Literature DB >> 31770721

Pupillary changes after clinically asymptomatic high-acceleration head impacts in high school football athletes.

Jacob R Joseph1, Jennylee S Swallow2, Kylene Willsey3, Andrea A Almeida4, Matthew T Lorincz4, Robert K Fraumann5, Mark E Oppenlander1, Nicholas J Szerlip1, Steven P Broglio2.   

Abstract

OBJECTIVE: Previous studies have shown that clinically asymptomatic high-acceleration head impacts (HHIs) may be associated with neuronal and axonal injury, as measured by advanced imaging and biomarkers. Unfortunately, these methods of measurement are time-consuming, invasive, and costly. A quick noninvasive measurement tool is needed to aid studies of head injury and its biological impact. Quantitative pupillometry is a potential objective, rapid, noninvasive measurement tool that may be used to assess the neurological effects of HHIs. In this study, the authors investigated the effect of HHIs on pupillary metrics, as measured using a pupillometer, in the absence of a diagnosed concussion.
METHODS: A prospective observational cohort study involving 18 high school football athletes was performed. These athletes were monitored for both the frequency and magnitude of head impacts that they sustained throughout a playing season by using the Head Impact Telemetry System. An HHI was defined as an impact exceeding 95g linear acceleration and 3760 rad/sec2 rotational acceleration. Pupillary assessments were performed at baseline, midseason, after occurrence of an HHI, and at the end of the season by using the NeurOptics NPi-200 pupillometer. The Sport Concussion Assessment Tool, 5th Edition (SCAT5), was also used at each time point. Comparisons of data obtained at the various time points were calculated using a repeated-measures analysis of variance and a t-test.
RESULTS: Seven athletes sustained HHIs without a related diagnosed concussion. Following these HHIs, the athletes demonstrated decreases in pupil dilation velocity (mean difference 0.139 mm/sec; p = 0.048), percent change in pupil diameter (mean difference 3.643%; p = 0.002), and maximum constriction velocity (mean difference 0.744 mm/sec; p = 0.010), compared to measurements obtained at the athletes' own midseason evaluations. No significant changes occurred between the SCAT5 subtest scores calculated at midseason and those after a high impact, although the effect sizes (Cohen's d) on individual components ranged from 0.41 to 0.65.
CONCLUSIONS: Measurable changes in pupil response were demonstrated following an HHI. These results suggest that clinically asymptomatic HHIs may affect brain reflex pathways, reflecting a biological injury previously seen when more invasive methods were applied.

Entities:  

Keywords:  ANOVA = analysis of variance; CISG = Concussion in Sports Group; CTE = chronic traumatic encephalopathy; HHI = high-acceleration head impact; HITS = Head Impact Telemetry System; NPi = Neurological Pupil index; QP = quantitative pupillometry; RHI = repetitive head impact; SCAT5 = Sport Concussion Assessment Tool, 5th Edition; SRC = sports-related concussion; accelerometry; concussion; mTBI = mild traumatic brain injury; pediatrics; pupillometry; trauma; traumatic brain injury

Year:  2019        PMID: 31770721     DOI: 10.3171/2019.7.JNS191272

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  8 in total

1.  Fixed, Dilated, and Conversing-Unreactive Pupil With Preserved Consciousness Indicating Acutely Rising Intracranial Pressure due to Traumatic Intraparenchymal Contusions: Case Report and Review of the Literature.

Authors:  Malia McAvoy; Gina Lee; Scott Boop; Madeline E Greil; Kayla A Durler; Christopher C Young; Lindy Craft; Randall M Chesnut; Sarah Wahlster
Journal:  Neurohospitalist       Date:  2021-12-09

2.  Head Impact Research Using Inertial Sensors in Sport: A Systematic Review of Methods, Demographics, and Factors Contributing to Exposure.

Authors:  Enora Le Flao; Gunter P Siegmund; Robert Borotkanics
Journal:  Sports Med       Date:  2021-10-22       Impact factor: 11.136

3.  Identifying Factors Associated with Head Impact Kinematics and Brain Strain in High School American Football via Instrumented Mouthguards.

Authors:  Nicholas J Cecchi; August G Domel; Yuzhe Liu; Michael Zeineh; David B Camarillo; Gerald Grant; Eli Rice; Rong Lu; Xianghao Zhan; Zhou Zhou; Samuel J Raymond; Sohrab Sami; Heer Singh; India Rangel; Landon P Watson; Svein Kleiven
Journal:  Ann Biomed Eng       Date:  2021-09-21       Impact factor: 4.219

4.  Evaluation of two portable pupillometers to assess clinical utility.

Authors:  Rachel Eshima McKay; Michael A Kohn; Elliot S Schwartz; Merlin D Larson
Journal:  Concussion       Date:  2020-10-28

5.  Pre- and post-season visio-vestibular function in healthy adolescent athletes.

Authors:  Patricia R Roby; Kristina B Metzger; Catherine C McDonald; Daniel J Corwin; Colin M Huber; Declan A Patton; Susan S Margulies; Matthew F Grady; Christina L Master; Kristy B Arbogast
Journal:  Phys Sportsmed       Date:  2021-09-21       Impact factor: 2.241

6.  Pilot Study of Smartphone Infrared Pupillography and Pupillometry.

Authors:  Omar Solyman; Mokhtar Mohamed Ibrahim Abushanab; Andrew R Carey; Amanda D Henderson
Journal:  Clin Ophthalmol       Date:  2022-02-08

7.  The use of quantitative pupillometry in patients with pituitary tumors: a technical note.

Authors:  Pavlina Lenga; Martin Jakobs; Jessica Jesser; Philip Dao Trong; Andreas W Unterberg; Christopher Beynon
Journal:  Acta Neurochir (Wien)       Date:  2022-04-21       Impact factor: 2.816

8.  The Expanding Role of Quantitative Pupillometry in the Evaluation and Management of Traumatic Brain Injury.

Authors:  Jason H Boulter; Margaret M Shields; Melissa R Meister; Gregory Murtha; Brian P Curry; Bradley A Dengler
Journal:  Front Neurol       Date:  2021-07-12       Impact factor: 4.003

  8 in total

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