
@article{ref1,
title="Concussion history is negatively associated with visual-motor force complexity: evidence for persistent effects on visual-motor integration",
journal="Brain injury",
year="2018",
author="Raikes, Adam C. and Schaefer, Sydney Y. and Studenka, Breanna E.",
volume="32",
number="6",
pages="747-754",
abstract="OBJECTIVES: Long-term monitoring of concussion recovery requires time- and cost-effective methods. Physiologic complexity may be useful in evaluating visual-motor integration following concussion. The purpose of this study was to quantify the extent to which prior number of concussions influenced visual-motor tracking force complexity. <br><br>METHODS: Thirty-five individuals with a self-reported concussion history (age: 20.92 ± 1.98) and 15 without (age: 20.92 ± 2.21) performed an isometric visual-motor tracking task, using index finger force to trace a straight line across a computer screen. Finger force root mean square error (RMSE), multi-scale complexity, and average power from 0 to 12 Hertz (Hz) were calculated. Individual multiple regressions were fit to these outcomes. <br><br>RESULTS: Force complexity decreased linearly with an increasing number of concussions (R<sup>2</sup> = 0.101). Males had more complex force overall (R<sup>2</sup> = 0.219) and greater 4-8 Hz average power (R<sup>2</sup> = 0.193). The 8-12 Hz average power decreased significantly for individuals with prior loss of consciousness (LOC) and increasing numbers of concussions (R<sup>2</sup> = 0.143). <br><br>CONCLUSION: Individuals exhibited linear decreases in visual-motor tracking force complexity with increasing numbers of concussions, influenced by both gender and a history of LOC. These findings indicate cumulative changes in the ways in which previously concussed individuals process and integrate visual information to guide behaviour.<p /> <p>Language: en</p>",
language="en",
issn="0269-9052",
doi="10.1080/02699052.2018.1444204",
url="http://dx.doi.org/10.1080/02699052.2018.1444204"
}