Optimizing biomechanics of anterior column realignment for minimally invasive deformity correction.
暂无分享,去创建一个
G. Mundis | J. Uribe | Jay D. Turner | J. Godzik | Randall J. Hlubek | Bernardo de Andrada Pereira | Jennifer N. Lehrman | B. Kelly | A. Newcomb
[1] Corey T Walker,et al. Retrospective multicenter assessment of rod fracture after anterior column realignment in minimally invasive adult spinal deformity correction. , 2019, World neurosurgery.
[2] N. Agarwal,et al. Development of Proximal Junctional Kyphosis After Minimally Invasive Lateral Anterior Column Realignment for Adult Spinal Deformity , 2019, Neurosurgery.
[3] David S. Xu,et al. The comprehensive anatomical spinal osteotomy and anterior column realignment classification. , 2018, Journal of neurosurgery. Spine.
[4] H. Wilke,et al. Biomechanical advantages of supplemental accessory and satellite rods with and without interbody cages implantation for the stabilization of pedicle subtraction osteotomy , 2018, European Spine Journal.
[5] Munish C. Gupta,et al. A Novel 4-Rod Technique Offers Potential to Reduce Rod Breakage and Pseudarthrosis in Pedicle Subtraction Osteotomies for Adult Spinal Deformity Correction. , 2018, Operative neurosurgery.
[6] Robert K. Eastlack,et al. Preliminary results of anterior lumbar interbody fusion, anterior column realignment for the treatment of sagittal malalignment. , 2017, Neurosurgical focus.
[7] Munish C. Gupta,et al. Rod fracture in adult spinal deformity surgery fused to the sacrum: prevalence, risk factors, and impact on health-related quality of life in 526 patients. , 2017, The spine journal : official journal of the North American Spine Society.
[8] Alexander W. L. Turner,et al. Biomechanical study of rod stress after pedicle subtraction osteotomy versus anterior column reconstruction: A finite element study , 2017, Surgical neurology international.
[9] Adam L. Shimer,et al. Use of the "dual construct" for the management of complex spinal reconstructions. , 2017, The spine journal : official journal of the North American Spine Society.
[10] Jun S. Kim,et al. Multi-Rod Constructs Can Prevent Rod Breakage and Pseudarthrosis at the Lumbosacral Junction in Adult Spinal Deformity , 2017, Global spine journal.
[11] Choll W. Kim,et al. The effect of anterior longitudinal ligament resection on lordosis correction during minimally invasive lateral lumbar interbody fusion: Biomechanical and radiographic feasibility of an integrated spacer/plate interbody reconstruction device , 2017, Clinical biomechanics.
[12] Munish C. Gupta,et al. Medical Complications After Adult Spinal Deformity Surgery: Incidence, Risk Factors, and Clinical Impact , 2016, Spine.
[13] W. Hutton,et al. Sagittal Plane Correction Using the Lateral Transpsoas Approach: A Biomechanical Study on the Effect of Cage Angle and Surgical Technique on Segmental Lordosis , 2016, Spine.
[14] Kai-Ming G. Fu,et al. Outcomes of Operative and Nonoperative Treatment for Adult Spinal Deformity: A Prospective, Multicenter, Propensity-Matched Cohort Assessment With Minimum 2-Year Follow-up. , 2016, Neurosurgery.
[15] Robert K. Eastlack,et al. Anterior Column Realignment (ACR) in Adult Sagittal Deformity Correction: Technique and Review of the Literature , 2016, Spine.
[16] Robert K. Eastlack,et al. Radiographic outcomes of anterior column realignment for adult sagittal plane deformity: a multicenter analysis , 2015, European Spine Journal.
[17] B. Bucklen,et al. A novel lateral lumbar integrated plate-spacer interbody implant: in vitro biomechanical analysis. , 2015, The spine journal : official journal of the North American Spine Society.
[18] Kai-Ming G. Fu,et al. Prospective multicenter assessment of risk factors for rod fracture following surgery for adult spinal deformity. , 2014, Journal of neurosurgery. Spine.
[19] L. Lenke,et al. Comparison of Standard 2-Rod Constructs to Multiple-Rod Constructs for Fixation Across 3-Column Spinal Osteotomies , 2014, Spine.
[20] Robert K. Eastlack,et al. Anterior Column Realignment (ACR) for Focal Kyphotic Spinal Deformity Using a Lateral Transpsoas Approach and ALL Release , 2014, Journal of spinal disorders & techniques.
[21] Brian P. Kelly,et al. Design and validation of a novel Cartesian biomechanical testing system with coordinated 6DOF real-time load control: application to the lumbar spine (L1-S, L4-L5). , 2013, Journal of biomechanics.
[22] Alexander W. L. Turner,et al. Lordosis restoration after anterior longitudinal ligament release and placement of lateral hyperlordotic interbody cages during the minimally invasive lateral transpsoas approach: a radiographic study in cadavers. , 2012, Journal of neurosurgery. Spine.
[23] Kai-Ming G. Fu,et al. Assessment of Symptomatic Rod Fracture After Posterior Instrumented Fusion for Adult Spinal Deformity. , 2012, Neurosurgery.
[24] Munish C. Gupta,et al. Risk factors for major peri-operative complications in adult spinal deformity surgery: a multi-center review of 953 consecutive patients , 2012, European Spine Journal.
[25] S. Parent,et al. Titanium Versus Stainless Steel for Anterior Spinal Fusions: An Analysis of Rod Stress as a Predictor of Rod Breakage During Physiologic Loading in a Bovine Model , 2007, Spine.
[26] F. Shen,et al. A Novel “Four-Rod Technique” for Lumbo-Pelvic Reconstruction: Theory and Technical Considerations , 2006, Spine.
[27] F. Schwab,et al. Adult Scoliosis: Prevalence, SF-36, and Nutritional Parameters in an Elderly Volunteer Population , 2005, Spine.
[28] N. Crawford,et al. Construction of Local Vertebral Coordinate Systems Using a Digitizing Probe: Technical Note , 1997, Spine.
[29] M M Panjabi,et al. Biomechanical Evaluation of Spinal Fixation Devices: II. Stability Provided by Eight Internal Fixation Devices , 1988, Spine.
[30] M M Panjabi,et al. Biomechanical Evaluation of Spinal Fixation Devices: I. A Conceptual Framework , 1988, Spine.
[31] M. Aebi,et al. Pedicle subtraction osteotomies (PSO) in the lumbar spine for sagittal deformities , 2014, European Spine Journal.
[32] Bryan W Cunningham,et al. The use of interbody cage devices for spinal deformity: a biomechanical perspective. , 2002, Clinical orthopaedics and related research.