Thompson Andrew D, Chen Chinfei
Department of Neurology, F.M. Kirby Neurobiology Center, Children's Hospital Boston , Boston, MA, USA.
Department of Neurology, F.M. Kirby Neurobiology Center, Children's Hospital Boston, Boston, MA, USA; Program in Neuroscience, Harvard Medical School, Boston, MA, USA.
Neurogenesis (Austin). 2017 Mar 3;4(1):e1287553. doi: 10.1080/23262133.2017.1287553. eCollection 2017.
Neural circuits in sensory pathways develop through a general strategy of overproduction of synapses followed by activity-driven pruning to fine-tune connectivity for optimal function. The early visual pathway, consisting of the retina → visual thalamus → primary visual cortex, has served for decades as a powerful model system for probing the mechanisms and logic of this process. In addition to these feedforward projections, the early visual pathway also includes a substantial feedback component in the form of corticothalamic projections from the deepest layer of primary visual cortex. The role of this feedback in visual processing has been studied extensively in mature animals, yet historically, its role in development has received comparatively little attention. Recent technological advances allowing for selective manipulation of neural activity in development led to the uncovering of a role for feedback in guiding the refinement of the forward projection from retina to visual thalamus. Here we discuss the implications of feedback exerting influence on the development of sensory pathways. We propose several possible advantages to constructing neural circuits with top-down regulation, and discuss the potential significance of this finding for certain neurologic disorders.
感觉通路中的神经回路通过一种普遍策略发育,即突触过度产生,随后通过活动驱动的修剪来微调连接性以实现最佳功能。早期视觉通路由视网膜→视觉丘脑→初级视觉皮层组成,几十年来一直是探究这一过程机制和逻辑的强大模型系统。除了这些前馈投射外,早期视觉通路还包括一个重要的反馈成分,即来自初级视觉皮层最深层的皮质丘脑投射。这种反馈在视觉处理中的作用在成熟动物中已得到广泛研究,但从历史上看,其在发育中的作用受到的关注相对较少。最近在发育过程中允许选择性操纵神经活动的技术进步,揭示了反馈在引导从视网膜到视觉丘脑的前向投射精细化中的作用。在这里,我们讨论反馈对感觉通路发育产生影响的意义。我们提出了自上而下调节构建神经回路的几个可能优势,并讨论了这一发现对某些神经系统疾病的潜在意义。