Lower Extremity Lateral Skin Stretch Perception for Haptic Feedback.
Identifieur interne : 000152 ( Main/Curation ); précédent : 000151; suivant : 000153Lower Extremity Lateral Skin Stretch Perception for Haptic Feedback.
Auteurs : Daniel Chen ; Iain Anderson ; Cameron Walker ; Thor BesierSource :
- IEEE transactions on haptics [ 2329-4051 ] ; 2016.
Abstract
Tactile feedback in recent decades has allowed humans to receive information through technology beyond traditional visual and auditory senses. Lateral skin stretch has the potential to be a mode of tactile feedback, reliably enabling the perception of directional cues through the use of a single actuator. Experiments were conducted to explore sensitivity to skin stretch on nine locations on the human lower leg. 32 stimuli were presented to subjects, exploring effects of displacement (from 0.2-2.0 mm) and speed (from 0.5-4.0 mm/s) on the perception of left and right directions. Higher accuracy came from stimuli having higher displacements and speeds. The three locations: soleus, calcaneal tendon (upper) and fibularis longus (lower) all had mean accuracy of at least 85% and are suitable locations for a skin stretch tactile feedback device.
DOI: 10.1109/TOH.2016.2516012
PubMed: 26761902
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pubmed:26761902Le document en format XML
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<front><div type="abstract" xml:lang="en">Tactile feedback in recent decades has allowed humans to receive information through technology beyond traditional visual and auditory senses. Lateral skin stretch has the potential to be a mode of tactile feedback, reliably enabling the perception of directional cues through the use of a single actuator. Experiments were conducted to explore sensitivity to skin stretch on nine locations on the human lower leg. 32 stimuli were presented to subjects, exploring effects of displacement (from 0.2-2.0 mm) and speed (from 0.5-4.0 mm/s) on the perception of left and right directions. Higher accuracy came from stimuli having higher displacements and speeds. The three locations: soleus, calcaneal tendon (upper) and fibularis longus (lower) all had mean accuracy of at least 85% and are suitable locations for a skin stretch tactile feedback device.</div>
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