Rose G. Long

Icahn School of Medicine at Mount Sinai, New York, NY, United States 
"Rose Long"
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Long RG, Ferguson SJ, Benneker LM, et al. (2020) Morphological and biomechanical effects of annulus fibrosus injury and repair in an ovine cervical model. Jor Spine. 3: e1074
Long RG, Zderic I, Gueorguiev B, et al. (2018) Effects of Level, Loading Rate, Injury and Repair on Biomechanical Response of Ovine Cervical Intervertebral Discs. Annals of Biomedical Engineering
Varma DM, Lin HA, Long RG, et al. (2018) Thermoresponsive, redox-polymerized cellulosic hydrogels undergo in situ gelation and restore intervertebral disc biomechanics post discectomy. European Cells & Materials. 35: 300-317
Cruz MA, McAnany S, Gupta N, et al. (2017) Structural and Chemical Modification to Improve Adhesive and Material Properties of Fibrin-Genipin for Repair of Annulus Fibrosus Defects in Intervertebral Discs. Journal of Biomechanical Engineering
Long RG, Rotman SG, Hom WW, et al. (2016) In vitro and biomechanical screening of polyethylene glycol and poly(trimethylene carbonate) block copolymers for annulus fibrosus repair. Journal of Tissue Engineering and Regenerative Medicine
Long RG, Torre OM, Hom WW, et al. (2016) Design Requirements for Annulus Fibrosus Repair: Review of Forces, Displacements, and Material Properties of the Intervertebral Disk and a Summary of Candidate Hydrogels for Repair. Journal of Biomechanical Engineering. 138: 021007
Long R, Rotman S, Hom W, et al. (2016) Polyethylene Glycol and Poly (Trimethylene Carbonate) Block Copolymers for Annulus Fibrosus Repair have High Cytocompatibility, Restore Axial Range of Motion and have Some Herniation Risk Global Spine Journal. 6: s-0036-1582589-s-003
Long RG, Bürki A, Zysset P, et al. (2015) Mechanical Restoration and Failure Analyses of a Hydrogel and Scaffold Composite Strategy for Annulus Fibrosus Repair. Acta Biomaterialia
Likhitpanichkul M, Dreischarf M, Illien-Junger S, et al. (2014) Fibrin-genipin adhesive hydrogel for annulus fibrosus repair: Performance evaluation with large animal organ culture, in situ biomechanics, and in vivo degradation tests European Cells and Materials. 28: 25-38
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