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首页> 外文期刊>BMC Veterinary Research >The acoustically evoked short latency negative response (ASNR) in a unilaterally deaf cat with histologically-confirmed cochleosaccular degeneration
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The acoustically evoked short latency negative response (ASNR) in a unilaterally deaf cat with histologically-confirmed cochleosaccular degeneration

机译:声学诱发的短期延迟负响应(ASNR)在单侧聋猫中,具有组织学诊断的耳蜗蓄胖性变性

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A negative potential is occasionally recorded in humans and animals with profound deafness during brainstem auditory evoked potential (BAER) tests if loud intensities are used. This acoustically evoked short latency negative response (ASNR) is hypothesized to be of saccular origin. The sensitivity to sound of vestibular end organs is also used to produce vestibular evoked myogenic potentials (VEMP), a test that evaluates vestibular function. The same saccular origin is accepted also for VEMP. A neutered male white domestic short hair cat presented with profound deafness and an ASNR in the left ear during BAER test performed when he was 8?months old. BAER tracings were substantially unchanged at the age of 12?years, immediately before euthanasia that was requested by the owner for the presence of an unrelated neoplastic disorder. The cat underwent a complete post-mortem necropsy including histopathology of the middle and inner ears. Histopathologic results confirmed the presence of a cochleosaccular degeneration of the left ear while the cochlea and sacculus of the right ear and the utriculus and semicircular canals of both ears were histologically normal. This case report describes the auditory and histopathologic findings of a cat that showed an ASNR during BAER test despite the presence of cochleosaccular deafness. These results confirm that a saccular origin for the ASNR in this case, and in general in cats and dogs with congenital deafness associated with white pigmentation, is improbable. The hypothesis that the sacculus is the vestibular end organ responsible for the generation of the ASNR and VEMP in humans comes mainly from animal studies. The findings in this report may change the clinical interpretation of the results of BAER and VEMP not only in companion animals, but in humans as well.
机译:如果使用响亮的强度,在脑干听觉诱发潜力(BAER)测试中,偶尔会在人类和动物中记录消极潜力。这种声学诱发的短延迟负响应(ASNR)被假设为囊状起源。对前庭末端器官的声音的敏感性也用于产生前庭诱发的肌原遗传潜力(VEMP),一种评估前庭功能的测试。对于VEMP,也接受了相同的椎弓根。一个绝育的男性白色的短发猫呈现出深刻的耳聋和左耳的Asnr在乳头试验期间,当他8个月龄时进行的轰炸机测试。在12岁的时候,轰炸机追踪在12年代,立即在安乐死之前被所有者要求不相关的肿瘤疾病的存在。猫经历了完整的尸体尸检,包括中耳和内耳的组织病理学。组织病理学结果证实存在左耳的耳蜗蓄冷变性,而右耳的耳蜗和幼耳和两颗耳朵的半圆公司和半圆形管状的组织学正常。此案例报告描述了猫的听觉和组织病理学发现,尽管存在科技疾病存在,但仍然存在于抗疱疹测试期间。这些结果证实,在这种情况下,ASNR的囊状起源,并且通常在与白色色素沉着相关的先天性耳聋的猫和狗中是不可能的。悲伤是负责生成ASNR和人类vemp的前庭终端器官的假设主要来自动物研究。本报告中的调查结果可能不仅在伴侣动物中改变了百雷和vemp的结果,而是在人类中也是如此。

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