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A precedence effect resolves phantom sound source illusions in the parasitoid fly Ormia ochracea

机译:优先效果可解决寄生类蝇Ormia ochracea中的幻象声源幻觉

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摘要

Localizing individual sound sources under reverberant environmental conditions can be a challenge when the original source and its acoustic reflections arrive at the ears simultaneously from different paths that convey ambiguous directional information. The acoustic parasitoid fly Ormia ochracea (Diptera: Tachinidae) relies on a pair of ears exquisitely sensitive to sound direction to localize the 5-kHz tone pulsatile calling song of their host crickets. In nature, flies are expected to encounter a complex sound field with multiple sources and their reflections from acoustic clutter potentially masking temporal information relevant to source recognition and localization. In field experiments, O. ochracea were lured onto a test arena and subjected to small random acoustic asymmetries between 2 simultaneous sources. Most flies successfully localize a single source but some localize a ‘phantom’ source that is a summed effect of both source locations. Such misdirected phonotaxis can be elicited reliably in laboratory experiments that present symmetric acoustic stimulation. By varying onset delay between 2 sources, we test whether hyperacute directional hearing in O. ochracea can function to exploit small time differences to determine source location. Selective localization depends on both the relative timing and location of competing sources. Flies preferred phonotaxis to a forward source. With small onset disparities within a 10-ms temporal window of attention, flies selectively localize the leading source while the lagging source has minimal influence on orientation. These results demonstrate the precedence effect as a mechanism to overcome phantom source illusions that arise from acoustic reflections or competing sources.
机译:当原始声源及其声反射从传达模糊方向信息的不同路径同时到达耳朵时,如何在混响环境条件下定位单个声源可能是一个挑战。寄生寄生的苍蝇Ormia ochracea(Diptera:Tachinidae)依靠一对对声音方向极为敏感的耳朵来定位其宿主cket的5 kHz音调搏动的鸣叫声。在自然界中,苍蝇有望遇到具有多个声源的复杂声场,它们从声波杂波中的反射可能会掩盖与声源识别和定位有关的时间信息。在野外实验中,将鱼O. ochracea引诱到测试场所,并使其在两个同时出现的声源之间出现小的随机声不对称。多数苍蝇成功地将单个源本地化,但有些将“幻像”源本地化,这是两个源位置的总和。可以在呈现对称声刺激的实验室实验中可靠地引起这种错误定向的视错觉。通过改变2个来源之间的发作延迟,我们测试O. ochracea中的超急性定向听力是否可以发挥作用,以利用较小的时间差来确定来源位置。选择性定位取决于竞争源的相对时间和位置。使首选视错觉偏向正向源。由于在10毫秒的时间关注窗口内出现小的视差,苍蝇选择性地定位了前导源,而滞后源对方向的影响则最小。这些结果证明了优先作用是一种克服由声反射或竞争性源引起的幻象源幻觉的机制。

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