SenseLab
Computational model
  Data
Neuromusculoskeletal modeling with neural and finite element models (Volk et al, 2021)
Victoria Volk
NetPyNE Model [44272502]
"In this study, we present a predictive NMS model that uses an embedded neural architecture within a finite element (FE) framework to simulate muscle activation. A previously developed neuromuscular model of a motor neuron was embedded into a simple FE musculoskeletal model. Input stimulation profiles from literature were simulated in the FE NMS model to verify effective integration of the software platforms. Motor unit recruitment and rate coding capabilities of the model were evaluated. The integrated model reproduced previously published output muscle forces with an average error of 0.0435 N. The integrated model effectively demonstrated motor unit recruitment and rate coding in the physiological range based upon motor unit discharge rates and muscle force output."
  • Spinal cord motor neuron slow twitch Show Other
  • Volk VL, Hamilton LD, Hue DR, Shelburne KB, Fitzpatrick CK (2021) Show Other
267184
victoriavolk@u.boisestate.edu
Abaqus
The manuscript associated with this paper is currently under review. When it is published, we would like to include the citation to make this publicly available.
False
False
Other categories referring to Neuromusculoskeletal modeling with neural and finite element models (Volk et al, 2021)
Revisions: 8
Last Time: 2/6/2023 11:40:29 AM
Reviewer: Rui Li
Owner: Tom Morse - MoldelDB admin