Combining the finite element method with structural connectome-based analysis for modeling neurotrauma: connectome neurotrauma mechanics RH Kraft, PJ Mckee, AM Dagro, ST Grafton Public Library of Science 8 (8), e1002619, 2012 | 106 | 2012 |
Computational modeling investigation of pulsed high peak power microwaves and the potential for traumatic brain injury AM Dagro, JW Wilkerson, TP Thomas, BT Kalinosky, JA Payne Science advances 7 (44), eabd8405, 2021 | 25 | 2021 |
Numerical Study of Head/helmet interaction due to blast loading TG Zhang, SS Satapathy, AM Dagro, PJ McKee ASME International Mechanical Engineering Congress and Exposition 56215 …, 2013 | 20 | 2013 |
A preliminary investigation of traumatically induced axonal injury in a three-dimensional (3-D) finite element model (FEM) of the human head during blast-loading AM Dagro, PJ McKee, RH Kraft, TG Zhang, SS Satapathy DTIC Document, 2013 | 11 | 2013 |
Design and implementation of a numerical technique to inform anisotropic hyperelastic finite element models using diffusion-weighted imaging RH Kraft, AM Dagro ARMY RESEARCH LAB ABERDEEN PROVING GROUND MD WEAPONS AND MATERIALS RESEARCH, 2011 | 11 | 2011 |
A computational investigation of strain concentration in the brain in response to a rapid temperature rise A Dagro, J Wilkerson Journal of the Mechanical Behavior of Biomedical Materials 115, 104228, 2021 | 10 | 2021 |
Nonlinear contact mechanics for the indentation of hyperelastic cylindrical bodies AM Dagro, KT Ramesh Mechanics of Soft Materials 1 (1), 7, 2019 | 10 | 2019 |
Nonlinearity of the coefficient of thermal expansion in brain tissue AM Dagro, H Li, AM DiLeonardi, JD Hogan Journal of the Mechanical Behavior of Biomedical Materials 123, 104779, 2021 | 6 | 2021 |
Quantifying the local mechanical properties of cells in a fibrous three-dimensional microenvironment A Dagro, L Rajbhandari, S Orrego, SH Kang, A Venkatesan, KT Ramesh Biophysical journal 117 (5), 817-828, 2019 | 6 | 2019 |
Brain structure-function couplings (FY11) J Vettel, A Dagro, S Gordon, S Kerick, R Kraft, S Luo, S Rawal, M Vindiola, ... US Dept. Army, Army Res. Lab., Aberdeen Proving Ground, Aberdeen, MD, USA …, 2012 | 6 | 2012 |
A comparison of conventional gel stiffness characterization techniques with cavitation rheology Y Ji, AM Dagro, G Dorgant, D Starr, JW Wilkerson Experimental Mechanics 62 (5), 799-812, 2022 | 5 | 2022 |
A mechanism for injury through cerebral arteriole inflation AM Dagro, KT Ramesh Biomechanics and modeling in mechanobiology 18, 651-663, 2019 | 2 | 2019 |
Scientific Accomplishments for ARL Brain Structure-Function Couplings Research on Large-Scale Brain Networks from FY11–FY13 (DSI Final Report) JM Vettel, PJ McKee, A Dagro, M Vindiola, A Yu, K McDowell, ... DSI Final Report ARL-TR-6871. Aberdeen Proving Ground, MD: US Army Research …, 2014 | 2 | 2014 |
Brain Structure-Function Couplings: Year 2 Accomplishments and Programmatic Plans J Vettel, M Vindiola, A Dagro, PJ McKee, RH Kraft, K McDowell, ... Army Research Laboratory, 2013 | 2 | 2013 |
Combining the Finite Element Method with Structural Network-Based Analysis for Modeling Neurotrama RH Kraft, AM Dagro, PJ McKee, S Grafton, JM Vettel, K McDowell, ... 11 th International Symposium, Computer Methods in Biomechanics and …, 2013 | 1 | 2013 |
Fiber Segment-Based Degradation Methods for a Finite Element-Informed Structural Brain Network PJ McKee, A Dagro, M Vindiola, JM Vettel ARL-TR-6739, 0 | 1 | |
On the Cover: A Comparison of Conventional Gel Stiffness Characterization Techniques with Cavitation Rheology Y Ji, AM Dagro, G Dorgant, D Starr, JW Wilkerson EXPERIMENTAL MECHANICS 62 (5), 729-729, 2022 | | 2022 |
Mechanical properties of glial cells AM Dagro The Johns Hopkins University, 2019 | | 2019 |