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Object-Oriented Echo Perception and Cortical Representation in Echolocating Bats

机译:回声蝙蝠中的面向对象回声感知和皮质表示

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摘要

Echolocating bats can identify three-dimensional objects exclusively through the analysis of acoustic echoes of their ultrasonic emissions. However, objects of the same structure can differ in size, and the auditory system must achieve a size-invariant, normalized object representation for reliable object recognition. This study describes both the behavioral classification and the cortical neural representation of echoes of complex virtual objects that vary in object size. In a phantom-target playback experiment, it is shown that the bat Phyllostomus discolor spontaneously classifies most scaled versions of objects according to trained standards. This psychophysical performance is reflected in the electrophysiological responses of a population of cortical units that showed an object-size invariant response (14/109 units, 13%). These units respond preferentially to echoes from objects in which echo duration (encoding object depth) and echo amplitude (encoding object surface area) co-varies in a meaningful manner. These results indicate that at the level of the bat's auditory cortex, an object-oriented rather than a stimulus-parameter–oriented representation of echoes is achieved.
机译:定位蝙蝠可以通过分析超声波发射的回声来专门识别三维物体。但是,具有相同结构的对象的大小可能不同,并且听觉系统必须实现大小不变的标准化对象表示,才能实现可靠的对象识别。这项研究描述了行为分类和复杂虚拟对象回声的皮层神经表示,这些对象在对象大小上有所不同。在幻影目标回放实验中,表明蝙蝠毛竹自发变色是根据训练有素的标准对大多数缩放版本的对象自发分类的。这种心理生理表现反映在一群皮质单位的电生理反应中,这些反应显示出物体大小的不变反应(14/109单位,13%)。这些单元优先响应来自对象的回声,其中回声持续时间(编码对象深度)和回声幅度(编码对象表面积)以有意义的方式发生变化。这些结果表明,在蝙蝠的听觉皮层水平上,可以实现面向对象而不是基于刺激参数的回声表示。

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