Ergonomics · 1995 · 245 citations · 19 references
Haptic FeedbackHaptic TechnologyMotor ControlAttentionSocial SciencesTactile SensingKinesiologyTouch User InterfaceNormal FeedbackMouse-type DeviceHealth SciencesSensorimotor ControlCognitive ScienceAssistive TechnologyInput DeviceRehabilitationLeft Mouse ButtonHapticsPointing TaskSensorimotor TransformationEye TrackingTactile FeedbackVisual Feedback
Design considerations for human‑computer interfaces are discussed. A modified mouse with a solenoid‑driven tactile pin was used in a target‑selection experiment testing five sensory feedback conditions. Overall response times, error rates, and bandwidths did not differ across conditions, but tactile feedback produced the fastest final positioning times and a narrower spatial distribution, indicating quicker target selection once the cursor entered the target.
A mouse was modified to add tactile feedback via a solenoid-driven pin projecting through a hole in the left mouse button. An experiment is described using a target selection task under five different sensory feedback conditions ('normal', auditory, colour, tactile, and combined). No differences were found in overall response times, error rates, or bandwidths; however, significant differences were found in the final positioning times (from the cursor entering the target to selecting the target). For the latter, tactile feedback was the quickest, normal feedback was the slowest. An examination of the spatial distributions in responses showed a peaked, narrow distribution for the normal condition, and a flat, wide distribution for the tactile (and combined) conditions. It is argued that tactile feedback allows subjects to use a wider area of the target and to select targets more quickly once the cursor is inside the target. Design considerations for human-computer interfaces are discussed.
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