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Cortical neurons of bats respond best to echoes from nearest targets when listening to natural biosonar multi-echo streams

机译:蝙蝠的皮质神经元在聆听自然生物声波多回波流时对最近目标的回波反应最佳

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摘要

Bats orientate in darkness by listening to echoes from their biosonar calls, a behaviour known as echolocation. Recent studies showed that cortical neurons respond in a highly selective manner when stimulated with natural echolocation sequences that contain echoes from single targets. However, it remains unknown how cortical neurons process echolocation sequences containing echo information from multiple objects. In the present study, we used echolocation sequences containing echoes from three, two or one object separated in the space depth as stimuli to study neuronal activity in the bat auditory cortex. Neuronal activity was recorded with multi-electrode arrays placed in the dorsal auditory cortex, where neurons tuned to target-distance are found. Our results show that target-distance encoding neurons are mostly selective to echoes coming from the closest object, and that the representation of echo information from distant objects is selectively suppressed. This suppression extends over a large part of the dorsal auditory cortex and may override possible parallel processing of multiple objects. The presented data suggest that global cortical suppression might establish a cortical “default mode” that allows selectively focusing on close obstacle even without active attention from the animals.
机译:蝙蝠通过聆听生物声纳发出的回声来在黑暗中定向,这种行为被称为回声定位。最近的研究表明,当皮层神经元受到包含单个靶标回声的自然回声定位序列的刺激时,它们会以高度选择性的方式做出反应。然而,仍然未知皮质神经元如何处理包含来自多个物体的回声信息的回声定位序列。在本研究中,我们使用包含来自三个,两个或一个在空间深度上分离的物体的回声的回声定位序列作为刺激来研究蝙蝠听觉皮层的神经元活动。用放置在背听皮层中的多电极阵列记录神经元活动,在该处发现了调节至目标距离的神经元。我们的结果表明,目标距离编码神经元对来自最近物体的回波大多数具有选择性,并且来自远处物体的回声信息的表示被选择性地抑制。这种抑制作用延伸到背侧听觉皮层的很大一部分,并且可能会覆盖多个对象的可能并行处理。所提供的数据表明,整体皮层抑制可能建立皮层“默认模式”,即使没有动物的积极注意,该模式也可以选择性地聚焦在近距离障碍物上。

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