Machine-learning-based head impact subtyping based on the spectral densities of the measurable head kinematics
Xianghao Zhan, Yiheng Li, Yuzhe Liu, Nicholas J. Cecchi, Samuel J., Raymond, Zhou Zhou, Hossein Vahid Alizadeh, Jesse Ruan, Saeed Barbat, Stephen, Tiernan, Olivier Gevaert, Michael M. Zeineh, Gerald A. Grant, David B., Camarillo

TL;DR
This study develops a machine learning classifier using spectral densities of head kinematics to accurately identify impact types, enhancing understanding and evaluation of brain injury risks across various impact scenarios.
Contribution
The paper introduces a novel spectral density-based classifier that distinguishes impact types with high accuracy and improves brain strain modeling by incorporating impact classification.
Findings
Median classification accuracy of 96% across impact types.
Spectral density features differ significantly among impact types.
Type-specific regression models outperform baseline models.
Abstract
Objective: Traumatic brain injury can be caused by head impacts, but many brain injury risk estimation models are not equally accurate across the variety of impacts that patients may undergo and the characteristics of different types of impacts are not well studied. We investigated the spectral characteristics of different head impact types with kinematics classification. Methods: Data was analyzed from 3,262 head impacts from lab reconstruction, American football, mixed martial arts, and publicly available car crash data. A random forest classifier with spectral densities of linear acceleration and angular velocity was built to classify head impact types (e.g., football, car crash, mixed martial arts). To test the classifier robustness, another 271 lab-reconstructed impacts were obtained from 5 other instrumented mouthguards. Finally, with the classifier, type-specific,…
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Taxonomy
TopicsAutopsy Techniques and Outcomes · Traumatic Brain Injury Research · Radiation Dose and Imaging
Methods7 Fastest Ways to Call American Airlines Reservations Number (USA Guide)
