Personalization of human body models and beyond via image registration

Author:

Li Xiaogai,Yuan Qiantailang,Lindgren Natalia,Huang Qi,Fahlstedt Madelen,Östh Jonas,Pipkorn Bengt,Jakobsson Lotta,Kleiven Svein

Abstract

Finite element human body models (HBMs) are becoming increasingly important numerical tools for traffic safety. Developing a validated and reliable HBM from the start requires integrated efforts and continues to be a challenging task. Mesh morphing is an efficient technique to generate personalized HBMs accounting for individual anatomy once a baseline model has been developed. This study presents a new image registration–based mesh morphing method to generate personalized HBMs. The method is demonstrated by morphing four baseline HBMs (SAFER, THUMS, and VIVA+ in both seated and standing postures) into ten subjects with varying heights, body mass indices (BMIs), and sex. The resulting personalized HBMs show comparable element quality to the baseline models. This method enables the comparison of HBMs by morphing them into the same subject, eliminating geometric differences. The method also shows superior geometry correction capabilities, which facilitates converting a seated HBM to a standing one, combined with additional positioning tools. Furthermore, this method can be extended to personalize other models, and the feasibility of morphing vehicle models has been illustrated. In conclusion, this new image registration–based mesh morphing method allows rapid and robust personalization of HBMs, facilitating personalized simulations.

Publisher

Frontiers Media SA

Subject

Biomedical Engineering,Histology,Bioengineering,Biotechnology

Reference66 articles.

1. Development and performance of the PIPER scalable child human body models;Beillas,2016

2. 'An investigation of human body model morphing for the assessment of abdomen responses to impact against a population of test subjects;Beillas;Traffic Inj. Prev.,2017

3. 'Keep it SMPL: Automatic estimation of 3D human pose and shape from a single image;Bogo;Comput. Vis. Eccv.,2016

4. 'Effects of restraint parameters using PIPER 6y in reclined seating during frontal impact;Bohman;Traffic Inj. Prev.,2022

5. Methodology to measure seat belt fit in relation to skeletal geometry using an upright open MRI;Booth;Traffic Inj. Prev.,2022

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