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1.
Japanese Journal of Physical Fitness and Sports Medicine ; : 45-57, 1994.
Article in Japanese | WPRIM | ID: wpr-371642

ABSTRACT

A study was conducted to investigate the influence of motor learning on functional specialization of the upper and lower limbs by comparing automatized levels in upper and lower limb movements between 17 soccer (S group) and 14 basketball (B group) players at a university. They carried out transitory palmar flexion of both hands while stepping and performing alternate flexion-extension movements of both ankle joints, and transitory plantar flexion of both feet while performing alternate flexion-extension movement of both shoulder joints and both wrist joints. The automatized levels of the upper and lower limb movements were evaluated by the degree of interference between the upper and lower limb movements.<BR>It was shown that automatization of lower limb movements was more advanced than that of upper limb movements in both groups. The automatized levels of stepping in the S and B groups showed no significant difference, and were similar to those of university students in general obtained in our previous study. However, the automatized levels of ankle joint movements in both groups were higher than those for university students in general.<BR>In both groups, the insertion of transitory palmar flexion was restricted to within the phase where the degree of interference was small during the stepping and ankle joint movement. However, this tendency was not clear in the trial where transitory plantar flexion was superimposed on shoulder joint and wrist joint movements.<BR>As for the difference between the groups, the S group showed a higher automatized level of ankle joint movement than the B group. On the other hand, the B group showed higher automatized levels of both upper limb movements than the S group, and this tendency was especially evident for shoulder joint movement.<BR>These results suggest that the change in the automatized level of upper and lower limb movements by specific motor learning is added to the functional specialization of the upper and lower limbs acquired by daily basic motor learning in an upright position.

2.
Japanese Journal of Physical Fitness and Sports Medicine ; : 44-52, 1990.
Article in Japanese | WPRIM | ID: wpr-371482

ABSTRACT

The voluntary exercises consist of different automatized levels and are mostly a combination of the upper limbs and the lower limbs exercises.<BR>This study was to examine the interference of the upper limbs exercise to the periodic lower limbs exercise with different automatized levels. Seven male university students, aged 19 and 20 yrs., served as subjects. The periodic lower limbs exercises were the stepping (walking on the place) and the alternate plantar-flexion of the right and left foot while standing. The frequencies of the lower limbs exercises were 120, 160 and 200 times/min, The stepping, which is similar to the motion of the lower limbs in walking or running, may be performed more frequently in daily life than the plantar-flexion in which only the ankle angle was changed. Therefore, we assume that the stepping is a higly automatized exercise compared with the plantar-flexion. Upper limbs exercise, which was combined with the lower limbs exercise, was the simultaneous tapping of one time by both hand. The interference degree was evaluated by the change of step intervals of the lower limbs exercise. The results were:<BR>1) The fluctuation of step intervals on the plantar-flexion was greater than the fluctuation on the stepping and the smallest in the frequency 120 compared with that in the other frequencies.<BR>2) When the tapping was combined with the lower limbs exercises, one step interval at that time was lengthened and one step interval immediately before the tapping was shortened. This change of step intervals was greater in the plantar-flexion than that in the stepping. The change in the plantar-flexion was the smallest in the frequency 120 compared with that in the other frequencies.<BR>The above mentioned findings suggest that the automatized level of the lower limbs exercise can be clearly evaluated by the interference degree of the upper limbs exercise to the periodic lower limbs exercise.

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