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Implementation of a method to visualize noise-induced hearing loss in mass stranded cetaceans

机译:实现一种可视化大规模搁浅鲸类噪声引起的听力损失的方法

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摘要

Assessment of the impact of noise over-exposure in stranded cetaceans is challenging, as the lesions that lead to hearing loss occur at the cellular level and inner ear cells are very sensitive to autolysis. Distinguishing ante-mortem pathology from post-mortem change has been a major constraint in diagnosing potential impact. Here, we outline a methodology applicable to the detection of noise-induced hearing loss in stranded cetaceans. Inner ears from two mass strandings of long-finned pilot whales in Scotland were processed for scanning electron microscopy observation. In one case, a juvenile animal, whose ears were fixed within 4¿hours of death, revealed that many sensory cells at the apex of the cochlear spiral were missing. In this case, the absence of outer hair cells would be compatible with overexposure to underwater noise, affecting the region which transduces the lowest frequencies of the pilot whales hearing spectrum. Perfusion of cochlea with fixative greatly improved preservation and enabled diagnostic imaging of the organ of Corti, even 30¿hours after death. This finding supports adopting a routine protocol to detect the pathological legacy of noise overexposure in mass stranded cetaceans as a key to understanding the complex processes and implications that lie behind such stranding events.
机译:搁浅的鲸类中噪声过度暴露的影响的评估具有挑战性,因为导致听力损失的损伤发生在细胞水平,并且内耳细胞对自溶非常敏感。从验尸变化中区分出验尸病理一直是诊断潜在影响的主要限制因素。在这里,我们概述了适用于检测搁浅的鲸类中由噪声引起的听力损失的方法。对来自苏格兰长鳍鲸鱼的两条质量链的内耳进行了处理,以进行扫描电子显微镜观察。在一个案例中,一只幼小动物的耳朵在死亡后的4小时内被固定住,这表明在耳蜗螺旋的顶端缺少许多感觉细胞。在这种情况下,不存在外部毛细胞将与过度暴露于水下噪声相适应,从而影响该区域,该区域转导了鲸鱼听力频谱的最低频率。耳蜗与固定剂的灌注极大地改善了保存能力,即使在死后30小时也能对Corti器官进行诊断成像。该发现支持采用常规协议来检测大量滞留鲸类中噪声过度暴露的病理遗留,这是理解此类滞留事件背后复杂过程和影响的关键。

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