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首页> 外文期刊>Fire Safety Journal >Fire exit signs: The use of neurological activity analysis for quantitative evaluations on their perceptiveness in a virtual environment
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Fire exit signs: The use of neurological activity analysis for quantitative evaluations on their perceptiveness in a virtual environment

机译:消防通道标志:使用神经活动分析对虚拟环境中的感知力进行定量评估

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Emergency signs represent the easiest way to assist a person during an emergency building evacuation, such as in a fire. However, previous studies show that signs can also not be correctly perceived (because of: smoke/lighting conditions, sign positions in relation to individual's position, pictograms dimensions), consequently becoming useless. This study focuses on the effectiveness of exit signs, in terms of type and position. The related numerical quantification is founded on an objective experimental neurological method. A neurological stimulus (P300) is generated when the individual understands the meaning of the sign. It is so possible to objectively evaluate by using a neuro-headset the performance of each subject in terms of perceptual attention. The use of similar direct data overlooks errors connected to conscious or unconscious individual mediation in answers. Evacuation motion simulations are performed using a virtual reality environment because of limits in the neuro-headset use when walking. Two types of exit signs (reflective and photoluminescent) are tested considering different positions and environmental conditions (illuminated and not). The sign identification distance is retrieved and compared to results of real-world experiments. Finally, the sign effectiveness is also inquired in terms of statistical P300 presence on the analysed sample. (C) 2016 Elsevier Ltd. All rights reserved.
机译:紧急标志是在紧急建筑疏散过程中(例如在火灾中)协助人员的最简单方法。但是,先前的研究表明,信号也无法正确感知(由于:烟雾/照明条件,与个人位置有关的信号位置,象形图尺寸),因此变得无用。这项研究集中在出口标志的类型和位置方面。相关的数值量化基于客观的实验神经学方法。当个人了解体征的含义时,就会产生神经刺激(P300)。因此,可以通过使用神经耳机客观地评估每个对象在感知注意力方面的表现。使用相似的直接数据会忽略与答案中有意识或无意识个体调解有关的错误。由于行走时神经耳机的使用受到限制,因此使用虚拟现实环境执行疏散运动模拟。考虑到不同的位置和环境条件(有照明和无照明),对两种类型的出口标志(反射和光致发光)进行了测试。检索标识识别距离并将其与实际实验的结果进行比较。最后,还根据被分析样品上的统计P300的存在来查询符号有效性。 (C)2016 Elsevier Ltd.保留所有权利。

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