of adult cats and ferrets link cells with similar preferred orientations by a patchy network of projections extending several millimeters across the cortex. The maturation of orientation selectivity in ferret area 17 has been demonstrated previously by quantitative single-unit recording and optical imaging to begin at approximately postnatal days (P) 32-P36. We therefore made restricted injections of cholera toxin B-subunit (CTB) or CTB-gold into ferret area 17 at a series of developmental ages and statistically quantified the degree of clustering in plots of retrogradely labeled cells in tangential sections through layer III for comparison to the published values for orientation tuning at each age. At P21, horizontal connections within area 17 lacked patchiness entirely, although clear patches of labeled cells were present in extrastriate areas. By P27, significant clustering of horizontal connections within area 17 was present. A second phase of cluster refinement was observed to occur at approximately P34-P36, coinciding with the emergence of mature orientation tuning and maps. Continuous silencing of cortical action potentials by chronic tetrodotoxin infusion from P21 resulted in a spatially random distribution of retrogradely labeled cells at P34. In contrast, bilateral enucleation from P21 did not prevent the initial development of clustered horizontal connections. We conclude, based on our findings and those of others, that the anatomical specificity of long-range horizontal connections results from an activity-dependent process that initially can use spontaneous activity in the cortical and thalamic networks to establish crude periodic connections and later uses visual cues to refine these connections.
成年猫和雪貂17区的水平连接通过横跨皮层数毫米的斑块状投射网络,将具有相似偏好方向的细胞连接起来。先前通过定量单单元记录和光学成像已证明,雪貂17区方向选择性的成熟始于出生后约32 - 36天(P)。因此,我们在一系列发育阶段向雪貂17区注射霍乱毒素B亚单位(CTB)或CTB - 金,并对通过III层的切向切片中逆行标记细胞的聚类程度进行统计量化,以便与每个年龄已发表的方向调谐值进行比较。在P21时,17区内的水平连接完全没有斑块,尽管在纹外区存在明显的标记细胞斑块。到P27时,17区内水平连接出现了显著的聚类。观察到聚类细化的第二阶段大约在P34 - P36发生,这与成熟方向调谐和图谱的出现相吻合。从P21开始通过慢性河豚毒素注入持续沉默皮层动作电位,导致在P34时逆行标记细胞呈空间随机分布。相比之下,从P21开始双侧摘除眼球并没有阻止聚类水平连接的初始发育。基于我们的研究结果以及其他研究结果,我们得出结论,远距离水平连接的解剖学特异性源于一个依赖活动的过程,该过程最初可以利用皮层和丘脑网络中的自发活动来建立粗略的周期性连接,随后利用视觉线索来细化这些连接。