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Journal of Biomechanics|June 12, 2012
Initiation and progression of mechanical damage in the intervertebral disc under cyclic loading using continuum damage mechanics methodology: A finite element studyMuhammad Qasim, Raghu N Natarajan, Howard S An, et al.The Spine Journal : Official Journal of the North American Spine Society|December 3, 2013
Minimally invasive transforaminal lumbar interbody fusion: one surgeon's learning curveSreeharsha V Nandyala, Steve J Fineberg, Miguel Pelton, et al.Journal of Spinal Disorders & Techniques|August 8, 2006
Use of recombinant human bone morphogenetic protein-2 as an adjunct in posterolateral lumbar spine fusion: a prospective CT-scan analysis at one and two yearsKern Singh, Joseph D Smucker, Sanjitpal Gill, et al.Spine|March 15, 2013
Incidence and mortality of perioperative cardiac events in cervical spine surgerySteven J Fineberg, Matthew Oglesby, Alpesh A Patel, et al.Spine|May 30, 2013
Incidence, risk factors, and mortality associated with aspiration in cervical spine surgerySteven J Fineberg, Matthew Oglesby, Alpesh A Patel, et al.Clinical Spine Surgery|November 15, 2016
A Novel Groove-Entry Technique for Inserting Thoracic Percutaneous Pedicle ScrewsKen Ishii, Yuta Shiono, Haruki Funao, et al.Spine|May 12, 2012
Predictive factors of hospital stay in patients undergoing minimally invasive transforaminal lumbar interbody fusion and instrumentationKrzysztof Siemionow, Miguel A Pelton, Jonathan A Hoskins, et al.The Spine Journal : Official Journal of the North American Spine Society|November 16, 2004
Comparison of clinical and radiographic outcome in instrumented anterior cervical discectomy and fusion with or without direct uncovertebral joint decompressionFrancis H Shen, Dino Samartzis, Nitin Khanna, et al.Spine|February 17, 2006
Anti-adhesion properties of a thrombin-based hemostatic gelatin in a canine laminectomy model: a biomechanical, biochemical, and histologic studyKei Miyamoto, Koichi Masuda, Nozomu Inoue, et al.Spine|January 29, 2011
Simulation of inhomogeneous rather than homogeneous poroelastic tissue material properties within disc annulus and nucleus better predicts cervical spine response: a C3-T1 finite element model analysis under compression and moment loadingsMozammil Hussain, Raghu N Natarajan, Gulafsha Chaudhary, et al.Pageof 63