首页> 美国卫生研究院文献>Journal of Neurophysiology >Sensory Processing: Direct intertectal inputs are an integral component of the bilateral sensorimotor circuit for behavior in Xenopus tadpoles
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Sensory Processing: Direct intertectal inputs are an integral component of the bilateral sensorimotor circuit for behavior in Xenopus tadpoles

机译:感官处理:直接的跨膜输入是非洲爪蟾behavior行为中双侧感觉运动回路的组成部分。

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摘要

The circuit controlling visually guided behavior in nonmammalian vertebrates, such as Xenopus tadpoles, includes retinal projections to the contralateral optic tectum, where visual information is processed, and tectal motor outputs projecting ipsilaterally to hindbrain and spinal cord. Tadpoles have an intertectal commissure whose function is unknown, but it might transfer information between the tectal lobes. Differences in visual experience between the two eyes have profound effects on the development and function of visual circuits in animals with binocular vision, but the effects on animals with fully crossed retinal projections are not clear. We tested the effect of monocular visual experience on the visuomotor circuit in Xenopus tadpoles. We show that cutting the intertectal commissure or providing visual experience to one eye (monocular visual experience) is sufficient to disrupt tectally mediated visual avoidance behavior. Monocular visual experience induces asymmetry in tectal circuit activity across the midline. Repeated exposure to monocular visual experience drives maturation of the stimulated retinotectal synapses, seen as increased AMPA-to-NMDA ratios, induces synaptic plasticity in intertectal synaptic connections, and induces bilaterally asymmetric changes in the tectal excitation-to-inhibition ratio (E/I). We show that unilateral expression of peptides that interfere with AMPA or GABAA receptor trafficking alters E/I in the transfected tectum and is sufficient to degrade visuomotor behavior. Our study demonstrates that monocular visual experience in animals with fully crossed visual systems produces asymmetric circuit function across the midline and degrades visuomotor behavior. The data further suggest that intertectal inputs are an integral component of a bilateral visuomotor circuit critical for behavior.>NEW & NOTEWORTHY The developing optic tectum of Xenopus tadpoles represents a unique circuit in which laterally positioned eyes provide sensory input to a circuit that is transiently monocular, but which will be binocular in the animal’s adulthood. We challenge the idea that the two lobes of tadpole optic tectum function independently by testing the requirement of interhemispheric communication and demonstrate that unbalanced sensory input can induce structural and functional plasticity in the tectum sufficient to disrupt function.
机译:控制非哺乳动物脊椎动物(如爪蟾t)中视觉引导行为的回路包括视网膜投影到对侧视神经皮层,在视神经皮层中处理视觉信息,以及总的眼球运动输出同侧投影到后脑和脊髓。 have有一个跨节连合,其功能未知,但它可能会在顶叶之间传递信息。两只眼睛之间的视觉体验差异对具有双眼视觉的动物的视觉回路的发育和功能具有深远的影响,但对具有完全交叉的视网膜投影的动物的影响尚不清楚。我们测试了单眼视觉体验对非洲爪蟾the视觉运动回路的影响。我们表明,切断椎间合缝或向一只眼睛提供视觉体验(单眼视觉体验)足以破坏直肠介导的视觉回避行为。单眼视觉体验会导致整个中线的顶盖回路活动不对称。反复暴露于单眼视觉体验会驱动受刺激的视网膜-顶突触成熟,这被认为是AMPA / NMDA比率增加,诱导了突触间突触连接中的突触可塑性,并引起了双侧不对称的顶盖兴奋-抑制比变化(E / I )。我们表明干扰AMPA或GABAA受体贩运的多肽的单方面表达改变E / I在转染的子宫内膜,足以降低视觉运动行为。我们的研究表明,具有完全交叉的视觉系统的动物的单眼视觉体验会在中线产生不对称的回路功能,并降低粘膜运动行为。数据进一步表明,柄间输入是对行为至关重要的双侧视觉运动回路的组成部分。> NEW&NOTEWORTHY 爪蟾t的发育中的光学远视层代表了一个独特的回路,其中侧向放置的眼睛可向这种电路是短暂的单眼的,但在成年动物中将是双眼的。我们通过测试半球间通信的需求,挑战了optic视神经皮层的两个瓣独立地起作用的想法,并证明了不平衡的感觉输入可以诱导足以破坏功能的皮层的结构和功能可塑性。

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