Skip to content

Journal article · 2025

Balancing efficiency and accuracy: Extreme gradient boosting and neural networks for near real-time brain deformation prediction in sports collisions

Emily Yik Kwan Chan, Xiancheng Yu, Chen Qin, Mazdak Ghajari

Engineering Applications of Artificial Intelligence, 2025

Abstract

Rapid head motion during sports collisions can cause traumatic brain injury. Head motion can be measured with instrumented mouthguards and fed into finite element (FE) models to predict brain strain, a measure of brain deformation and injury. Due to the computational cost of FE models, deep neural networks have been developed for near real-time prediction. However, they are not used in pitch-side assessments due to their complexity and reliance on full kinematic data, which cannot be reliably transmitted in real-time. We propose an extreme gradient boosting (XGBoost) model with simple input of two kinematic features. Its accuracy and efficiency were compared with two deep learning models: a multilayer perceptron (MLP) using 20 features, and a convolutional neural network (CNN) using entire kinematics. All models were trained on 1701 rugby impacts collected with mouthguards and simulated using the Imperial brain FE model. The XGBoost model predicted strain in key brain regions, while the deep learning models predicted whole-brain strain distributions. All models showed reasonable accuracy in predicting regional strain, with R 2 values 0.764–0.851 for XGBoost, 0.721–0.876 for MLP,…

Cite as (BibTeX)

@article{chan-2025-balancing-efficiency-and-accuracy,
  title={Balancing efficiency and accuracy: Extreme gradient boosting and neural networks for near real-time brain deformation prediction in sports collisions},
  author={Emily Yik Kwan Chan and Xiancheng Yu and Chen Qin and Mazdak Ghajari},
  journal={Engineering Applications of Artificial Intelligence},
  year={2025},
  doi={10.1016/j.engappai.2025.112489}
}

Related

Other work along the same lines.

Work with us

If you want to study with us, collaborate with us, or use our facilities, get in touch.