首页> 外文会议>Human Factors and Ergonomics Society Annual Meeting >AUDITORY WARNINGS INVOKING STARTLE RESPONSE CAUSE FASTER AND MORE INTENSE NECK MUSCLE CONTRACTIONS PRIOR TO HEAD IMPACTS
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AUDITORY WARNINGS INVOKING STARTLE RESPONSE CAUSE FASTER AND MORE INTENSE NECK MUSCLE CONTRACTIONS PRIOR TO HEAD IMPACTS

机译:调用惊吓反应的听觉警告导致头部冲击之前更快,更强烈的颈部肌肉收缩

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High-pressure level and sudden sound, especially during an elevated state of alertness can elicit a startle response. Startle response can induce sudden, intense muscle activations. Some studies have shown that increasing neck muscle activation during impact situations can reduce the risk of concussion and neck injury. This research aimed to study muscle coactivation patterns, contraction latency and the level of muscle activation in startle response compared to the voluntary response. To achieve this goal, a testbed capable of applying impacts to the head in four directions was created. Auditory (115 dB) startle stimulus was delivered and muscle activation measured using sEMG on neck muscles during startle and voluntary responses. We investigated a 1000 ms time period starting at the time that the sound is played to the time at impact. Results indicate that the first muscle activation in startle response is 2.1 times higher, 5.9 times faster and involved more muscles than in a voluntary response.
机译:高压水平和突然的声音,特别是在提升的警觉状态期间可以引起惊吓响应。惊吓反应可以诱导突然,强烈的肌肉激活。一些研究表明,影响颈部肌肉激活的影响可能会降低脑震荡和颈部损伤的风险。与自愿反应相比,该研究旨在研究肌肉共置模式,收缩潜伏期和惊吓反应中的肌肉激活水平。为了实现这一目标,创建了一个能够在四个方向上对头部施加影响的测试平台。在惊吓和自愿反应期间,在颈部肌肉上使用SEMG测量的肌肉激活递送和测量肌肉激活。我们调查了1000毫秒的时间段,即在撞击时发挥作用的时间。结果表明,惊吓反应中的第一肌肉激活比自愿反应更快,5.9倍,较快且涉及更多的肌肉。

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