首页> 外文期刊>Frontiers in Systems Neuroscience >Visual system plasticity in mammals: the story of monocular enucleation-induced vision loss
【24h】

Visual system plasticity in mammals: the story of monocular enucleation-induced vision loss

机译:哺乳动物的视觉系统可塑性:单眼摘除引起的视力丧失的故事

获取原文
       

摘要

The groundbreaking work of Hubel and Wiesel in the 1960’s on ocular dominance plasticity instigated many studies of the visual system of mammals, enriching our understanding of how the development of its structure and function depends on high quality visual input through both eyes. These studies have mainly employed lid suturing, dark rearing and eye patching applied to different species to reduce or impair visual input, and have created extensive knowledge on binocular vision. However, not all aspects and types of plasticity in the visual cortex have been covered in full detail. In that regard, a more drastic deprivation method like enucleation, leading to complete vision loss appears useful as it has more widespread effects on the afferent visual pathway and even on non-visual brain regions. One-eyed vision due to monocular enucleation (ME) profoundly affects the contralateral retinorecipient subcortical and cortical structures thereby creating a powerful means to investigate cortical plasticity phenomena in which binocular competition has no vote.In this review, we will present current knowledge about the specific application of ME as an experimental tool to study visual and cross-modal brain plasticity and compare early postnatal stages up into adulthood. The structural and physiological consequences of this type of extensive sensory loss as documented and studied in several animal species and human patients will be discussed. We will summarize how ME studies have been instrumental to our current understanding of the differentiation of sensory systems and how the structure and function of cortical circuits in mammals are shaped in response to such an extensive alteration in experience. In conclusion, we will highlight future perspectives and the clinical relevance of adding ME to the list of more longstanding deprivation models in visual system research.
机译:1960年代,Hubel和Wiesel在眼部可塑性方面的开创性工作引发了对哺乳动物视觉系统的许多研究,丰富了我们对其结构和功能的发展如何依赖于两只眼睛的高质量视觉输入的理解。这些研究主要是将眼睑缝合,黑暗饲养和眼睛修补应用于不同物种,以减少或削弱视觉输入,并在双眼视觉方面积累了广泛的知识。但是,并未完全涵盖视觉皮层的所有方面和类型的可塑性。在这方面,一种更彻底的剥夺方法(如去核)会导致完全的视力丧失,因为它对传入的视觉通路甚至对非视觉的大脑区域具有更广泛的影响,因此似乎很有用。单眼摘除术(ME)引起的单眼视觉深刻影响了对侧视网膜受体的皮层和皮层结构,从而为研究双眼竞争无投票权的皮层可塑性现象提供了一种有力的手段。应用ME作为研究视觉和跨模态大脑可塑性并比较成年后早期到成年的实验工具。将讨论在多种动物物种和人类患者中记录和研究的这种广泛的感觉丧失类型的结构和生理后果。我们将总结ME研究如何帮助我们目前理解感觉系统的差异,以及哺乳动物的皮质回路的结构和功能如何根据这种广泛的经验变化而形成。总而言之,我们将重点介绍在视觉系统研究中将ME添加到更长期的剥夺模型列表中的未来观点和临床意义。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号