Lucero J C, Munhall K G
Departamento de Matematica, Universidade de Brasilia, Brazil.
J Acoust Soc Am. 1999 Nov;106(5):2834-42. doi: 10.1121/1.428108.
Modeling the peripheral speech motor system can advance the understanding of speech motor control and audiovisual speech perception. A 3-D physical model of the human face is presented. The model represents the soft tissue biomechanics with a multilayer deformable mesh. The mesh is controlled by a set of modeled facial muscles which uses a standard Hill-type representation of muscle dynamics. In a test of the model, recorded intramuscular electromyography (EMG) was used to activate the modeled muscles and the kinematics of the mesh was compared with 3-D kinematics recorded with OPTOTRAK. Overall, there was a good match between the recorded data and the model's movements. Animations of the model are provided as MPEG movies.
对外周言语运动系统进行建模有助于深入理解言语运动控制和视听言语感知。本文提出了一种人脸的三维物理模型。该模型用多层可变形网格表示软组织生物力学。网格由一组模拟面部肌肉控制,这些肌肉采用肌肉动力学的标准希尔型表示。在模型测试中,使用记录的肌内肌电图(EMG)来激活模拟肌肉,并将网格的运动学与用OPTOTRAK记录的三维运动学进行比较。总体而言,记录数据与模型运动之间匹配良好。模型动画以MPEG电影形式提供。