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Hair cell counts in a rat model of sound damage: Effects of tissue preparation & identification of regions of hair cell loss

机译:大鼠声音损伤模型中的毛细胞计数:组织准备的作用和识别毛细胞丢失的区域

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Exposure to intense sound can damage or kill cochlear hair cells (HC). This loss of input typically manifests as noise induced hearing loss, but it can also be involved in the initiation of other auditory disorders such as tinnitus or hyperacusis. In this study we quantify changes in HC number following exposure to one of four sound damage paradigms. We exposed adult, anesthetized Long-Evans rats to a unilateral 16 kHz pure tone that varied in intensity (114 dB or 118 dB) and duration (1, 2, or 4 h) and sacrificed animals 2-4 weeks later. We compared two different methods of tissue preparation, plastic embedding/sectioning and whole mount dissection, for quantifying hair cell loss as a function of frequency. We found that the two methods of tissue preparation produced largely comparable cochleograms, with whole mount dissections allowing a more rapid evaluation of hair cell number. Both inner and outer hair cell loss was observed throughout the length of the cochlea irrespective of sound damage paradigm. Inner HC loss was either equal to or greater than outer HC loss. Increasing the duration of sound exposures resulted in more severe HC loss, which included all HC lesions observed in an analogous shorter duration exposure. (C) 2015 Elsevier B.V. All rights reserved.
机译:暴露在强烈的声音下可能会损坏或杀死耳蜗毛细胞(HC)。输入的这种损失通常表现为噪声引起的听力损失,但也可能与其他听觉障碍(例如耳鸣或听觉亢进)的发作有关。在这项研究中,我们量化了暴露于四种声音损伤范例之一后的HC数量变化。我们将成年麻醉的Long-Evans大鼠暴露于强度(114 dB或118 dB)和持续时间(1、2或4 h)变化的单边16 kHz纯音中,并在2-4周后处死动物。我们比较了两种不同的组织制备方法,即塑料包埋/切片法和整装解剖法,用于量化随频率变化的毛细胞损失。我们发现,两种组织准备方法产生的可耳蜗图大致相当,整个解剖过程可以更快地评估毛细胞数。在整个耳蜗的整个长度内都观察到内部和外部毛细胞的损失,而与声音损伤的模式无关。内部HC损失等于或大于外部HC损失。延长声音暴露的持续时间会导致更严重的HC损失,其中包括以类似的较短持续时间暴露所观察到的所有HC病变。 (C)2015 Elsevier B.V.保留所有权利。

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