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前庭诱发肌源性电位与晕船的适应。

Vestibular evoked myogenic potentials and habituation to seasickness.

机构信息

Motion Sickness and Human Performance Laboratory, Israel Naval Medical Institute, IDF Medical Corps, Haifa, Israel.

出版信息

Clin Neurophysiol. 2013 Dec;124(12):2445-9. doi: 10.1016/j.clinph.2013.05.016. Epub 2013 Jun 22.

Abstract

OBJECTIVE

Seasickness may impose severe limitations on the performance of ships' crew. Cervical vestibular evoked myogenic potentials (cVEMP) assess the function of the saccule, the organ responsible for monitoring vertical linear acceleration, which has been found to be the most provocative motion stimulus in the evolution of motion sickness. We used the cVEMP test in a prospective evaluation of susceptibility and habituation to seasickness.

METHODS

Forty-six naval recruits underwent the cVEMP test before exposure to sea conditions. After 6 months' sailing experience, participants completed a questionnaire evaluating their initial and current seasickness severity. Based on their most recent experience, subjects were divided into three groups: non-vomiting non-habituating (NV-NH), vomiting (V), and non-vomiting habituating (NV-H).

RESULTS

Statistically significant lower thresholds for cVEMP were found in subjects who habituated to sea conditions (NV-H), compared with those remaining severely susceptible (V) (77.0 dB HL vs. 84.9 dB HL; p<0.01).

CONCLUSIONS

The ability to produce the cVEMP at lower thresholds represents a broader dynamic range, in which the reflex can respond to a wider array of stimuli amplitudes.

SIGNIFICANCE

The present study demonstrates the potential of the cVEMP test for predicting future habituation to seasickness.

摘要

目的

晕船可能会对船员的工作表现造成严重限制。颈源性前庭诱发肌源性电位(cVEMP)可评估球囊的功能,球囊负责监测垂直线性加速度,而垂直线性加速度已被发现是晕动病发展过程中最具刺激性的运动刺激。我们使用 cVEMP 测试对晕船易感性和适应能力进行了前瞻性评估。

方法

46 名海军新兵在暴露于海上环境之前接受了 cVEMP 测试。经过 6 个月的航海经验后,参与者完成了一份问卷,评估他们最初和当前晕船的严重程度。根据他们最近的经历,将受试者分为三组:不呕吐不适应(NV-NH)、呕吐(V)和不呕吐适应(NV-H)。

结果

与仍严重易感的(V)组相比,适应海上环境的(NV-H)组的 cVEMP 阈值显著降低(77.0dBHL 与 84.9dBHL;p<0.01)。

结论

能够以较低的阈值产生 cVEMP 代表了更广泛的动态范围,在该范围内,反射可以对更广泛的刺激幅度做出反应。

意义

本研究表明,cVEMP 测试具有预测未来晕船适应能力的潜力。

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