Literature DB >> 32947610

Perceptions of Secondary School Athletic Trainers in the Diagnosis of Exertional Heat Stroke.

Danyale R McLean1, Samantha E Scarneo-Miller2, Rebecca M Lopez1.   

Abstract

CONTEXT: Health care providers, including athletic trainers (ATs), may not be using the best practices for diagnosing exertional heat stroke (EHS), including rectal thermometry. Therefore, patients continue to be susceptible to death from EHS.
OBJECTIVE: To examine the health belief model and its association with using rectal thermometry as the best practice for diagnosing EHS.
DESIGN: Cross-sectional study.
SETTING: Web-based survey. PATIENTS OR OTHER PARTICIPANTS: A total of 208 secondary school ATs completed an online survey, and the data of 159 were included in the analysis. MAIN OUTCOME MEASURE(S): The survey contained 2 primary sections: AT characteristics and health belief model structured questions assessing perceptions and techniques used to diagnose EHS. Answers to the latter questions were rated on a 5-point Likert scale. We performed a binary logistic regression to ascertain the effects of the health belief model constants (eg, perceived susceptibility, barriers), age, sex, and the type of school at which the AT worked on the likelihood that participants would use best practice for diagnosing patients with EHS.
RESULTS: Only 33.3% (n = 53) of the participating ATs reported they used best practice, including rectal thermometers to obtain core body temperature. The binary logistic regression was different for the 5 constructs: perceived susceptibility (\(\def\upalpha{\unicode[Times]{x3B1}}\)\(\def\upbeta{\unicode[Times]{x3B2}}\)\(\def\upgamma{\unicode[Times]{x3B3}}\)\(\def\updelta{\unicode[Times]{x3B4}}\)\(\def\upvarepsilon{\unicode[Times]{x3B5}}\)\(\def\upzeta{\unicode[Times]{x3B6}}\)\(\def\upeta{\unicode[Times]{x3B7}}\)\(\def\uptheta{\unicode[Times]{x3B8}}\)\(\def\upiota{\unicode[Times]{x3B9}}\)\(\def\upkappa{\unicode[Times]{x3BA}}\)\(\def\uplambda{\unicode[Times]{x3BB}}\)\(\def\upmu{\unicode[Times]{x3BC}}\)\(\def\upnu{\unicode[Times]{x3BD}}\)\(\def\upxi{\unicode[Times]{x3BE}}\)\(\def\upomicron{\unicode[Times]{x3BF}}\)\(\def\uppi{\unicode[Times]{x3C0}}\)\(\def\uprho{\unicode[Times]{x3C1}}\)\(\def\upsigma{\unicode[Times]{x3C3}}\)\(\def\uptau{\unicode[Times]{x3C4}}\)\(\def\upupsilon{\unicode[Times]{x3C5}}\)\(\def\upphi{\unicode[Times]{x3C6}}\)\(\def\upchi{\unicode[Times]{x3C7}}\)\(\def\uppsy{\unicode[Times]{x3C8}}\)\(\def\upomega{\unicode[Times]{x3C9}}\)\(\def