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Journal Article

Citation

Kiefer AW, DiCesare C, Nalepka P, Foss KB, Thomas S, Myer GD. J. Sci. Med. Sport 2018; 21(1): 4-9.

Affiliation

The SPORT Center, Division of Sports Medicine, Cincinnati Children's Hospital, USA; Department of Pediatrics, College of Medicine, University of Cincinnati, USA; Department of Orthopaedics, College of Medicine, University of Cincinnati, USA; The Micheli Center for Sports Injury Prevention, USA.

Copyright

(Copyright © 2018, Sports Medicine Australia, Publisher Elsevier Publishing)

DOI

10.1016/j.jsams.2017.06.016

PMID

28778826

Abstract

OBJECTIVES: To evaluate associations between pre-season oculomotor performance on visual tracking tasks and in-season head impact incidence during high school boys ice hockey.

DESIGN: Prospective observational study design.

METHODS: Fifteen healthy high school aged male hockey athletes (M=16.50±1.17years) performed two 30s blocks each of a prosaccade and self-paced saccade task, and two trials each of a slow, medium, and fast smooth pursuit task (90°s(-1); 180°s(-1); 360°s(-1)) during the pre-season. Regular season in-game collision data were collected via helmet-mounted accelerometers. Simple linear regressions were used to examine relations between oculomotor performance measures and collision incidence at various impact thresholds.

RESULTS: The variability of prosaccade latency was positively related to total collisions for the 20g force cutoff (p=0.046, adjusted R(2)=0.28). The average self-paced saccade velocity (p=0.020, adjusted R(2)=0.37) and variability of smooth pursuit gaze velocity (p=0.012, adjusted R(2)=0.47) were also positively associated with total collisions for the 50g force cutoff.

CONCLUSIONS: These results provide preliminary evidence that less efficient oculomotor performance on three different oculomotor tasks is associated with increased incidence of head impacts during a competitive ice hockey season. The variability of prosaccade latency, the average self-paced saccade velocity and the variability of gaze velocity during predictable smooth pursuit all related to increased head impacts. Future work is needed to further understand player initiated collisions, but this is an important first step toward understanding strategies to reduce incidence of injury risk in ice hockey, and potentially contact sports more generally.

Copyright © 2017 Sports Medicine Australia. Published by Elsevier Ltd. All rights reserved.


Language: en

Keywords

Collision; Eye tracking; Hockey; Oculomotor; Saccade; Smooth pursuit

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