期刊文献+

以儿童为用户的儿童医院多维就医导向信息设计研究

Design and Search of the Multidimensional Medical Guidance Information of Children`s Hospital for Children
原文传递
导出
摘要 在我国的导向系统设计中,大多在平面且单一感官层面应用,通过多维感官整合设计来扩大感官刺激的实例不多,未能充分挖掘其潜力。文章剖析当前单一感官缺陷,分析多感官整合设计中感官通道的关联性及补偿关系,并结合儿童就医心理行为特征和自身天性,从功能、服务、情感三个需求目标出发,利用多维立体感官进行合理整合,进而实现多维度、多层次细腻的感官刺激,来弥补单一功能的缺陷,注重人文关怀,为导向指出新的设计方向。 In the design of guiding system in our country,most of them are applied in plan and single sensory level,and there are few example of expanding sensory stimulation through multidimensional sensory integration design,and their potentia value can not be fully exploited.Analysis of the defect of the current single sense,analysis relationship of relevance and compensation of multidimensional sensory integration through sensory channel,combined with the psychologica characteristics of childrens medical treatment and their nature,from the function,service,emotional three needs goals,using multidimensional sensory integration reasonably,so as to realize the multi-dimensional,multi-level and sensory stimulation to remedy the defect of single sensory.Pay attention to humanistic care and point out the new design direction.
作者 许晓云 尹项迎 李静雯 XU Xiao-yun YIN Xiang-ying LI Jing-wen(Hebei University of Technology, Tianjin 300401, China)
机构地区 河北工业大学
出处 《艺术与设计(理论版)》 2017年第10期57-59,共3页 Art and Design
关键词 多维立体感官 就医导向 儿童医院 multidimensional stereoscopic sense medical orientation childrens hospital
  • 相关文献

参考文献5

二级参考文献52

  • 1王士立.论导向设计中的图形联想[J].硅谷,2008,1(6):73-74. 被引量:1
  • 2李菁菁.小议导向系统标识的规划设置原则[J].广告大观(标识版),2006(4):41-44. 被引量:9
  • 3Alais, D., & David, B. (2004). The ventriloquist effect results from near-optimal bimodal integration. Current Biology, 14, 257-262.
  • 4Alexandre, E (2002). A computational perspective on the neural basis of multisensory spatial representations. Nature Reviews, 3, 741-747.
  • 5Battaglia P. W., Jacobs, R. A., & Aslin, R. N. (2003). Bayesian integration of visual and auditory signals for spatial localization. Journal of the Optical Society of America A-optical physics, 20, 1391-1397.
  • 6Bushara, K. O., Grafman, J., & Hallett, M. (2001). Neural correlates of auditory-visual stimulus onset asynchrony detection. Journal of Neuroscience, 21,300-304.
  • 7Calvert, G. A., & Thesen, T. (2004). Multisensory integration: methodological approaches and emerging principles in the human brain. Journal of Physiology, 98, 191-205.
  • 8Colonius, H., & Amdt, P. (2001). A two-stage model for visual-auditory interaction in saccadic latencies. Perception and Psychophysics, 63, 126-147.
  • 9Colonius, H., & Diederich, A. (2002). A maximum-likelihood approach to modeling multisensory enhancement. In T. G. Dietterich, S. Becker, & Z. Ghahramani (Eds.), Advances in neural information processing systems, 14, Cambridge:MIT Press.
  • 10Colonius, H. (2004). Multisensory interaction in saccadic reaction time: a time-window-of- integration model. Journal of Cognitive Neuroscience, 16, 1000-1009.

共引文献61

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部