High-fidelity continuum modeling predicts avian voiced sound production

被引:10
|
作者
Jiang, Weili [1 ]
Rasmussen, Jeppe H. [2 ,5 ]
Xue, Qian [1 ]
Ding, Ming [3 ,4 ]
Zheng, Xudong [1 ]
Elemans, Coen P. H. [2 ]
机构
[1] Univ Maine, Dept Mech Engn, Orono, ME 04469 USA
[2] Univ Southern Denmark, Dept Biol, DK-5230 Odense M, Denmark
[3] Odense Univ Hosp, Dept Orthopaed Surg & Traumatol, DK-5000 Odense C, Denmark
[4] Univ Southern Denmark, Dept Clin Res, DK-5000 Odense C, Denmark
[5] Texas A&M Univ, Dept Marine Biol, Galveston, TX 77554 USA
关键词
birdsong; human voice; syrinx; larynx; computational fluid dynamics; VOCAL-FOLD; DYNAMICS; NEUROMECHANICS; SIMULATION; PHONATION; POSTURE; PHYSICS; SONG;
D O I
10.1073/pnas.1922147117
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Voiced sound production is the primary form of acoustic communication in terrestrial vertebrates, particularly birds and mammals, including humans. Developing a causal physics-based model that ultimately links descending vocal motor control to tissue vibration and sound requires embodied approaches that include realistic representations of voice physiology. Here, we first implement and then experimentally test a high-fidelity three-dimensional (3D) continuum model for voiced sound production in birds. Driven by individual-based physiologically quantifiable inputs, combined with noninvasive inverse methods for tissue material parameterization, our model accurately predicts observed key vibratory and acoustic performance traits. These results demonstrate that realistic models lead to accurate predictions and support the continuum model approach as a critical tool toward a causal model of voiced sound production.
引用
收藏
页码:4718 / 4723
页数:6
相关论文
共 50 条
  • [31] A Doubly Hierarchical MoM for High-Fidelity Modeling of Multiscale Structures
    Li, Mengmeng
    Francavilla, Matteo Alessandro
    Vipiana, Francesca
    Vecchi, Giuseppe
    Fan, Zhenhong
    Chen, Rushan
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2014, 56 (05) : 1103 - 1111
  • [32] High-Fidelity Modeling of Human Microglia with Pluripotent Stem Cells
    Jiang, Peng
    Turkalj, Luka
    Xu, Ranjie
    CELL STEM CELL, 2020, 26 (05) : 629 - 631
  • [33] High-fidelity sensor modeling in mission-area simulations
    Carlo, JT
    Maher, JE
    Schneible, JE
    ENABLING TECHNOLOGIES FOR SIMULATION SCIENCE VII, 2003, 5091 : 338 - 349
  • [34] A SIMULATION TOOL FOR HIGH-FIDELITY MODELING OF COMPLEX LOGISTICAL NETWORKS
    Mathew, Reejo
    Mastaglio, Thomas W.
    Lewis, Andrew
    24TH EUROPEAN MODELING AND SIMULATION SYMPOSIUM (EMSS 2012), 2012, : 6 - 14
  • [35] PROPOSED MULTICHANNEL SOUND SYSTEMS PROMISE HIGH-FIDELITY STEREO TV.
    Rappaport, Andy
    EDN, 1982, 27 (05) : 57 - 67
  • [36] High-fidelity and High-speed Modeling and Simulation for Power Conversion Systems
    Xu, Chunchun
    Garces, Luis
    Szczesny, Paul
    2010 TWENTY-FIFTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC), 2010, : 1295 - 1299
  • [37] High-Fidelity Multiphysics Modeling of a Heat Pipe Microreactor Using BlueCrab
    Stauff, Nicolas E.
    Miao, Yinbin
    Cao, Yan
    Mo, Kun
    Abdelhameed, Ahmed Amin E.
    Ibarra, Lander
    Matthews, Christopher
    Shemon, Emily R.
    NUCLEAR SCIENCE AND ENGINEERING, 2024,
  • [38] Toward a high-fidelity tritium transport modeling for retention and permeation experiments
    Shimada, Masashi
    Simon, Pierre-Clement A.
    Icenhour, Casey T.
    Singh, Gyanender
    FUSION ENGINEERING AND DESIGN, 2024, 203
  • [39] Machine Learning and Modeling of Ultrasonic Signals for High-Fidelity Data Compression
    Saniie, Jafar
    Govindan, Pramod
    Wang, Boyang
    Zhang, Xin
    Lu, Yufeng
    Oruklu, Erdal
    2022 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IEEE IUS), 2022,
  • [40] High-Fidelity Microstructural Characterization and Performance Modeling of Aluminized Composite Propellant
    Kosiba, Graham D.
    Wixom, Ryan R.
    Oehlschlaeger, Matthew A.
    PROPELLANTS EXPLOSIVES PYROTECHNICS, 2017, 42 (12) : 1387 - 1395