FIELD: sports.
SUBSTANCE: circle on the monitor screen is presented to the subject, on which a mark and a point object is placed. The point object moves at a predetermined speed along the circle. The testee stops the movement of the point object along the circle at the time of the proposed coincidence of its position with the mark by pressing the "Stop" button. Then the mismatch error of the point object and the mark is calculated. This is the time of trailing error with a positive sign or anticipation with a negative sign. After the predetermined time, the motion of the point object along the circle is resumed. The described procedure is performed the specified number of times. The order statistics of mismatch errors of the point object and marks is created. The range of the order is calculated by the formula: R=tmax-tmin. The ratio of the largest member of the order statistics tmax to the range R is calculated, multiplied by 100. The maximum absolute value of the prediction error |tpred.max| is determined. The lower quartile (25% quantile) of the maximum absolute value of the prediction error |tpred.max| is calculated. The percentage P of the absolute values of the prediction errors is determined, which are in the lower quartile of the maximum absolute value of the error |tpred.max|. Rating P is calculated as the reciprocal number of the arithmetic mean of the range R, the ratio of the largest member of the order statistics tmax to the range R, multiplied by 100, and the percentage Per of the absolute values of prediction errors which are in the lower quartile of the maximum absolute value of the prediction error |tpred.max|, multiplied by 100, according to the formula: P=100×1/(R+100×tmax/R+Per)/3=300/(R+100tmax/R+Per). The testee who has a higher rating is regarded as the most promising and able to show better results in upcoming competitions.
EFFECT: increasing reliability of determining the rating of combat athletes by evaluating the ratio of excitation and inhibition that characterises the speed capabilities and accuracy of motor actions.
10 dwg, 3 ex
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Authors
Dates
2014-12-10—Published
2013-10-31—Filed