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VibeWalk: Foot-based tactons during walking and quiet stance

机译:VibeWalk:走路和保持安静姿势时的脚基动子

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Comparatively little research exists on rendering vibrotactile patterns, or tactons, to the sole of the foot. However, it may be a natural placement for vibrotactile stimulation for navigation tasks, posture and gait rehabilitation. Similarly, it may be more appropriate to render general haptic feedback to the foot when such vibrations would be distracting if delivered to other body parts. This motivated our development of a custom instrumented haptic insole, which incorporates four actuators, designed to deliver vibrotactile stimulation to the foot. As an initial test, we conducted a user study measuring recognition rates of tactons rendered during quiet stance and gait. Since actuator coupling and foot sensitivity change during gait, our insole uses a proximity sensor to detect footfall, allowing for consistent triggering at a defined point in the gait cycle when the actuators should be best coupled to the sole of the foot. We found that although overall recognition while standing (>92%) is much better than while walking (>66%), the majority of errors are confined to patterns that begin with the same actuator. Our initial evaluation shows promise for application of the insole, such as for sensorimotor rehabilitation and general human-computer interaction.
机译:相对而言,很少有关于在脚底上形成震动触觉图案或触觉的研究。但是,对于导航任务,姿势和步态康复来说,可能是对触觉刺激的自然放置。类似地,当这种振动如果传递到其他身体部位会分散注意力时,将一般的触觉反馈传递给脚可能更合适。这激励了我们开发定制的装备式触觉鞋垫,该鞋垫结合了四个致动器,旨在向脚提供震动触觉刺激。作为初始测试,我们进行了一项用户研究,测量在安静的姿势和步态过程中产生的t的识别率。由于致动器的耦合和脚部灵敏度在步态过程中发生变化,因此我们的鞋垫使用接近传感器来检测脚步,从而可以在步态周期中的某个特定点持续触发,这时应该将致动器最佳地耦合到脚底。我们发现,虽然站立时的整体识别度(> 92%)比行走时的整体识别度(> 66%)要好得多,但是大多数错误都局限于以相同执行器开始的模式。我们的初步评估显示了鞋垫的应用前景,例如感觉运动康复和一般的人机交互。

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