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Contribution of Visual Information about Ball Trajectory to Baseball Hitting Accuracy

Author

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  • Takatoshi Higuchi
  • Tomoyuki Nagami
  • Hiroki Nakata
  • Masakazu Watanabe
  • Tadao Isaka
  • Kazuyuki Kanosue

Abstract

The contribution of visual information about a pitched ball to the accuracy of baseball-bat contact may vary depending on the part of trajectory seen. The purpose of the present study was to examine the relationship between hitting accuracy and the segment of the trajectory of the flying ball that can be seen by the batter. Ten college baseball field players participated in the study. The systematic error and standardized variability of ball-bat contact on the bat coordinate system and pitcher-to-catcher direction when hitting a ball launched from a pitching machine were measured with or without visual occlusion and analyzed using analysis of variance. The visual occlusion timing included occlusion from 150 milliseconds (ms) after the ball release (R+150), occlusion from 150 ms before the expected arrival of the launched ball at the home plate (A-150), and a condition with no occlusion (NO). Twelve trials in each condition were performed using two ball speeds (31.9 m·s-1 and 40.3 m·s-1). Visual occlusion did not affect the mean location of ball-bat contact in the bat’s long axis, short axis, and pitcher-to-catcher directions. Although the magnitude of standardized variability was significantly smaller in the bat’s short axis direction than in the bat’s long axis and pitcher-to-catcher directions (p

Suggested Citation

  • Takatoshi Higuchi & Tomoyuki Nagami & Hiroki Nakata & Masakazu Watanabe & Tadao Isaka & Kazuyuki Kanosue, 2016. "Contribution of Visual Information about Ball Trajectory to Baseball Hitting Accuracy," PLOS ONE, Public Library of Science, vol. 11(2), pages 1-15, February.
  • Handle: RePEc:plo:pone00:0148498
    DOI: 10.1371/journal.pone.0148498
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    Cited by:

    1. Shuji Kidokoro & Yuji Matsuzaki & Ryota Akagi, 2020. "Does the combination of different pitches and the absence of pitch type information influence timing control during batting in baseball?," PLOS ONE, Public Library of Science, vol. 15(3), pages 1-12, March.

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