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Journal of Biomechanics|May 11, 2010
Implantable MEMS compressive stress sensors: Design, fabrication and calibration with application to the disc annulusDavid L Glos, Frank E Sauser, Ian Papautsky, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|March 25, 2018
Scoliosis vertebral growth plate histomorphometry: Comparisons to controls, growth rates, and compressive stressesDonita I Bylski-Austrow, David L Glos, Eric J Wall, et al.
Spine|May 18, 2005
Endoscopic mechanical spinal hemiepiphysiodesis modifies spine growthEric J Wall, Donita I Bylski-Austrow, Ronald J Kolata, et al.
Spine|July 23, 2013
Biomechanics of spinal hemiepiphysiodesis for fusionless scoliosis treatment using titanium implantMatthew T Coombs, David L Glos, Eric J Wall, et al.
Spine|April 16, 2014
Transverse process hooks at upper instrumented vertebra provide more gradual motion transition than pedicle screwsDinesh P Thawrani, David L Glos, Matthew T Coombs, et al.
Scoliosis and Spinal Disorders|October 1, 2016
Flexible growing rods: a biomechanical pilot study of polymer rod constructs in the stability of skeletally immature spinesDonita I Bylski-Austrow, David L Glos, Anne C Bonifas, et al.
The Journal of Bone and Joint Surgery. American Volume|March 4, 2009
Spinal hemiepiphysiodesis decreases the size of vertebral growth plate hypertrophic zone and cellsDonita I Bylski-Austrow, Eric J Wall, David L Glos, et al.
Scoliosis|March 27, 2015
Flexible growing rods: a pilot study to determine if polymer rod constructs may provide stability to skeletally immature spinesDonita I Bylski-Austrow, David L Glos, Anne C Bonifas, et al.
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