Romero Daniel J, Kitner Blythe H, Wilson Matthew J, Smith Kaylee J
Northern Illinois University, DeKalb, IL.
Henry Ford Health System, Detroit, MI.
J Am Acad Audiol. 2019 May;30(5):357-362. doi: 10.3766/jaaa.17089. Epub 2019 Apr 26.
One stimulus parameter not well established with respect to the ocular vestibular evoked myogenic potential (oVEMP) is stimulus polarity. Many research studies traditionally record oVEMPs using alternating polarity primarily.
The purpose of this study was to evaluate the effects of stimulus polarity on the oVEMP response under three different conditions (condensation, rarefaction, and alternating) with updated but established recording procedures-the belly-tendon electrode montage.
oVEMPs were assessed with changes in stimulus polarity in the seated upright position.
Thirty otologically normal participants (60 ears) with no history of hearing or balance disorders and normal middle ear function.
Five hundred-hertz air-conducted tone bursts at 95-dB nHL were used to evoke the oVEMP response while recordings were made from the contralateral eye to acoustical stimulation using the belly-tendon electrode montage. Measurements were made using three polarities: alternating, condensation, and rarefaction. Natus Bio-logic AEP hardware and software was used for all data collection and analysis.
Condensation stimulus phase provided the largest response amplitude compared with alternating and/or rarefaction. Rarefaction provided the earliest latency among stimulus polarities.
Condensation is a more effective stimulus polarity regarding response amplitude when recording the oVEMP. This study further supports the use of the belly-tendon electrode montage for recording the oVEMP response.
关于眼前庭诱发肌源性电位(oVEMP),一个尚未完全明确的刺激参数是刺激极性。许多研究传统上主要使用交替极性记录oVEMP。
本研究的目的是使用更新但已确立的记录程序——腹-肌腱电极组合,评估刺激极性在三种不同条件(压缩、稀疏和交替)下对oVEMP反应的影响。
在坐位直立姿势下,评估刺激极性变化时的oVEMP。
30名听力和平衡功能无异常、中耳功能正常且无听力或平衡障碍病史的耳科正常参与者(60只耳)。
使用95 dB nHL的500赫兹气导短纯音诱发oVEMP反应,同时使用腹-肌腱电极组合从对侧眼记录对声刺激的反应。使用三种极性进行测量:交替、压缩和稀疏。所有数据收集和分析均使用Natus Bio-logic AEP硬件和软件。
与交替和/或稀疏相比,压缩刺激相位提供了最大的反应幅度。在刺激极性中,稀疏提供了最早的潜伏期。
记录oVEMP时,就反应幅度而言,压缩是一种更有效的刺激极性。本研究进一步支持使用腹-肌腱电极组合记录oVEMP反应。