Dr. Mary J. Kelley
Casey EyeInstitute
Oregon Health & Science University, USA
Associate Professor
Email: [email protected]
Qualifications
1994 Ph.D., Biochemistry and Molecular Biology, Oregon Health & Science University
1972 Master of Science (M.Sc.), Physiology (Endocrinology Specialty), State University
1969 Bachelor of Science (B.Sc.), Louisiana State University
Publications (Selected)
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Karimi, A., Aga, M., Stanik, A., Franca, C., Siadat, S. M., White, E., ... & Acott, T. (2025). Matrix stiffness regulates traction forces, cytoskeletal dynamics, and collagen reorganization in trabecular meshwork cells in glaucoma. Matter.
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Karimi, A., Razaghi, R., Stanik, A., D'costa, S. D., Mirafzal, I., Kelley, M. J., ... & Gong, H. (2025). High-resolution modeling of aqueous humor dynamics in the conventional outflow pathway of a normal human donor eye. Computer Methods and Programs in Biomedicine, 260, 108538.
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Karimi, A., Aga, M., Khan, T., D'costa, S. D., Thaware, O., White, E., ... & Acott, T. S. (2024). Comparative analysis of traction forces in normal and glaucomatous trabecular meshwork cells within a 3D, active fluid-structure interaction culture environment. Acta Biomaterialia, 180, 206-229.
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Karimi, A., Aga, M., Khan, T., D'costa, S. D., Cardenas-Riumallo, S., Zelenitz, M., ... & Acott, T. S. (2024). Dynamic traction force in trabecular meshwork cells: A 2D culture model for normal and glaucomatous states. Acta biomaterialia, 175, 138-156.
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Karimi, A., Khan, S., Razaghi, R., Aga, M., Rahmati, S. M., White, E., ... & Acott, T. S. (2024). Segmental biomechanics of the normal and glaucomatous human aqueous outflow pathway. Acta biomaterialia, 173, 148-166.
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Karimi, A., Razaghi, R., D'costa, S. D., Torbati, S., Ebrahimi, S., Rahmati, S. M., ... & Gong, H. (2024). Implementing new computational methods for the study of JCT and SC inner wall basement membrane biomechanics and hydrodynamics. Computer methods and programs in biomedicine, 243, 107909.
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Karimi, A., Razaghi, R., Kelley, M. J., Acott, T. S., & Gong, H. (2023). Biomechanics of the JCT and SC inner wall endothelial cells with their basement membrane using 3D serial block-face scanning electron microscopy. Bioengineering, 10(9), 1038.
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Karimi, A., Khan, S., Razaghi, R., Rahmati, S. M., Gathara, M., Tudisco, E., ... & Acott, T. S. (2023). Developing an experimental-computational workflow to study the biomechanics of the human conventional aqueous outflow pathway. Acta biomaterialia, 164, 346-362.
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Karimi, A., Crouch, D. J., Razaghi, R., Downs, J. C., Acott, T. S., Kelley, M. J., ... & Sheridan, C. M. (2023). Morphological and biomechanical analyses of the human healthy and glaucomatous aqueous outflow pathway: imaging-to-modeling. Computer methods and programs in biomedicine, 236, 107485.
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Karimi, A., Razaghi, R., Rahmati, S. M., Downs, J. C., Acott, T. S., Kelley, M. J., ... & Johnstone, M. (2022). The effect of intraocular pressure load boundary on the biomechanics of the human conventional aqueous outflow pathway. Bioengineering, 9(11), 672.
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Acott, T. S., Vranka, J. A., Keller, K. E., Raghunathan, V., & Kelley, M. J. (2021). Normal and glaucomatous outflow regulation. Progress in retinal and eye research, 82, 100897.
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Li, X., Acott, T. S., Nagy, J. I., & Kelley, M. J. (2020). ZO-1 associates with α3 integrin and connexin43 in trabecular meshwork and Schlemm’s canal cells. International Journal of Physiology, Pathophysiology and Pharmacology, 12(1), 1.
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Keller, K. E., Bhattacharya, S. K., Borrás, T., Brunner, T. M., Chansangpetch, S., Clark, A. F., ... & Stamer, W. D. (2018). Consensus recommendations for trabecular meshwork cell isolation, characterization and culture. Experimental eye research, 171, 164-173.
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Acott, T. S., Kelley, M. J., Keller, K. E., Vranka, J. A., Abu-Hassan, D. W., Li, X., ... & Bradley, J. M. (2016). IOP Homeostasis-Why most people do not ever develop glaucoma. Glaucoma research and clinical advances, 2018, 87-98.
Profile Details
https://orcid.org/0000-0002-0372-5096
https://www.ohsu.edu/people/mary-j-kelley
https://scholar.google.com/citations?user=jZKC74UAAAAJ&hl=en
https://www.researchgate.net/profile/Mary-Kelley-14