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本文引用的文献

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Intrinsic processing in the mammalian superior colliculus.哺乳动物上丘的内在加工
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The optic tectum controls visually guided adaptive plasticity in the owl's auditory space map.视顶盖控制猫头鹰听觉空间图谱中视觉引导的适应性可塑性。
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3
Role of the superior colliculus in analyses of space: superficial and intermediate layer contributions to visual orienting, auditory orienting, and visuospatial discriminations during unilateral and bilateral deactivations.上丘在空间分析中的作用:单侧和双侧失活期间浅层和中间层对视觉定向、听觉定向和视觉空间辨别力的贡献。
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Sensory and multisensory responses in the newborn monkey superior colliculus.新生猴上丘的感觉和多感觉反应。
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Organization of the neurons of origin of the descending pathways from the ferret superior colliculus.雪貂上丘下行通路起源神经元的组织
Neurosci Res. 2001 Aug;40(4):301-13. doi: 10.1016/s0168-0102(01)00240-1.
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Topographical projection from the superior colliculus to the nucleus of the brachium of the inferior colliculus in the ferret: convergence of visual and auditory information.雪貂上丘到下丘臂核的拓扑投射:视觉与听觉信息的汇聚
Eur J Neurosci. 2000 Dec;12(12):4290-308.
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Contribution of superficial layer neurons to premotor bursts in the superior colliculus.表层神经元对上丘运动前爆发的贡献。
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Cross-correlated and oscillatory visual responses of superficial-layer and tecto-reticular neurones in cat superior colliculus.猫上丘浅层和顶盖-网状神经元的交叉相关和振荡视觉反应。
Exp Brain Res. 2000 Mar;131(1):44-56. doi: 10.1007/s002219900263.
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Conceptual issues related to the role of the superior colliculus in the control of gaze.与上丘在注视控制中的作用相关的概念性问题。
Curr Opin Neurobiol. 1999 Dec;9(6):698-707. doi: 10.1016/s0959-4388(99)00039-2.
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Sensory experience and the formation of a computational map of auditory space in the brain.感觉体验与大脑中听觉空间计算图谱的形成。
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上丘浅层与深层之间的功能连接:感觉运动整合的解剖学基础。

Functional connectivity between the superficial and deeper layers of the superior colliculus: an anatomical substrate for sensorimotor integration.

作者信息

Doubell Timothy P, Skaliora Irini, Baron Jérôme, King Andrew J

机构信息

University Laboratory of Physiology, University of Oxford, Oxford OX1 3PT, United Kingdom.

出版信息

J Neurosci. 2003 Jul 23;23(16):6596-607. doi: 10.1523/JNEUROSCI.23-16-06596.2003.

DOI:10.1523/JNEUROSCI.23-16-06596.2003
PMID:12878701
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6740636/
Abstract

The superior colliculus (SC) transforms both visual and nonvisual sensory signals into motor commands that control orienting behavior. Although the afferent and efferent connections of this midbrain nucleus have been well characterized, little is know about the intrinsic circuitry involved in sensorimotor integration. Transmission of visual signals from the superficial (sSC) to the deeper layers (dSC) of the SC has been implicated in both the triggering of orienting movements and the activity-dependent processes that align maps of different sensory modalities during development. However, evidence for the synaptic connectivity appropriate for these functions is lacking. In this study, we used a variety of anatomical and physiological methods to examine the functional organization of the sSC-dSC pathway in juvenile and adult ferrets. Axonal tracing in adult ferrets showed that, as in other species, sSC neurons project topographically to the dSC, providing a route for the transmission of visual signals to the multisensory output layers of the SC. We found that sSC axons terminate on dSC neurons that stain prominently for the NR1 subunit of the NMDA receptor, a subpopulation of which were identified as tectoreticulospinal projection neurons. We also show that the sSC-dSC pathway is topographically organized and mediated by monosynaptic excitatory synapses even before eye opening in young ferrets, suggesting that visual signals routed via the sSC may influence the activity of dSC neurons before the emergence of their multisensory response properties. These findings indicate that superficial- to deep-layer projections provide spatially ordered visual signals, both during development and into adulthood, directly to SC neurons that are involved in coordinating sensory inputs with motor outputs.

摘要

上丘(SC)将视觉和非视觉感觉信号转化为控制定向行为的运动指令。尽管这个中脑核团的传入和传出连接已得到充分表征,但对于参与感觉运动整合的内在神经回路却知之甚少。视觉信号从SC的浅层(sSC)传递到深层(dSC),这与定向运动的触发以及发育过程中使不同感觉模态图谱对齐的活动依赖性过程均有关联。然而,缺乏适合这些功能的突触连接的证据。在本研究中,我们使用了多种解剖学和生理学方法来研究幼年和成年雪貂中sSC-dSC通路的功能组织。成年雪貂的轴突追踪显示,与其他物种一样,sSC神经元以拓扑方式投射到dSC,为视觉信号传递到SC的多感觉输出层提供了一条途径。我们发现sSC轴突终止于对NMDA受体NR1亚基染色显著的dSC神经元,其中一部分被鉴定为顶盖网状脊髓投射神经元。我们还表明,sSC-dSC通路在幼年雪貂睁眼之前就以拓扑方式组织并由单突触兴奋性突触介导,这表明经由sSC传递的视觉信号可能在dSC神经元的多感觉反应特性出现之前就影响其活动。这些发现表明,从浅层到深层的投射在发育过程中和成年期都直接为参与协调感觉输入与运动输出的SC神经元提供空间有序的视觉信号。