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Parametric Study of Virtual Curvature Recognition: Discrimination Thresholds for Haptic and Visual Sensory Information

机译:虚拟曲率识别的参数研究:触觉和视觉感觉信息的区分阈值

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摘要

The senses of vision and touch are vital modalities used in the discrimination of objects. In this research effort, a haptic device is used to determine thresholds of curvature discrimination in visual-haptic experiments. Discrimination thresholds are found for each sense independently as well as for combinations of these with and without the presence of conflicting information. Results indicate that on average, the visual sense is about three times more sensitive than the haptic sense in discriminating curvature in virtual environments. It is also noticed that subjects seem to rely more heavily on the sense that contains the most informative cues rather than on any one particular sense, in agreement with the sensory integration model proposed by Ernst and Banks. The authors believe that the resulting thresholds may serve as relative comparisons between perceptual performance of the sensory modalities of vision and haptics in virtual environment.
机译:视觉和触觉是辨别物体的重要方式。在这项研究工作中,使用触觉设备来确定视觉触觉实验中曲率辨别的阈值。在存在和不存在冲突信息的情况下,分别为每种感觉以及这些感觉的组合找到区分阈值。结果表明,在区分虚拟环境中的曲率时,视觉感知的平均灵敏度比触觉感知的灵敏度高三倍。还应注意,与Ernst和Banks提出的感觉统合模型相一致,受试者似乎更加依赖包含最多信息线索的感觉,而不是任何一种特定感觉。作者认为,由此产生的阈值可以用作虚拟环境中视觉和触觉感觉方式的感知性能之间的相对比较。

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