\bialpha{\boldsymbol{\alpha}}\)\(\def\bibeta{\boldsymbol{\beta}}\)\(\def\bigamma{\boldsymbol{\gamma}}\)\(\def\bidelta{\boldsymbol{\delta}}\)\(\def\bivarepsilon{\boldsymbol{\varepsilon}}\)\(\def\bizeta{\boldsymbol{\zeta}}\)\(\def\bieta{\boldsymbol{\eta}}\)\(\def\bitheta{\boldsymbol{\theta}}\)\(\def\biiota{\boldsymbol{\iota}}\)\(\def\bikappa{\boldsymbol{\kappa}}\)\(\def\bilambda{\boldsymbol{\lambda}}\)\(\def\bimu{\boldsymbol{\mu}}\)\(\def\binu{\boldsymbol{\nu}}\)\(\def\bixi{\boldsymbol{\xi}}\)\(\def\biomicron{\boldsymbol{\micron}}\)\(\def\bipi{\boldsymbol{\pi}}\)\(\def\birho{\boldsymbol{\rho}}\)\(\def\bisigma{\boldsymbol{\sigma}}\)\(\def\bitau{\boldsymbol{\tau}}\)\(\def\biupsilon{\boldsymbol{\upsilon}}\)\(\def\biphi{\boldsymbol{\phi}}\)\(\def\bichi{\boldsymbol{\chi}}\)\(\def\bipsy{\boldsymbol{\psy}}\)\(\def\biomega{\boldsymbol{\omega}}\)\(\def\bupalpha{\bf{\alpha}}\)\(\def\bupbeta{\bf{\beta}}\)\(\def\bupgamma{\bf{\gamma}}\)\(\def\bupdelta{\bf{\delta}}\)\(\def\bupvarepsilon{\bf{\varepsilon}}\)\(\def\bupzeta{\bf{\zeta}}\)\(\def\bupeta{\bf{\eta}}\)\(\def\buptheta{\bf{\theta}}\)\(\def\bupiota{\bf{\iota}}\)\(\def\bupkappa{\bf{\kappa}}\)\(\def\buplambda{\bf{\lambda}}\)\(\def\bupmu{\bf{\mu}}\)\(\def\bupnu{\bf{\nu}}\)\(\def\bupxi{\bf{\xi}}\)\(\def\bupomicron{\bf{\micron}}\)\(\def\buppi{\bf{\pi}}\)\(\def\buprho{\bf{\rho}}\)\(\def\bupsigma{\bf{\sigma}}\)\(\def\buptau{\bf{\tau}}\)\(\def\bupupsilon{\bf{\upsilon}}\)\(\def\bupphi{\bf{\phi}}\)\(\def\bupchi{\bf{\chi}}\)\(\def\buppsy{\bf{\psy}}\)\(\def\bupomega{\bf{\omega}}\)\(\def\bGamma{\bf{\Gamma}}\)\(\def\bDelta{\bf{\Delta}}\)\(\def\bTheta{\bf{\Theta}}\)\(\def\bLambda{\bf{\Lambda}}\)\(\def\bXi{\bf{\Xi}}\)\(\def\bPi{\bf{\Pi}}\)\(\def\bSigma{\bf{\Sigma}}\)\(\def\bPhi{\bf{\Phi}}\)\(\def\bPsi{\bf{\Psi}}\)\(\def\bOmega{\bf{\Omega}}\)\(\chi _6^2\) = 22.30, P = .001), perceived benefits (\(\chi _6^2\) = 71.79, P < .001), perceived barriers (\(\chi _6^2\) = 111.22, P < .001), perceived severity (\(\chi _6^2\) = 56.27, P < .001), and self-efficacy (\(\chi _6^2\) = 64.84, P < .001). Analysis of these data showed that older ATs were at greater odds (P ≤ .02) of performing best practice.
CONCLUSIONS: These data suggested that the health belief model constructs were associated with the performance of best practice, including using rectal thermometry to diagnose EHS. Researchers should aim to create tailored interventions based on health behavior to improve the adoption of best practice. © by the National Athletic Trainers' Association, Inc.

