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Ischaemia in the Zinn-Haller circle and glaucomatous optic neuropathy in macaque monkeys

机译:猕猴桃圈中的缺血性猕猴和猕猴桃神经病变

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摘要

Aims: To elucidate the morphological features of optic neuropathy in an ischaemic model of glaucoma in macaque monkeys. Methods: The regional degenerative process was investigated by experimentally occluding the paraoptic branches of the lateral short posterior ciliary artery, that is, the circle of Haller and Zinn, in 11 eyes. Morphological changes in nerve fibres in the lamina cribrosa were evaluated by histopathology, immunocytochemistry and angiography, and the findings were compared with those observed in an aged macaque with spontaneous glaucomatous optic neuropathy. Results: Retinal ganglion cell axons were grouped in bundles and traversed through pores in columns of the lamina cribrosa. The processes of astrocytes extended to the bundles, and capillaries branched in surrounding connective tissue from the circular arterioles. Experimental ischaemia induced time-dependent anoxic deterioration of phosphorylated fibres in the temporal arcuate zone, accompanied by glial proliferation. A monkey with spontaneous visual impairment had nerve fibre loss and gliosis with collagenous proliferation in the temporal hemisphere, suggesting glaucomatous neuropathy. Conclusions: Circulatory interference in the circle of Haller and Zinn caused time-dependent deterioration in the area where anoxic segmental degeneration is associated with pathogenesis of open-angle glaucoma.
机译:目的:阐明猕猴猴子青光眼缺血模型中视神经病变的形态特征。方法:通过通过实验封闭横向短后睫状体动脉的Paraoptic分支来研究区域退行性过程,即Haller和Zinn圈,11只眼。通过组织病理学,免疫细胞化学和血管造影评估了椎板克里泽中神经纤维的形态变化,并将研究结果与自发性青光眼视神经病变中的猕猴观察到的结果进行了比较。结果:视网膜神经节细胞轴突被捆绑,并穿过椎板克里泽的柱中的毛孔。延伸到束的星形胶质细胞的过程,以及从圆形动脉杆菌的周围结缔组织分支的毛细血管。实验性缺血诱导时间依赖于颞弧区磷酸化纤维的时间依赖性缺氧劣化,伴随着胶质增殖。一种具有自发视力障碍的猴子具有神经纤维丧失和神经衰弱,颞半球胶原增殖,表明青光眼神经病变。结论:Haller和Zinn圈中的循环干扰导致缺氧节段变性与开口角膜发病有关的区域中的时间依赖性劣化。

著录项

  • 来源
    《British journal of ophthalmology》 |2012年第4期|共7页
  • 作者单位

    Division of Brain Development and Neuroregeneration Tokyo Metropolitan Institute of Medical;

    Systems Neuroscience Section Primate Research Institute Kyoto University Inuyama Aichi Japan;

    Systems Neuroscience Section Primate Research Institute Kyoto University Inuyama Aichi Japan;

    Systems Neuroscience Section Primate Research Institute Kyoto University Inuyama Aichi Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 眼科学;
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