Title of article :
A neuromusculoskeletal model to simulate the constant angular velocity elbow extension test of spasticity
Author/Authors :
Koo، نويسنده , , Terry K.K. and Mak، نويسنده , , Arthur F.T. Mak، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2006
Pages :
10
From page :
60
To page :
69
Abstract :
We developed a neuromusculoskeletal model to simulate the stretch reflex torque induced during a constant angular velocity elbow extension by tuning a set of physiologically-based parameters. Our model extended past modeling efforts in the investigation of elbow spasticity by incorporating explicit musculotendon, muscle spindle, and motoneuron pool models in each prime elbow flexor. We analyzed the effects of changes in motoneuron pool and muscle spindle properties as well as muscle mechanical properties on the biomechanical behavior of the elbow joint observed during a constant angular velocity elbow extension. Results indicated that both motoneuron pool thresholds and gains could be substantially different among muscles. In addition, sensitivity analysis revealed that spindle static gain and motoneuron pool threshold were the most sensitive parameters that could affect the stretch reflex responses of the elbow flexors during a constant angular velocity elbow extension, followed by motoneuron pool gain, and spindle dynamic gain. It is hoped that the model will contribute to the understanding of the underlying mechanisms of spasticity after validation by more elaborate experiments, and will facilitate the future development of more specific treatment of spasticity.
Keywords :
Constant angular velocity extension , Neuromusculoskeletal modeling , Elbow spasticity , Stretch reflex
Journal title :
Medical Engineering and Physics
Serial Year :
2006
Journal title :
Medical Engineering and Physics
Record number :
1728916
Link To Document :
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