...
【24h】

Vestibular evoked myogenic potentials in normal mice and Phex mice with spontaneous endolymphatic hydrops.

机译:在正常小鼠和自发性内淋巴积水的Phex小鼠中,前庭诱发肌原性电位。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

OBJECTIVE AND BACKGROUND: Vestibular evoked myogenic potentials (VEMPs) have been recorded from the neck musculature and the cervical spinal cord in humans and a limited number of laboratory animals in response to loud sound. However, the mouse VEMP has yet to be described. Evaluation of the sacculocollic pathway via VEMPs in mice can set the stage for future evaluations of mutant mice that now play an important role in research regarding human auditory and vestibular dysfunction. MATERIALS AND METHODS: Sound-evoked potentials were recorded from the neck extensor muscles and the cervical spinal cord in normal adult mice and in circling Phex(Hyp-Duk/y) mice with known vestibular abnormalities, including endolymphatic hydrops (ELH). RESULTS: Biphasic potentials were recorded from all normal animals. The mean threshold of the VEMP response in normal adult mice was 60 dB normal hearing level with a mean peak latency of 6.25 +/- 0.46 and 7.95 +/- 0.42 milliseconds for p1 and n1 peaks, respectively. At the maximum sound intensity used (100 dB normal hearing level), 4 of 5 Phex mice did not exhibit VEMP responses, and 1 showed an elevated threshold, but normal response, with regard to peak latency and amplitude. The histologic findings in all of these Phex mice were consistent with distended membranous labyrinth, displaced Reissner membrane, ganglion cell loss, and ELH. CONCLUSION: This is the first report of VEMP recordings in mice and the first report of abnormal VEMPs in a mouse model with ELH. The characteristics of these potentials such as higher response threshold in comparison to auditory brainstem response, myogenic nature of the response, and latency correlation with the cervical recording (accessory nerve nucleus) were similar to those of VEMPs in humans, guinea pigs, cats, and rats, suggesting that the mouse may be used as an animal model in the study of VEMPs. The simplicity and reliability of these recordings make the VEMP a uniquely informative test for assessing vestibular function, and these results suggest that they may be informative in mice with various mutations. However, further investigation is necessary.
机译:目的和背景:人类和少数实验动物对响亮的声音作出反应,从颈部肌肉组织和颈脊髓中记录到前庭诱发的肌原性电位(VEMP)。但是,鼠标VEMP尚未被描述。在小鼠中通过VEMPs评估acc突结肠途径可以为将来评估突变小鼠奠定基础,而突变小鼠现在在有关人类听觉和前庭功能障碍的研究中起着重要作用。材料与方法:在正常成年小鼠和盘旋的已知前庭异常,包括内淋巴积水(ELH)的Phex(Hyp-Duk / y)小鼠中,从颈部伸肌和颈脊髓记录声诱发电位。结果:记录了所有正常动物的双相电位。正常成年小鼠中VEMP响应的平均阈值为60 dB正常听力水平,p1和n1峰的平均峰值潜伏期分别为6.25 +/- 0.46和7.95 +/- 0.42毫秒。在使用的最大声音强度(正常听觉水平为100 dB)下,五只Phex小鼠中有四只没有表现出VEMP响应,并且在峰值潜伏期和振幅方面,一只表现出了较高的阈值,但表现出正常的响应。在所有这些Phex小鼠中的组织学发现均与扩张的膜迷路,移位的Reissner膜,神经节细胞丢失和ELH一致。结论:这是小鼠中VEMP记录的首次报道,并且是ELH小鼠模型中VEMP异常的首次报道。这些电位的特征,例如比听觉脑干反应更高的反应阈值,反应的肌源性以及与子宫颈录音(辅助神经核)的潜伏期相关性,与人类,豚鼠,猫和老鼠的VEMP相似。提示老鼠可以用作VEMPs研究的动物模型。这些记录的简单性和可靠性使VEMP成为评估前庭功能的独特信息测试,这些结果表明,它们在具有各种突变的小鼠中可能是信息丰富的。但是,有必要进一步调查。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号