Evaluation of kinematics and injuries to restrained occupants in far-side crashes using full-scale vehicle and human body models MWJ Arun, S Umale, JR Humm, N Yoganandan, P Hadagali, FA Pintar Traffic injury prevention 17 (sup1), 116-123, 2016 | 33 | 2016 |
Morphing the feature-based multi-blocks of normative/healthy vertebral geometries to scoliosis vertebral geometries: development of personalized finite element models P Hadagali, JR Peters, S Balasubramanian Computer methods in biomechanics and biomedical engineering 21 (4), 297-324, 2018 | 26 | 2018 |
Biomechanics of lumbar motion-segments in dynamic compression MWJ Arun, P Hadagali, K Driesslein, W Curry, N Yoganandan, FA Pintar SAE Technical Paper, 2017 | 16 | 2017 |
Subject-specific finite element modeling of the adolescent thoracic spine for scoliosis research P Hadagali Drexel University, 2014 | 11 | 2014 |
Normalized frontal impact biofidelity kinematic corridors using post mortem human surrogates MWJ Arun, P Hadagali, F Pintar, N Yoganandan Journal of the Mechanical Behavior of Biomedical Materials 79, 20-29, 2018 | 6 | 2018 |
Quantifying the Importance of Active Muscle Repositioning a Finite Element Neck Model in Flexion Using Kinematic, Kinetic, and Tissue-Level Responses P Hadagali, SL Fischer, JP Callaghan, DS Cronin Annals of Biomedical Engineering 52 (3), 510-525, 2024 | 4 | 2024 |
Enhancing the biofidelity of an upper cervical spine finite element model within the physiologic range of motion and its effect on the full ligamentous neck model response P Hadagali, DS Cronin Journal of Biomechanical Engineering 145 (1), 011007, 2023 | 3 | 2023 |
Quantification of Upper Cervical Spine Motion Sensitivity to Ligament Laxity Using a Finite Element Human Body Model for Occupant Safety P Hadagali, DS Cronin International Research Council on Biomechanics of Injury, 229-230, 2020 | 2 | 2020 |
Subject-Specific Finite Element Modeling of Thoracic Spine Deformity Using Multi-Block Morphing P Hadagali, J Peters, S Balasubramanian Orthopedic Research Society, 1567, 2014 | 1 | 2014 |
Assessing the Tissue-Level Response and the Risk of Neck Pain in Rotary-Wing Aircrew using a Finite Element Model of the Neck P Hadagali University of Waterloo, 2024 | | 2024 |
Passive Neck muscle Implementation in Finite Element Models Influences Upper Cervical Spine Kinematics in Low-Speed Rear Impacts M Correia, P Hadagali, S McLachlin, D Cronin International Research Council on the Biomechanics of Injury, 849-850, 2023 | | 2023 |
Effect of Rotary-Wing Aircrew Head-Supported Mass in Flexion Position on the Tissue-Level Response of the Neck: A Finite Element Study P Hadagali, JP Callaghan, SL Fischer, DS Cronin Ontario Biomechanics Conference, 2023 | | 2023 |
Anatomical enhancements to the Upper Cervical Spine FE model improved the intervertebral response required for injury assessments in non-neutral neck postures P Hadagali, DS Cronin International Research Council on the Biomechanics of Injury, 890-891, 2022 | | 2022 |
Importance of Muscle-Based Repositioning of a Detailed FE Neck Model in Flexion to Predict Kinematics and Tissue-Level Loading P Hadagali, JP Callaghan, SL Fischer, DS Cronin 9th World Congress of Biomechanics, 2022 | | 2022 |
Quantification of Ligament Contribution for Physiologic Loading in the Upper Cervical Spine Using Detailed FE Model P Hadagali, DS Cronin The 16th Annual Injury Biomechanics Symposium, 2020 | | 2020 |
Parametric Studies on Effects of Three-point Seatbelt on Lower Spine Forces in Frontal Crashes P Hadagali, M Arun, F Pintar, N Yoganandan, R Rudd 45th NHTSA Workshop on Human Subjects for Biomechanical Research, 2017 | | 2017 |
Influence of Seatbelt on Lower Spine Forces in Frontal Crash: A Numerical Study using GHBMC M50-OS P Hadagali, N Yoganandan, F Pintar, M Arun GHBMC Users' Workshop, 2017 | | 2017 |
Preliminary Investigation of Thoracolumbar Loads under Frontal Crashes using a Human Finite Element Model M Arun, P Hadagali, N Yoganandan, F Pintar 43rd NHTSA Workshop on Human Subjects for Biomechanical Research, 2015 | | 2015 |
Patient specific finite element models for the spine and ribcage to investigate scoliosis correction devices P Hadagali J Bioengineer and Biomedical Sci 5 (1), 2015 | | 2015 |
Kinematic Comparison of the Osteo-ligamentous Adolescent Idiopathic Scoliosis Spine with the Normative: A Finite Element Modeling Study P Hadagali, A Belwadi, JP Dougherty, S Balasubramanian Orthopedic Research Society, 1543, 2015 | | 2015 |