Liang Wu
liangwu@xjtu.edu.cn
English, Chinese
Shaanxi
Xi'an Jiaotong University
Life Sciences
  • 2017 - Present - Associate Professor, School of Life Science and Technology, Xi'an Jiaotong University, China
  • 2019 - 2020 - Visiting Associate Project Scientist, David Geffen School of Medicine, University of California, Los Angeles, USA
  • 2013 - 2017 - Assistant Professor, School of Life Science and Technology, Xi'an Jiaotong University, China
  • 2015 - 2016 - Visiting Assistant Project Scientist, David Geffen School of Medicine, University of California, Los Angeles, USA
Speech Production and Neuromuscular Control
Speech Synthesis and Rehabilitation based on Physiological Features
Computational Model and Physical Model of Human Speech Production System
Speech Perception and Natural Language Processing
  • Nonlinear effects of dual-frequency focused ultrasound on the on-demand regulation of acoustic droplet vaporization, Y Zhao, Y Feng*, L Wu*, 2024
  • Immediate effect of recurrent laryngeal nerve stimulation in patients with idiopathic unilateral vocal fold paralysis, J Yan, J Hou, H Zhang, X Yang, Y Sheng, X Du, D Kong, Z Wang, X Ren*, L Wu*, 2024
  • Impact of the paraglottic space on voice production in an MRI-based vocal fold model, L Wu, Z Zhang*, 2023
  • Effects of implant and vocal fold stiffness on voice production after medialization laryngoplasty in an MRI-based vocal fold model, L Wu, Z Zhang*, 2023
  • On-demand regulation and enhancement of the nucleation in acoustic droplet vaporization using dual-frequency focused ultrasound, Y Zhao, D Qin, J Chen, J Hou, T Ilovitsh, M Wan, L Wu*, Y Feng*, 2022
  • Computational study of the impact of dehydration-induced vocal fold stiffness changes on voice production, L Wu*, Z Zhang, 2022
  • Acoustical and perceptual characteristics of Mandarin consonants produced with an electrolarynx, K Xiao, B Zhang, S Wang, M Wan, L Wu*, 2020
  • 声带上表面振动黏膜波波速的激光测振估计方法, 吴亮, 叱干鹏举, 王素品, 万明习*, 2020
  • Three-dimensional vocal fold structural change due to implant insertion in medialization laryngoplasty, Z Zhang*, L Wu, R Gray, DK Chhetri, 2020
  • Voice production in a MRI-based subject-specific vocal fold model with parametrically controlled medial surface shape, L Wu, Z Zhang*, 2019
  • Reconstruction of Mandarin electrolaryngeal fricatives with hybrid noise source, K Xiao, S Wang, M Wan, L Wu*, 2019
  • Radiated noise suppression for electrolarynx speech based on multiband time-domain amplitude modulation, K Xiao, S Wang, M Wan, L Wu*, 2018
  • Visualizing the mechanical wave of vocal fold tissue during phonation using electroglottogram-triggered ultrasonography, B Jing, Z Ge, L Wu, S Wang, M Wan*, 2018
  • A computational study of vocal fold dehydration during phonation, L Wu*, Z Zhang, 2017
  • Acoustic influence of the neck tissue on Mandarin voiceless consonant production of Electrolaryngeal speech, L Wu, K Xiao, S Wang, M Wan*, 2017
  • Vocal efficiency of electrolaryngeal speech production, L Wu, K Xiao, S Wang, M Wan*, 2017
  • Visualizing the movement of the contact between vocal folds during vibration by using array-based transmission ultrasonic glottography, B Jing, P Chigan, Z Ge, L Wu, Supin Wang, Mingxi Wan*, 2017
  • A parametric vocal fold model based on magnetic resonance imaging, L Wu, Z Zhang*, 2016
  • Visualizing the vibration of laryngeal tissue during phonation using ultrafast plane wave ultrasonography, B Jing, S Tang, L Wu, S Wang, M Wan, 2016
  • 基于电声门图信号的可控超声喉动态成像系统, 张聪, 唐姗姗, 张媛媛, 敬博文, 吴亮, 万明习, 王素品*, 2015
  • 发声效率测量系统的设计与实现, 张聪, 吴亮, 张向红, 杜小滢, 万明习, 王素品*, 2015
  • Evaluation of a method for vowel-specific voice source control of an electrolarynx using visual information, L Wu, C Wan, K Xiao, S Wang, M Wan*, 2014
  • Measurement of the sound transmission characteristics of normal neck tissue using a reflectionless uniform tube, L Wu, K Xiao, J Dong, S Wang, M Wan*, 2014
  • Improvement of electrolaryngeal speech quality using a supraglottal voice source with compensation of vocal tract characteristics, L Wu, C Wan, S Wang, M Wan*, 2013
  • Development and evaluation of on/off control for electrolaryngeal speech via artificial neural network based on visual information of lips, L Wu, C Wan, S Wang, M Wan*, 2013
  • Assessment of a method for the automatic on/off control of an electrolarynx via lip deformation, C Wan, L Wu, H Wu, S Wang, M Wan*, 2012
  • Design and evaluation of an electrolarynx with tonal control function for Mandarin, C Wan, E Wang, L Wu, S Wang, M Wan*, 2012
  • Measuring body-cover vibration of vocal folds based on high-frame-rate ultrasonic imaging and high-speed video, X Qin, L Wu, H Jiang, S Tang, S Wang, M Wan*, 2011
Speech Production Control Neuromuscular Synthesis Rehabilitation Computational Model Perception Processing

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