전기자극에 의한 골격근의 근육피로를 고려한 근육모델

Muscle Model including Muscle Fatigue Dynamics of Stimulated Skeletal Muscle

  • 발행 : 1999.11.01

초록

A musculotendon model is proposed to predict muscle force during muscle fatigue due to the continuous functional electrical stimulation(FES). Muscle fatigue dynamics can be modeled as the electrical admittance of muscle fibers and included in activation dynamics based on the{{{{ { Ca}^{2+ } }}}} kinetics. The admittance depends on the fatigue variable that monotonically increase or decrease if electrical pulse exists or not, and on the stimulation parameters and the number of applied pulses. In the response of the change in activation the normalized Hill-type contraction dynamics connected with activation dynamics decline the muscle shortening velocity and thus its force under muscle fatigue. The computer simulation shows that the proposed model can express the muscle fatigue and its recovery without changing any stimulation parameters.

키워드

참고문헌

  1. IEEE Trans. Biomed. Eng. v.40 no.7 Musculotendon model of the fatigue profiles of paralyzed quadriceps muscle under FES Y. Giat;J. Mizrahi;M. Levy
  2. 대한전기 학회 논문지 v.48 no.8 전기자극에 의한 근육의 피로특성을 나타내는 근육모델 임종광;남문현
  3. Medicine and Science in Sports v.11 no.4 Muscle fatigue Erling Asmussen
  4. J. Physiol. v.140 Presynaptic failure of neuro-muscular propagation in rats Krenjvic K.;Miledi R.
  5. Muscle & Nerve v.7;8 Failure of neuromuscular transmission and contractility during muscle fatigue Murali K.D. Pagala;Tatsuji Namba;David Grob
  6. Exp. Neurol. v.64 Excitation frequency and muscle fatigue : Mechanical responses during voluntary and stimulated contractions Jones D. A.;Bigland - Ritchie B.;Edwards R. H. T.
  7. Exp. Neurol. v.64 Excitation frequency and muscle fatigue : Electrical responses during human voluntary and stimulated contractions Bigland-Ritche B.;Jones Da;Qoods J.
  8. Am. J. Physiol. v.219 Chemical basis of fatigue in isolated mouse soleus muscle Spande J. E.;Schotelius B. A.
  9. J. Physiol. v.409 Maximum tension and force-velocity properties of fatigued, single Xenopus muscle fibers studied by caffeine and high $K^+$ J. Lannergren;H. Westerblad
  10. J. Physiol. v.397 The inhibition of rabbit skeletal muscle contraction by hydrogen ions and phosphate R. Cooke;K. Franks;G. B. Luciani;E. Pate
  11. Pflugers Arch. v.413 Changes in velocity of shortening, power output and relaxation rate during fatigue of rat medial gastronemius muscle A. De Hann;D. A. Jones