Ehrlich D, Zappia J V, Saleh C N
Department of Anatomy, Monash University, Clayton, Victoria, Australia.
Anat Embryol (Berl). 1988;177(4):361-70. doi: 10.1007/BF00315845.
The developing supraoptic decussation (SOD), a major interhemispheric tract in birds, has been implicated in both transfer of visual information and in the modulation of brain asymmetry. Moreover little is known of its morphology during development. We have examined the development of the chick SOD, which consists of three subregions; dorsal, ventral and subventral SOD. In the dorsal SOD the total number of fibres reach 968,000 on the 19th day of incubation (E-19), falling to 570,000 by the 8th day after hatching (P-8). In the ventral SOD, the number of fibres at E-19 reach 660,000, followed by a gradual reduction in their number to about 490,000 at P-22. In the subventral SOD the number of fibres estimated was 87,000 at E-15 falling to about 36,000 P-1. Compared with adult levels, there is, respectively, a drop in the number of fibres of 44%, 25% and 69% in the dorsal, ventral and subventral SOD during development. At E-19 in both the dorsal and ventral SOD there is qualitative evidence of axonal loss; disrupted axonal profiles, increased extracellular space and cells containing lysosomal cytoplasmic inclusions indicative of macrophages. Differences were also observed in the pattern of myelination, the dorsal, ventral and subventral SOD were shown to myelinate at different rates. Thus, in a single named tract, the SOD, there are major differences in the onset, rate and extent of fibre loss and myelogenesis within its three subregions. The functional implications of these differences are considered.
正在发育的视上交叉(SOD)是鸟类主要的半球间神经束,与视觉信息传递及脑不对称性调节均有关联。此外,人们对其发育过程中的形态了解甚少。我们研究了鸡的SOD的发育情况,它由三个亚区域组成:背侧、腹侧和腹下SOD。在背侧SOD中,孵化第19天(E-19)时纤维总数达到968,000条,到孵化后第8天(P-8)降至570,000条。在腹侧SOD中,E-19时纤维数量达到660,000条,随后数量逐渐减少,到P-22时约为490,000条。在腹下SOD中,估计E-15时纤维数量为87,000条,到P-1时降至约36,000条。与成年水平相比,发育过程中背侧、腹侧和腹下SOD的纤维数量分别下降了44%、25%和69%。在E-19时,背侧和腹侧SOD均有轴突损失的定性证据;轴突轮廓破坏、细胞外间隙增加以及含有溶酶体细胞质内含物的细胞(提示巨噬细胞)。在髓鞘形成模式上也观察到差异,背侧、腹侧和腹下SOD的髓鞘形成速率不同。因此,在单一命名的神经束SOD中,其三个亚区域在纤维损失和髓鞘形成的起始、速率及程度上存在重大差异。本文探讨了这些差异的功能意义。