Relationships Among Baseline Concussion Balance Test and Gaze Stability Test Scores in Division-I Collegiate Athletes

Author:

Quintana Carolina P.1ORCID,Olson Anne D.2ORCID,Heebner Nicholas R.3ORCID,Hoch Matthew C.3ORCID

Affiliation:

1. Department of Physical Therapy, Rehabilitation Sciences, and Athletic Training, School of Health Professions, The University of Kansas Medical Center, Kansas City, KS, USA

2. Department of Communication Sciences and Disorders, College of Health Sciences, University of Kentucky, Lexington, KY, USA

3. Department of Rehabilitation Sciences, Sports Medicine Research Institute, College of Health Sciences, University of Kentucky, Lexington, KY, USA

Abstract

Context: Sports-related concussions are commonly occurring injuries as a result of sports and recreation that may cause alterations in brain functioning. It is important to be able to evaluate the impact of these injuries on function to manage the injury recovery and ensure recovery. Recent literature suggests the use of objective evaluation strategies in a multifaceted approach to evaluate and manage these injuries. It is important to understand the relationships between the assessments and how best to utilize each assessment. The purpose of this study was to investigate if relationships exist between measures of vestibular function at baseline in assessments that may be used following sports-related concussions. Additionally, a secondary purpose was to determine if self-reported symptoms were related to performance on the assessments. This study aimed to identify if these assessments measured independent functions of the vestibulo–ocular reflex or if some redundancy existed among the assessment strategies. Design: A cross-sectional study design was used in a cohort of collegiate athletes ages 18–24. Methods: Participants completed demographics questionnaires, the Post-Concussion Symptom Scale, Gaze Stabilization Test, and Concussion Balance Test. Spearman rho correlations were used to examine the relationships between the measures. Results: One hundred and thirty-five collegiate athletes (82 males and 53 females) were included, representative of 3 sports (cheerleading, soccer, and football) with a mean age of 19.77 (1.42) years old. There were weak to moderate, significant relationships between measures of Gaze Stabilization Test and Concussion Balance Test errors (r = .20–.31, P = .001–.03). Conclusions: The direction of these relationships indicated that greater Concussion Balance Test errors were associated with greater Gaze Stabilization Test performance. These relationships may be attributed to the difficulty created by the foam conditions and the integration of more complex sensory tasks required to maintain balance during the more difficult conditions.

Publisher

Human Kinetics

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