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@Article{Nwotchouang2021AccuracyStudy,
author = {Nwotchouang, Blaise Simplice Talla and Eppelheimer, Maggie S. and Biswas, Dipankar and Pahlavian, Soroush Heidari and Zhong, Xiaodong and Oshinski, John N. and Barrow, Daniel L. and Amini, Rouzbeh and Loth, Francis},
journal = {Magnetic Resonance in Medicine},
title = {Accuracy of cardiac‐induced brain motion measurement using displacement‐encoding with stimulated echoes ({DENSE}) magnetic resonance imaging ({MRI}): {a} phantom study},
year = {2021},
issn = {0740-3194},
month = mar,
number = {3},
pages = {1237--1247},
volume = {85},
doi = {10/g88tdd},
}
@Article{Thomas2019AMicrostructure,
author = {Thomas, Vineet S. and Lai, Victor and Amini, Rouzbeh},
journal = {Acta Biomaterialia},
title = {A computational multi-scale approach to investigate mechanically-induced changes in tricuspid valve anterior leaflet microstructure},
year = {2019},
issn = {1742-7061},
month = aug,
pages = {524--535},
volume = {94},
doi = {10/g88tdf},
}
@Article{Clarin2023MechanicalStudies,
author = {Clarin, Julia and Dang, Dominique and Santos, Lucas and Amini, Rouzbeh},
journal = {{ASME} Open Journal of Engineering},
title = {Mechanical Characterization of Porcine Tricuspid Valve Anterior Leaflets Over Time: {a}pplications to Ex Vivo Studies},
year = {2023},
issn = {2770-3495},
month = jan,
volume = {2},
doi = {10/g88tdg},
}
@Article{Sebastian2024MetaAbstracts,
author = {Sebastian, Frederick and Vargas, Ana I. and Clarin, Julia and Hurgoi, Anthony and Amini, Rouzbeh},
journal = {Journal of Biomechanical Engineering},
title = {Meta Data Analysis of Sex Distribution of Study Samples Reported in Summer Biomechanics, Bioengineering, and Biotransport Annual Conference Abstracts},
year = {2024},
issn = {0148-0731},
month = jun,
number = {6},
volume = {146},
doi = {10/g88tdh},
}
@Article{Vargas2023BiomechanicalPregnancy,
author = {Vargas, Ana I. and Tarraf, Samar A. and Fitzgibbons, Timothy P. and Bellini, Chiara and Amini, Rouzbeh},
journal = {Current Research in Physiology},
title = {Biomechanical remodeling of the murine descending thoracic aorta during late-gestation pregnancy},
year = {2023},
issn = {2665-9441},
month = jul,
pages = {100102},
doi = {10/g88tdj},
}
@Article{Vargas2024VascularAorta,
author = {Vargas, Ana I. and Tarraf, Samar A. and Jennings, Turner and Bellini, Chiara and Amini, Rouzbeh},
journal = {Journal of Biomechanical Engineering},
title = {Vascular Remodeling During Late-Gestation Pregnancy: {a}n In-Vitro Assessment of the Murine Ascending Thoracic Aorta},
year = {2024},
issn = {0148-0731},
month = jul,
number = {7},
volume = {146},
doi = {10/g88tdk},
}
@Article{Pakzadmanesh2024MechanicallySimulation,
author = {Pakzadmanesh, Mina and Salinas, Samuel D. and Thomas, Vineet S. and Jennings, Turner and DelCiello, Hayden and Vargas, Ana I. and Clarin, Julia and Amini, Rouzbeh},
journal = {{ASME} Open Journal of Engineering},
title = {Mechanically Induced Deformation of Nuclei in the Tricuspid Valve Interstitial Cells: {e}xperimental Measurements and Multi-Scale Computational Simulation},
year = {2024},
issn = {2770-3495},
month = aug,
pages = {031023},
volume = {3},
doi = {10/g88tdm},
}
@Article{Jennings2024In-SilicoShell,
author = {Jennings, Turner and Amini, Rouzbeh and Müftü, Sinan},
journal = {{ASME} Open Journal of Engineering},
title = {In-Silico Model Validation of Impact on a Composite Helmet Shell},
year = {2024},
issn = {2770-3495},
month = jan,
volume = {3},
doi = {10/g88s98},
}
@Article{Jennings2025MeasurementForces,
author = {Jennings, Turner and Tillman, Aidan and Mukasa, D'mitra and Marchev, Michael and Muftu, Sinan and Amini, Rouzbeh},
journal = {Annals of Biomedical Engineering},
title = {Measurement and Assessment of Head-To-Helmet Contact Forces},
year = {2025},
doi = {10/g88tcp},
publisher = {Springer Nature},
}
@article{Sebastian2025ImagebasedDisease,
author = {Sebastian, Frederick and DelCiello, Hayden and Pant, Anup D. and Girard, Michaël J. A. and Pathak-Ray, Vanita and Dorairaj, Syril K. and Amini, Rouzbeh},
title = {Image-Based Inverse Modeling Analysis of Iris Stiffness Across Sex in Patients With a History of Primary Angle-Closure Disease},
journal = {ASME Open Journal of Engineering},
volume = {4},
pages = {041013},
year = {2025},
month = {06},
abstract = {In this study, we quantified differences in iris stiffness between female and male subjects in healthy and postlaser peripheral iridotomy (post-LPI) groups using an image-based inverse modeling approach. We analyzed anterior segment optical coherence tomography (AS-OCT) images from 25 participants across four groups. Finite element models were created using **solidworks, **abaqus, and a custom C program, modeling the iris as a neo-Hookean material. We found that post-LPI females had significantly higher normalized elastic modulus (E′=3.81±1.74) than healthy females (E′=0.92±0.31,p=0.004), while no significant difference was observed in males. Post-LPI females also showed significantly higher stiffness than post-LPI males (p=0.003). Here, p denotes the probability value, with p\<0.05 considered statistically significant. Our findings suggest that sex-based differences in iris biomechanics may contribute to the higher susceptibility of females to primary angle-closure disease. Despite the small sample size, this preliminary study highlights the need for larger, sex-stratified investigations into glaucoma pathophysiology.},
issn = {2770-3495},
doi = {10.1115/1.4068677},
url = {https://doi.org/10.1115/1.4068677},
eprint = {https://asmedigitalcollection.asme.org/openengineering/article-pdf/doi/10.1115/1.4068677/7509345/aoje-25-1035.pdf},
}