Alan Jay Grodzinsky

Affiliations: 
Massachusetts Institute of Technology, Cambridge, MA, United States 
Website:
https://be.mit.edu/directory/alan-j-grodzinsky
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"Alan Jay Grodzinsky"
Bio:

Grodzinsky, Alan Jay Electromechanics of deformable polyelectrolyte membranes. Massachusetts Institute of Technology. Dept. of Electrical Engineering. Thesis. 1974.

Parents

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James Russell Melcher grad student 1974 MIT
 (Electromechanics of deformable polyelectrolyte membranes.)

Children

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Lawrence Bonassar grad student (Biomechanics Tree)
Mark Bathe grad student 2001-2004 MIT (Chemistry Tree)
Hadi T. Nia grad student 2010-2013 MIT (Biomechanics Tree)
Brianne K Connizzo post-doc 2016- MIT (Biomechanics Tree)
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Publications

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Connizzo BK, Grodzinsky AJ. (2019) Lose-Dose Administration of Dexamethasone is Beneficial in Preventing Secondary Tendon Damage in a Stress-Deprived Joint Injury Explant Model. Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society
Connizzo BK, Piet JM, Shefelbine SJ, et al. (2019) Age-associated changes in the response of tendon explants to stress deprivation is sex-dependent. Connective Tissue Research. 1-15
Liebesny PH, Mroszczyk KA, Zlotnick HM, et al. (2019) Enzyme pretreatment plus locally delivered HB-IGF-1 stimulates integrative cartilage repair in vitro. Tissue Engineering. Part A
Seano G, Nia HT, Emblem KE, et al. (2019) Solid stress in brain tumours causes neuronal loss and neurological dysfunction and can be reversed by lithium. Nature Biomedical Engineering. 3: 230-245
Sellon JB, Azadi M, Oftadeh R, et al. (2019) Nanoscale Poroelasticity of the Tectorial Membrane Determines Hair Bundle Deflections. Physical Review Letters. 122: 028101
Connizzo BK, Grodzinsky AJ. (2018) Release of Pro-Inflammatory Cytokines from Muscle and Bone Causes Tenocyte Death in a Novel Rotator Cuff In Vitro Explant Culture Model. Connective Tissue Research
Oftadeh R, Connizzo BK, Nia HT, et al. (2018) Biological connective tissues exhibit viscoelastic and poroelastic behavior at different frequency regimes: application to tendon and skin biophysics. Acta Biomaterialia
Connizzo BK, Grodzinsky AJ. (2018) Multiscale Poroviscoelastic Compressive Properties of Mouse Supraspinatus Tendons Are Altered in Young and Aged Mice. Journal of Biomechanical Engineering. 140
Han B, Nia HT, Wang C, et al. (2017) AFM-Nanomechanical Test: An Interdisciplinary Tool That Links the Understanding of Cartilage and Meniscus Biomechanics, Osteoarthritis Degeneration, and Tissue Engineering. Acs Biomaterials Science & Engineering. 3: 2033-2049
Connizzo BK, Grodzinsky AJ. (2017) Tendon exhibits complex poroelastic behavior at the nanoscale as revealed by high-frequency AFM-based rheology. Journal of Biomechanics. 54: 11-18
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