Title :
Using Postural Synergies to Animate a Low-Dimensional Hand Avatar in Haptic Simulation
Author :
Mulatto, S. ; Formaglio, A. ; Malvezzi, Monica ; Prattichizzo, Domenico
Author_Institution :
Dipt. di Ing. dell´Inf., Univ. degli Studi di Siena, Siena, Italy
fDate :
First Quarter 2013
Abstract :
A technique to animate a realistic hand avatar with 20 DoFs based on the biomechanics of the human hand is presented. The animation does not use any sensor glove or advanced tracker with markers. The proposed approach is based on the knowledge of a set of kinematic constraints on the model of the hand, referred to as postural synergies, which allows to represent the hand posture using a number of variables lower than the number of joints of the hand model. This low-dimensional set of parameters is estimated from direct measurement of the motion of thumb and index finger tracked using two haptic devices. A kinematic inversion algorithm has been developed, which takes synergies into account and estimates the kinematic configuration of the whole hand, i.e., also of the fingers whose end tips are not directly tracked by the two haptic devices. The hand skin is deformable and its deformation is computed using a linear vertex blending technique. The proposed synergy-based animation of the hand avatar involves only algebraic computations and is suitable for real-time implementation as required in haptics.
Keywords :
avatars; biomechanics; computer animation; digital simulation; haptic interfaces; inverse problems; skin; 20-DoF; algebraic computations; hand model joints; hand posture representation; hand skin deformation; haptic simulation; human hand biomechanics; index finger direct measurement; kinematic constraints; kinematic inversion algorithm; linear vertex blending technique; low-dimensional parameter estimation; low-dimensional realistic hand avatar animation; postural synergy-based animation; thumb motion direct measurement; Avatars; Haptic interfaces; Humans; Indexes; Joints; Kinematics; Thumb; Haptics; hand avatar; postural synergies;
Journal_Title :
Haptics, IEEE Transactions on
DOI :
10.1109/TOH.2012.13