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Top-Down Control of Multimodal Sensitivity in the Barn Owl Optic Tectum

机译:自上而下控制谷仓猫头鹰光学杯中的多峰敏感性。

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摘要

We studied the effects of electrically microstimulating a gaze-control area in the owl's forebrain, the arcopallial gaze fields (AGFs), on the responsiveness of neurons in the optic tectum (OT) to visual and auditory stimuli. Microstimulation of the AGF enhanced the visual and auditory responsiveness and stimulus discriminability of OT neurons representing the same location in space as that represented at the microstimulation site in the AGF. At such OT sites, AGF microstimulation also sharpened auditory receptive fields and shifted them toward the location represented at the AGF stimulation site. At the same time, AGF microstimulation suppressed the responsiveness of OT neurons that represented visual or auditory stimuli at other locations in space. The top-down influences of this forebrain gaze-control area on sensory responsiveness in the owl OT are strikingly similar to the space-specific regulation of visual responsiveness in the monkey visual cortex produced by voluntary attention as well as by microstimulation of the frontal eye fields. This experimental approach provides a means for discovering mechanisms that underlie the top-down regulation of sensory responses.
机译:我们研究了电微刺激猫头鹰前脑中的注视控制区域,弓形注视场(AGFs)对视神经皮层(OT)中神经元对视觉和听觉刺激的响应的影响。 AGF的微刺激增强了OT神经元的视觉和听觉响应能力,并刺激了可分辨性,这些神经在空间中的位置与AGF的微刺激部位相同。在这样的OT部位,AGF微刺激还使听觉感受野变尖锐,并将它们移向AGF刺激部位所代表的位置。同时,AGF微刺激抑制了代表空间中其他位置的视觉或听觉刺激的OT神经元的反应能力。该前脑注视控制区对猫头鹰OT感觉响应的自上而下的影响与自发注意以及额叶眼场的微刺激所产生的猴子视觉皮层的视觉响应的空间特定调节极为相似。 。这种实验方法为发现自上而下调节感觉反应基础的机制提供了一种手段。

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