Functionality indexes assessed through a simple model of muscle activation, fatigue and recovery
Functionality indexes assessed through a simple model of muscle activation, fatigue and recovery
摘要
A nonlinear dynamical system is proposed as a qualitative mathematical model with the twofold aim to reasonably describe the force behavior in a fatiguing sub-maximal contraction and to be possibly employed in assessing muscular activation indexes. The model's properties are studied in terms of its equilibria and their stability properties and the existence of the fatigue equilibrium is ensured as the only system's attractor in the feasibility range of the parameters. Suitable mathematical indicators -- related to the dynamical properties of resilience and reactivity -- are introduced to characterize the asymptotic and the transient system's behavior. The practical impact of the analytical results is elucidated and a connection is established between the introduced mathematical indicators and muscle functionality indexes as rate of force development, task failure time and complete restore time. Experimental validation with handgrip force signal at high load and possible practical applications are also presented.
参考文献38
-
1American Association of Electrodiagnostic Medicine, Glossary of terms in electrodi- agnostic medicine, Muscle Nerve 24(Suppl. 10) (2001) S1-S50. 被引量:1
-
2B. K. Barry and R. M. Enoka, The neurobiology of muscle fatigue: 15 years later, Integr. Comput. Biol. 47(4) (2007) 465-473. 被引量:1
-
3I. Bautmans, E. Gorus, R. Njemini and T. Mets, Handgrip performance in relation to self-perceived fatigue, physical functioning and circulating IL-6 in elderly persons without infiammation, BMC Geriatr. 1 (2007) 5-7. 被引量:1
-
4P. Bawa, M. Y. Pang, K. A. Olesen and B. Calancie, Rotation of motoneurons during prolonged isometric contractions in humans, J. Neurophysiol. 96 (2006) 1135-1140. 被引量:1
-
5B. Bigland-Ritchie, EMG/force relations and fatigue of human voluntary contrac- tions, Exert. Sport Sci. Rev. 9 (1981) 75 -117. 被引量:1
-
6B. Bigland-Ritchie and J. J. Woods, Changes in muscle contractile properties and neural control during human muscular fatigue, Muscle Nerve 7(9) (1984) 691-699. 被引量:1
-
7R. W. Bohannon, Hand-grip dynamometry predicts future outcomes in aging adults, J. Geriatr. Phys. Ther. 31 (2008)3- 10. 被引量:1
-
8C. J. De Luca and E. C. Hostage, Relationship between firing rate and recruit- ment threshold of motoneurons in voluntary isometric contractions, J. Neurophysiol. 104 (2010) 1034-1046. 被引量:1
-
9D. L. DeAngelis, P. J. Mulholland, A. V. Palumbo, A. D. Steinman, M. A. Huston and J. W. Elwood, Nutrient dynamics and food-web stability, Ann. Rev. Ecol. Syst. 20 (1989) 71- 95. 被引量:1
-
10R. M. Enoka and D. G. Stuart, Neurobiology of muscle fatigue, J. Appl. Physiol. 72 (1992) 1631- 1648. 被引量:1
-
1朱命冬,申德荣,寇月,聂铁铮,于戈.A Framework for Supporting Tree-Like Indexes on the Chord Overlay[J].Journal of Computer Science & Technology,2013,28(6):962-972.
-
2Massimo Macera,Paolo Rocchil.Toward Exhaustive Teaching of Relational Database Indexes[J].Computer Technology and Application,2012,3(8):578-583.
-
3Lei Yi,Kyoungsun Kim,Gen Nakamura.NUMERICAL IMPLEMENTATION FOR A 2-D THERMAL INHOMOGENEITY THROUGH THE DYNAMICAL PROBE METHOD[J].Journal of Computational Mathematics,2010,28(1):87-104.
-
4骆勇.基于RFID概率泛函的人体运动受力行为分解[J].科技通报,2015,31(2):116-118.
-
5谷小秋,李德昌.索引调整优化Oracle 9i工作性能的研究[J].计算机工程与应用,2005,41(26):174-176. 被引量:17
-
6新款疲劳分析软件Fatigue Wizard问世[J].CAD/CAM与制造业信息化,2010(2):1-1.
-
7任俊柏.CONFOUNDING STRUCTURE OF TWO-LEVEL NONREGULAR FACTORIAL DESIGNS[J].Acta Mathematica Scientia,2012,32(2):488-498.
-
8邱隆.基于质点-弹簧的高精度布料模型的高效率模拟仿真关键技术研究[J].中国科技博览,2012(5):89-91. 被引量:1
-
9魏召兰.基于Midas的异型桥梁结构分析[J].路基工程,2009(3):147-148.
-
10阎修权,张方.飞机舱门在风载作用下的强度[J].计算机辅助工程,2006,15(B09):39-41. 被引量:1