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Resistance of Gerbil Auditory Function to Reversible Decrease in Cochlear Blood Flow

机译:耳蜗血流可逆减少的红土听觉功能的抵抗力

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The objective was to design in gerbils a model of reversible decrease in cochlear blood flow (CBF) and analyze its influence on cochlear function. In Mongolian gerbils injected with ferromagnetic microbeads, a magnet placed near the porus acusticus allowed CBF to be manipulated. The cochlear microphonic potential (CM) from the basal cochlea was monitored by a round-window electrode. In 13 of the 20 successfully injected gerbils, stable CBF reduction was obtained for 11.5 min on average. The CM was affected only when CBF fell to less than 60% of its baseline, yet remained > 40% of its initial level in about 2/3 of such cases. After CBF restoration, CM recovery was fast and usually complete. Reduced CM came with a 35- to 45-dB threshold elevation of neural responses determined by compound action potentials. This method allowing reversible changes of CBF confirms the robustness of cochlear function to decreased CBF. It can be used to study whether a hypovascularized cochlea is abnormally sensitive to stress. (C) 2017 S. Karger AG, Basel
机译:目的是在Gerbils中设计一种耳蜗血流(CBF)可逆减少的模型,并分析其对耳蜗功能的影响。在蒙古草原中注入铁磁微珠,磁铁靠近Porus Acusticus允许被操纵CBF。通过圆形窗电极监测来自基底耳蜗的耳蜗麦克力电位(cm)。在20个成功注射的Gerbils中,平均获得11.5分钟的稳定CBF还原。只有当CBF跌至低于其基线的少于60%时,厘米受到影响,仍然占其初始水平的40%,在此类案件的约2/3中。 CBF恢复后,CM恢复快速,通常完成。减少CM具有35至45dB的阈值升高,通过化合物作用电位确定神经响应。该方法允许CBF的可逆变化证实了耳蜗功能对CBF减少的鲁棒性。它可用于研究低血管化的耳蜗是否对应力异常敏感。 (c)2017年S. Karger AG,巴塞尔

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