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Spatial stimulus-response (S-R) compatibility for foot controls with visual displays

机译:具有视觉显示的脚控制的空间刺激响应(S-R)兼容性

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摘要

This experiment examined the performance of 32 Chinese right-handed/right-footed participants for four spatial stimulus-response (S-R) mapping conditions with visual signals and foot controls in transverse and longitudinal orientations. The results showed that reaction times for the four S-R mappings were significantly different from each other. There was a significant interaction of visual signal position and response pedal key position which demonstrated the existence of a spatial S-R compatibility effect for this task. Compared to other non-correspondent S-R mappings, an improvement of 135 ms in reaction time was obtained with the correspondence of the stimulus and response key in both the transverse and longitudinal orientations. The findings suggested that the relative positions of visual signals and foot pedal response keys should be spatially compatible for the best human machine system performance. There was also evidence that spatial compatibility for the right-left dimension was stronger than for the front/rear dimension, and that responses with the right foot were faster than with left foot for the right-footed subjects used here. Relevance to industry: Most of the previous studies on spatial S-R compatibility have been limited to the use of hand controls. The results of this study provide useful ergonomics guidelines for designing foot controls and visual displays, and this will be valuable for improving efficiency and performance in human-machine systems.
机译:该实验检查了32位中国右撇子/右脚参与者在四个空间刺激响应(S-R)映射条件下的性能,这些条件是视觉信号和横向和纵向方向的脚控制。结果显示,四个S-R映射的反应时间彼此显着不同。视觉信号位置和响应踏板按键位置之间存在显着的相互作用,这表明该任务存在空间S-R兼容效果。与其他非对应S-R映射相比,在横向和纵向方向上都具有刺激和响​​应键的对应关系,反应时间缩短了135 ms。研究结果表明,视觉信号和脚踏板响应键的相对位置应在空间上兼容,以获得最佳的人机系统性能。也有证据表明,此处使用的右脚受试者的左右维度空间兼容性强于前/后维度,并且右脚的响应快于左脚。与行业的相关性:以前有关空间S-R兼容性的大多数研究都限于使用手控装置。这项研究的结果为设计脚踏控制和视觉显示提供了有用的人体工程学指导方针,这对于提高人机系统的效率和性能将是有价值的。

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