Biomechanical aspects of biokinematic chain element fixation stiffness in application to low-kicking techniques in kickboxing

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Teoriya i praktika fizicheskoy kultury №7 2017, pp.75-77

PhD, Associate Professor A.A. Jalilov1
Dr.Hab. V.F. Balashova1
1Togliatti State University, Russia

The article analyses some deficiencies of the ongoing research of the low-kick techniques in the modern kickboxing sport due to the still underdeveloped biomechanical approach to the bio-kinematic chain elementary structure analysis. The traditional coaching practices tend to neglect the structures and forms of the trainee’s bodily elements being considered from a biomechanical viewpoint and, as a result, the mastered techniques are often incompliant with the relevant biomechanical model characteristics and genuine logics of the motor skill biomechanics. As a result, they often fail to build the required habitual skill structure (muscular feel) to control the energy flow from one bodily element to the other in the low-kick movement sequence. The authors consider in detail the interactions of the joint stiffness control mechanisms with the kinetic momentum (energy) transfer mechanism in the low-kicking movement sequences to obtain the bio-kinematic chain element fixation stiffness control parameters in the low-kick techniques. The study data and analyses demonstrate that the low-kicking movement sequence is secured by the bio-kinematic chain elements (joints) being stiffly fixed by the antagonistic muscle groups; with a special emphasis made on the biomechanical aspects of the kinetic momentum (energy) transfer mechanism in the low-kick movement sequences.

Keywords: low-kick techniques in kickboxing, bio-kinematic chain element fixation stiffness, joint stiffness control mechanism.

References

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