Does Puberty Affect the Ultrastructure of the Superior Colliculus in Male Albino Rats?

H. Hashish
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Abstract

Background: Puberty is the changes in the period of adolescence. The Superior Colliculus (SC) is located in dorsal midbrain. In mammals, the SC formed of seven layers. These layers are classified into superficial and deep parts. g-ratio is the ratio between the axon diameter and the fiber Identification of the g-ratio is valuable for the functional brain studies. The change in the g-ratio may indicate change in the myelination. Aim of the work: The purpose of this study is to investigate the effect of puberty on the histological structure and ultrastructure of the superior colliculus, and the possible changes in the g-ratio, if present, between prepubertal and post pubertal male rats. Materials and Methods: Twenty male albino rats were divided into pre pubertal and post pubertal rats. Rats of each group were anaesthetized with Ketamine, the superior colliculi were dissected; one used for paraffin sections, the other used for semi thin and ultrathin sections. The diameter of the axons and thickness of myelin, then g-ratio, and synaptic density were measured. Results: The ultrastructural study showed that in post puberal group there is significant reduction in axon diameter and increased myelin thickness which disturbed the g-ratio. The synapses showed significant reduction in the post-pubertal group. Conclusion: The superior colliculus exhibited post-pubertal changes in the axon diameter, myelin thickness and g-ratio which might affect the nerve conduction velocity, and in turn, may affect its function in the visual pathway, and other cognitive functions.
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青春期是否影响雄性白化大鼠上丘的超微结构?
背景:青春期是指青春期发生变化的时期。上丘位于中脑背侧。在哺乳动物中,SC由七层组成。这些层分为浅层和深层。g比是轴突直径与纤维的比值,确定g比对功能性脑的研究有重要意义。g比值的变化可能提示髓鞘形成的改变。本研究的目的是探讨青春期对青春期前和青春期后雄性大鼠上丘组织结构和超微结构的影响,以及如果存在g比可能发生的变化。材料与方法:将20只雄性白化大鼠分为青春期前大鼠和青春期后大鼠。各组大鼠均以氯胺酮麻醉,解剖上丘;一种用于石蜡切片,另一种用于半薄和超薄切片。测定大鼠轴突直径、髓鞘厚度、g比、突触密度。结果:超微结构研究显示,青春期后组大鼠轴突直径明显减少,髓鞘厚度明显增加,g-比值紊乱。在青春期后的实验组,突触明显减少。结论:青春期后上丘轴突直径、髓鞘厚度和g-比值发生变化,影响神经传导速度,进而影响其视觉通路功能和其他认知功能。
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