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Formation of excess sublobules in the cerebellum of hypothyroid rats

机译:甲状腺功能减退大鼠小脑中多余小叶的形成

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摘要

Cerebellar folia may increase in number in hypothyroid rats (Lauder et al., 1974; Hasebe et al., 2008a). In this study, we aimed to confirm the formation of an excess sublobule and to determine whether excess sublobules are consistently formed in conserved positions in hypothyroid rats. Instead of the foliation pattern partitioned by cerebellar fissures, we employed the bifurcation pattern of the internal granular layer for investigation of complexity of the cerebellar cortex in hypothyroid rats. The basic foliation pattern of the cerebellum was intact in hypothyroid rats, but lobules III to IX frequently showed an increase in the number of sublobules. The excess sublobules were mainly found in the folia and along the shallow region of the fissure. In other words, the excess sublobules were not located in random locations but rather in specific locations. The area in the internal granular layer of lobules V to IX was significantly larger than that in control rats. From the increased area of the internal granular layer it may be inferred that internal granular cells increase in number than those in normal rats. In our study, regions within the cerebellum that show an excess of sublobules correlate with regions that show an intermediate to late-forming internal granular layer (Altman, 1969). Our observations fit with the view that excess sublobules are formed by the external granular layer showing prolonged cell proliferation and hypothyroidism predominantly has an adverse impact on the intermediate to late phases in development of the internal granular layer.
机译:甲状腺功能减退大鼠的小脑叶片数量可能增加(Lauder等,1974; Hasebe等,2008a)。在这项研究中,我们旨在确认过量亚小叶的形成,并确定在甲状腺功能低下大鼠的保守位置是否持续形成过量亚小叶。代替小脑裂孔划分的叶型,我们采用内部颗粒层的分叉模式来研究甲状腺功能减退大鼠小脑皮层的复杂性。甲状腺功能减退大鼠小脑的基本叶型完整,但小叶III至IX经常显示小叶数目增加。多余的小叶主要在叶片和裂痕的浅部发现。换句话说,多余的小叶不是位于随机位置,而是位于特定位置。 V至IX小叶的内部颗粒层的面积显着大于对照大鼠。从内部颗粒层的增加的面积可以推断出内部颗粒细胞的数目比正常大鼠的数目增加。在我们的研究中,小脑内表现出亚小叶过多的区域与显示中间至晚期形成的内部颗粒层的区域相关(Altman,1969)。我们的观察结果与以下观点相吻合:外颗粒层形成过多的小叶,表明细胞增殖时间延长,甲状腺功能减退主要对内部颗粒层发育的中后期起到不利影响。

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