1 |
Artificial muscle technology: physical principles and naval prospects  |
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2 |
Properties of tendinous structures of rat EDL muscle-tendon complex  |
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3 |
A musculoskeletal model of the human lower extremity: The effect of muscle, tendon, and moment arm on the moment-angle relationship of musculotendon actuators at the hip, knee, and ankle  |
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4 |
Menegaldo, L. L., Fleury, A. T. and Weber, H. I., 2004, "Moment Arms and Musculotendon Lengths Estimation for a Three-dimensional Lower-limb Model," J. Biomech., Vol. 37, pp. 1447~1453. |
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5 |
Adjustments to Zatsiorsky-Seluyanov's segment inertia parameters  |
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6 |
Moment arms and lengths of human upper limb muscles as functions of joint angles  |
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7 |
Spastic hypertonia: mechanisms and measurement.  |
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8 |
Involuntary activity in biceps following the sudden application of velocity to the abducted forearm.  |
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9 |
Spinal mechanisms of the functional stretch reflex.  |
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10 |
Pendulousness of the Legs as a Diagnostic Test  |
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11 |
A dynamic neuromuscular model for describing the pendulum test of spasticity.  |
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12 |
Stretch reflex sensitivity: effects of postural and muscle length changes  |
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13 |
Schuurmans, J., Helm, C. T. and Schouten, A. C., 2011, “Relating Reflex Gain Modulation in Posture Control to Underlying Neural Network Properties Using a Neuromuscuolskeletal Model," J. Comput, Neurosci, Vol. 30, pp. 555~565. |
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14 |
A rigorous model of reflex function indicates that position and force feedback are flexibly tuned to position and force tasks.  |
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15 |
Decoupling of stretch reflex and background muscle activity during anticipatory postural adjustments in humans  |
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16 |
The effect of whole body vibration on the H-reflex, the stretch reflex, and the short-latency response during hopping  |
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17 |
Age-related changes of the stretch reflex excitability in human ankle muscles  |
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18 |
Neuromusculoskeletal modeling: estimation of muscle forces and joint moments and movements from measurements of neural command.  |
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19 |
Feng, C. J. and Mak, A.F.T., 1998, “Neuromuscular Model for the Stretch Reflex in Passive Movement of Spastic Elbow Joint,” Proc. IEEE Eng. Med. Bio. Soc., Vol. 20, No. 5, pp. 2317~2320. |
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20 |
Feng, C. J. and Mak, A.F.T., 1998, “Neuromuscular Model for,” Proc. Bio. Soc., Vol.20, No.5, pp. 2317~2320. |
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21 |
A quantitative analysis of pendular motion of the lower leg in spastic human subjects.  |
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22 |
Identification of Muscle Forces and Activation of Quadriceps Femoris Muscles of Healthy Adults Considering Knee Damping Effects during Patellar Tendon Reflex
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23 |
Inertia and muscle contraction parameters for musculoskeletal modelling of the shoulder mechanism  |
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24 |
Hill, A. V., 1938, "The Heat of Shortening and Dynamics Constants of Muscles," Proceedings of the Royal Society of London, Series B, Biological Sciences, Vol. 126, No. 843, pp. 136~195. |
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25 |
Garner, B. A. and Pandy, M. G., 2010, “Musculoskeletal Model of the Upper Limb Based on the Visible Human Male Dataset,” Comp. Meth. Biomech. Biomed. Eng., Vol. 4, pp. 93~126. |
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