Predictive Factors of Kinematics in Traumatic Brain Injury from Head Impacts Based on Statistical Interpretation
Xianghao Zhan, Yiheng Li, Yuzhe Liu, August G. Domel, Hossein Vahid, Alizadeh, Zhou Zhou, Nicholas J. Cecchi, Samuel J. Raymond, Stephen Tiernan,, Jesse Ruan, Saeed Barbat, Olivier Gevaert, Michael M. Zeineh, Gerald A., Grant, David B. Camarillo

TL;DR
This study analyzes how different rotational kinematic factors predict brain tissue deformation across various impact types, aiming to improve brain injury criteria through data-driven statistical interpretation.
Contribution
It provides a comprehensive data-driven analysis of the predictive power of various rotational kinematic factors for brain injury risk across multiple impact scenarios.
Findings
Angular acceleration and magnitude are the most predictive factors.
Predictive power varies with impact type and impact direction.
Different impact scenarios favor different kinematic predictors.
Abstract
Brain tissue deformation resulting from head impacts is primarily caused by rotation and can lead to traumatic brain injury. To quantify brain injury risk based on measurements of kinematics on the head, finite element (FE) models and various brain injury criteria based on different factors of these kinematics have been developed, but the contribution of different kinematic factors has not been comprehensively analyzed across different types of head impacts in a data-driven manner. To better design brain injury criteria, the predictive power of rotational kinematics factors, which are different in 1) the derivative order (angular velocity, angular acceleration, angular jerk), 2) the direction and 3) the power (e.g., square-rooted, squared, cubic) of the angular velocity, were analyzed based on different datasets including laboratory impacts, American football, mixed martial arts (MMA),…
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Taxonomy
TopicsAutomotive and Human Injury Biomechanics · Traumatic Brain Injury Research · Autopsy Techniques and Outcomes
Methods7 Fastest Ways to Call American Airlines Reservations Number (USA Guide)
