首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >A competition-based mechanism mediates developmental refinement of tectal neuron receptive fields
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A competition-based mechanism mediates developmental refinement of tectal neuron receptive fields

机译:基于竞争的机制介导了顶盖神经元感受野的发展完善。

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Neural activity plays an important role in development and maturation of visual circuits in the brain. Activity can be instructive in refining visual projections by directly mediating formation and elimination of specific synaptic contacts through competition-based mechanisms. Alternatively, activity could be permissive-regulating production of factors that create a favorable environment for circuit refinement. Here we used the Xenopus laevis tadpole visual system to test whether activity is instructive or permissive for shaping development of the retinotectal circuit. In vivo spike output was dampened in a small subgroup of tectal neurons, starting from developmental stages 44 - 46, by overexpressing Shaker-like Xenopus Kv1.1 potassium channels using electroporation. Tadpoles were then reared until stage 49, a time period when significant refinement of the retinotectal map occurs. Kv1.1-expressing neurons had significantly decreased spike output in response to both current injection and visual stimuli compared to untransfected controls, with spiking occurring during a more limited time interval. We found that Kv1.1-expressing neurons had larger visual receptive fields, decreased receptive field sharpness, and more persistent recurrent excitation than control neurons, all of which are characteristics of immature neurons. Transfected cells, however, had normal spontaneous excitatory synaptic currents and dendritic arbors. These results suggest that spike output of a tectal neuron plays an important instructive role in development of its receptive field properties and refinement of local circuits. However, other activity-dependent processes, such as synaptogenesis and dendritic growth, remain unaffected due to the permissive environment created by otherwise normal network activity.
机译:神经活动在大脑视觉回路的发育和成熟中起着重要作用。通过直接基于竞争的机制直接介导特定突触接触的形成和消除,活动对于细化视觉投射具有指导意义。或者,活动可以是允许调节的因素的产生,这些因素会为电路优化创造有利的环境。在这里,我们使用非洲爪蟾(Xenopus laevis)visual视觉系统来测试活动对形成视网膜-视网膜回路的发育是指导性的还是允许的。通过使用电穿孔过表达Shaker状非洲爪蟾Kv1.1钾通道,从发育阶段44-46开始,抑制了小部分的顶盖神经元的体内峰值输出。然后将饲养到第49阶段,这是发生视网膜-视网膜图显着细化的时间段。与未转染的对照组相比,表达Kv1.1的神经元响应当前的注射和视觉刺激均显着降低了刺突输出,在更有限的时间间隔内出现了尖峰。我们发现,表达Kv1.1的神经元比对照神经元具有更大的视觉感受野,降低的感受野锐度和更持久的反复兴奋,所有这些都是未成熟神经元的特征。但是,转染的细胞具有正常的自发兴奋性突触电流和树突状乔木。这些结果表明,顶盖神经元的尖峰输出在其感受野特性的发展和局部回路的细化中起着重要的指导作用。但是,其他活动依赖的过程,如突触形成和树突状生长,由于正常网络活动所创建的宽松环境而不会受到影响。

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