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1)  Vetubular evoked myogenic potential
前庭诱发肌源电位
2)  Vestibular evoked myogenic potentials
前庭诱发肌源性电位
1.
Vestibular evoked myogenic potentials in vertigo patients;
前庭诱发肌源性电位对眩晕患者的诊断价值
2.
Vestibular evoked myogenic potentials in normal young people;
前庭诱发肌源性电位的正常人群观察
3)  Vestibular evoked myogenic potential
前庭诱发肌源性电位
1.
Vestibular evoked myogenic potential (VEMP) can be recorded from the bilateral contracting stemocleidomastoid (SCM) muscle by stimulation with loud sound.
前庭诱发肌源性电位(Vestibular evoked myogenic potential,VEMP)是指用高强度声刺激球囊在双侧颈部屈肌(胸锁乳突肌,SCM)记录到的肌源性动作电位。
4)  VEMP
前庭诱发的肌源性电位
1.
Methods Cases of MD in children seen at the Dizziness Center between January 2004 and July 2007 were reviewed for their clinical manifestations,electrocochleography(ECochG),vestibular evoked myogenic potential(VEMP),caloric test and pure tone audiometric results.
方法观察眩晕诊疗中心2004年1月至2007年7月,共计586例梅尼埃病患者中儿童(≤15岁)梅尼埃病的发病情况,对这些患者进行纯音测听、耳蜗电图、冷热试验及前庭诱发的肌源性电位检查。
2.
Method:To observe the elderly with Meniere s disease from 2004-01~2007-7 and to investigate its clinical manifestation,electrocochleography(ECoG),vestibular evoked myogrnic potential(VEMP),caloric test and pure tone audiogram.
分析患者的纯音听力、耳蜗电图、前庭双温试验及前庭诱发的肌源性电位检查结果。
5)  vestibular evoked potentials
前庭诱发电位
1.
Objective To assess ototoxicity of gentamicin by the vestibular evoked potentials (VsEPs) and auditory brainstem response (ABR).
目的 利用听觉脑干诱发电位( ABR)和前庭诱发电位( VsEPs)监测庆大霉素耳毒性。
6)  muscle evoked potential
肌诱发电位
1.
Results: The results showed that the rates of recovery of the gastrocnemius muscle evoked potential and the single twitch, complete tetanus in the treated groups were significantly increased compared with that of the control groups.
术后2 、3 、4 周分别对治疗组和对照组损伤侧及健侧腓肠肌进行肌诱发电位及肌收缩力检测,以健侧为100 % ,求出损伤侧各指标的恢复率。
补充资料:脑干听觉诱发电位


脑干听觉诱发电位
brain stem auditory evoked potentials,BAEP

  检查听神经及脑干情况。正常情况下,当有声音刺激时,脑干的神经细胞产生一定的电位变化,利用计算机技术,通过头皮电极记录下来。检查不受年龄限制,不需小儿配合,无损伤,可在睡眠中进行,适应于包括新生儿在内的各年龄小儿。脑干听觉诱发电位在小儿神经系统疾病中主要应用于:①早期诊断新生儿、婴幼儿听力障碍;②了解听路损害的部位为周围性(听神经或耳蜗神经核)损害或中枢性(脑干)损害。可辅助诊断神经系统器质性疾病。若病变集中于大脑半球,未波及脑干时,则脑干听觉诱发电位无变化;③通过连续监测,了解脑内病理过程的发展与转归。
  
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