DocumentCode
1194839
Title
A comparison of static and dynamic characteristics between rectus eye muscle and linear muscle model predictions
Author
Enderle, John D. ; Engelken, Edward J. ; Stiles, Robert N.
Author_Institution
Dept. of Electr. & Electron. Eng., North Dakota State Univ., Fargo, ND, USA
Volume
38
Issue
12
fYear
1991
Firstpage
1235
Lastpage
1245
Abstract
The muscle is modeled as a viscoelastic parallel combination connected to a parallel combination of active state tension generator, viscosity element, and length tension elastic element. Each of the elements is linear and their existence is supported with physiological evidence. The static and dynamic properties of the muscle model are compared to rectus eye muscle data. The length-tension characteristics of the model are in good agreement with the data within the operating region of the muscle. With the muscle model incorporated into a lever system to match the isotonic experiment paradigm, simulation results for this linear system yield a nonlinear force-velocity curve. Moreover, the family of force-velocity curves generated with different stimulus rates reported in the literature match the predictions of the model without parametric changes.
Keywords
biomechanics; eye; muscle; physiological models; active state tension generator; dynamic characteristics; force-velocity curves; isotonic experiment paradigm; length tension elastic element; length-tension characteristics; lever system; linear muscle model; rectus eye muscle; static characteristics; viscoelastic parallel combination; viscosity element; Aerodynamics; Aerospace biophysics; Elasticity; Humans; Linear systems; Muscles; Neural networks; Neurofeedback; Predictive models; Viscosity; Isometric Contraction; Isotonic Contraction; Models, Biological; Oculomotor Muscles;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/10.137289
Filename
137289
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