Entities:  

Keywords:  health belief model; heat illnesses; high school; rectal thermometry

Mesh:

Year:  2020        PMID: 32947610      PMCID: PMC7594610          DOI: 10.4085/1062-6050-0247.19

Source DB:  PubMed          Journal:  J Athl Train        ISSN: 1062-6050            Impact factor:   2.860


  21 in total

1.  National Athletic Trainers' Association Position Statement: Exertional Heat Illnesses.

Authors:  Helen M Binkley; Joseph Beckett; Douglas J Casa; Douglas M Kleiner; Paul E Plummer
Journal:  J Athl Train       Date:  2002-09       Impact factor: 2.860

2.  National Athletic Trainers' Association Position Statement: Exertional Heat Illnesses.

Authors:  Douglas J Casa; Julie K DeMartini; Michael F Bergeron; Dave Csillan; E Randy Eichner; Rebecca M Lopez; Michael S Ferrara; Kevin C Miller; Francis O'Connor; Michael N Sawka; Susan W Yeargin
Journal:  J Athl Train       Date:  2015-09       Impact factor: 2.860

3.  Health Belief Model Scale and Theory of Planned Behavior Scale to assess attitudes and perceptions of injury prevention program participation: An exploratory factor analysis.

Authors:  Emily H Gabriel; Matthew C Hoch; Robert J Cramer
Journal:  J Sci Med Sport       Date:  2018-11-16       Impact factor: 4.319

4.  Emergency Action Planning in Secondary School Athletics: A Comprehensive Evaluation of Current Adoption of Best Practice Standards.

Authors:  Samantha E Scarneo; Lindsay J DiStefano; Rebecca L Stearns; Johna K Register-Mihalik; Craig R Denegar; Douglas J Casa
Journal:  J Athl Train       Date:  2019-01-24       Impact factor: 2.860

5.  Current knowledge, attitudes, and practices of certified athletic trainers regarding recognition and treatment of exertional heat stroke.

Authors:  Stephanie M Mazerolle; Ian C Scruggs; Douglas J Casa; Laura J Burton; Brendon P McDermott; Lawrence E Armstrong; Carl M Maresh
Journal:  J Athl Train       Date:  2010 Mar-Apr       Impact factor: 2.860

6.  Effectiveness of cold water immersion in the treatment of exertional heat stroke at the Falmouth Road Race.

Authors:  Julie K Demartini; Douglas J Casa; Rebecca Stearns; Luke Belval; Arthur Crago; Rob Davis; John Jardine
Journal:  Med Sci Sports Exerc       Date:  2015-02       Impact factor: 5.411

Review 7.  Exertional heat stroke: new concepts regarding cause and care.

Authors:  Douglas J Casa; Lawrence E Armstrong; Glen P Kenny; Francis G O'Connor; Robert A Huggins
Journal:  Curr Sports Med Rep       Date:  2012 May-Jun       Impact factor: 1.733

8.  Validity of devices that assess body temperature during outdoor exercise in the heat.

Authors:  Douglas J Casa; Shannon M Becker; Matthew S Ganio; Christopher M Brown; Susan W Yeargin; Melissa W Roti; Jason Siegler; Julie A Blowers; Neal R Glaviano; Robert A Huggins; Lawrence E Armstrong; Carl M Maresh
Journal:  J Athl Train       Date:  2007 Jul-Sep       Impact factor: 2.860

9.  Evaluation of breast self-examination program using Health Belief Model in female students.

Authors:  Mitra Moodi; Mahdi Baladi Mood; Gholam Reza Sharifirad; Hossein Shahnazi; Gholamreza Sharifzadeh
Journal:  J Res Med Sci       Date:  2011-03       Impact factor: 1.852

10.  The application of the health belief model in oral health education.

Authors:  M Solhi; D Shojaei Zadeh; B Seraj; S Faghih Zadeh
Journal:  Iran J Public Health       Date:  2010-12-31       Impact factor: 1.429

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  2 in total

1.  Proper Recognition and Management of Exertional Heat Stroke in a High School Cross-Country Runner: A Validation Clinical Case Report.

Authors:  Bryanna Garrett; Rebecca M Lopez; Michael R Szymanski; Drew Eidt
Journal:  J Athl Train       Date:  2022-06-01       Impact factor: 3.824

2.  High Schools' Adoption of Evidence-Based Practices for the Management of Exertional Heat Stroke.

Authors:  Samantha E Scarneo-Miller; Rebecca M Lopez; Kevin C Miller; William M Adams; Zachary Y Kerr; Douglas J Casa
Journal:  J Athl Train       Date:  2021-10-01       Impact factor: 3.824

  2 in total

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