首页> 外文期刊>The Journal of Experimental Biology >Hearing asymmetry and auditory acuity in the Australian bushcricket Requena verticalis (Listroscelidinae; Tettigoniidae; Orthoptera)
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Hearing asymmetry and auditory acuity in the Australian bushcricket Requena verticalis (Listroscelidinae; Tettigoniidae; Orthoptera)

机译:澳大利亚丛林cri Requena Verticalis(Listroscelidinae; Tettigoniidae; Orthoptera)的听力不对称和听觉敏锐度

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dFluctuating asymmetry in bilaterally placed sensory structures of insects may be considered maladaptive; natural selection should favour a symmetrical system. Among bushcrickets or katydids, threshold hearing sensitivity is, in part, dependent on the size of the auditory spiracle in the prothorax. We tested the degree of natural asymmetry in the hearing system of the ensiferan orthopteran Requena verticalis by measuring the size of the auditory spiracle of females. Naturally occurring asymmetry approached 8%, which translates to a hearing bias at a threshold of only 0.8 dB. Auditory asymmetry of females was experimentally exaggerated by packing cotton wool into either the right or left auditory spiracle. We made neurophysiological recordings from the ascending auditory T-fibre in the neck connective and found that the left-right bias created by this operation approximated 5dB; this is greater than that found in nature. For these experiments, sound was delivered to the operated side of the insect from a speaker placed at either 90degrees or 30degrees to the long-body axis. To test the influence of this induced auditory bias, free-moving females were allowed to orient towards a speaker emitting male calls at near-natural call intensities of 51 and 82dB (SPL), 80cm from the speaker on a flat arena. There was no variation in angle or vector between experimental and control insects, and there was no difference in acuity between intensity. We discuss the relevance of threshold measurements of bushcricket hearing systems in regard to sound localisation and, from these experiments question any role of asymmetry. [References: 56]
机译:d在昆虫的双侧感觉结构中表现出不对称可能被认为是适应不良的;自然选择应该有利于对称系统。在丛林cri或ka类动物中,阈值听觉敏感性部分取决于前胸中听道的大小。我们通过测量雌性听觉螺孔的大小,测试了直翅类直翅目Requena Verticalis听力系统的自然不对称程度。自然发生的不对称接近8%,这转化为仅0.8 dB的阈值的听力偏差。通过将棉绒填充到左右耳道中,实验上夸大了女性的听觉不对称。我们从结缔组织中上升的听觉T纤维进行了神经生理学记录,发现此操作产生的左右偏斜大约为5dB。这比自然界中发现的更大。对于这些实验,声音是通过与长体轴成90度或30度放置的扬声器传递到昆虫的操作侧的。为了测试这种诱发的听觉偏见的影响,让自由移动的女性朝向说话者发出声音,以男性和男性的声音以接近自然的通话强度51和82dB(SPL),在平坦的舞台上离扬声器80厘米。实验昆虫和对照昆虫之间的角度或矢量没有变化,强度之间的敏锐度也没有差异。我们讨论了关于声音定位的丛林bush听力系统阈值测量的相关性,并且从这些实验中质疑了不对称的任何作用。 [参考:56]

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