Basis, Practice and Clinical Application of CBT
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[1] H. Sakaura,et al. Cortical bone trajectory screw fixation versus traditional pedicle screw fixation for 2-level posterior lumbar interbody fusion: comparison of surgical outcomes for 2-level degenerative lumbar spondylolisthesis. , 2018, Journal of neurosurgery. Spine.
[2] T. Kaito,et al. Clinical Outcomes After Posterior Lumbar Interbody Fusion: Comparison of Cortical Bone Trajectory and Conventional Pedicle Screw Insertion , 2017, Clinical spine surgery.
[3] N. Hosogane,et al. Cortical Bone Trajectory for Thoracic Pedicle Screws: A Technical Note , 2014, Clinical spine surgery.
[4] K. Chiba,et al. Incidence and Risk Factors of Adjacent Cranial Facet Joint Violation Following Pedicle Screw Insertion Using Cortical Bone Trajectory Technique , 2016, Spine.
[5] T. Yoshimine,et al. Clear Zone Formation around Screws in the Early Postoperative Stages after Posterior Lumbar Fusion Using the Cortical Bone Trajectory Technique , 2015, Asian spine journal.
[6] N. Hosogane,et al. Biomechanical Evaluation of Cross Trajectory Technique for Pedicle Screw Insertion: Combined Use of Traditional Trajectory and Cortical Bone Trajectory , 2015, Orthopaedic surgery.
[7] T. Inaba,et al. A biomechanical comparison between cortical bone trajectory fixation and pedicle screw fixation , 2015, Journal of Orthopaedic Surgery and Research.
[8] N. Hosogane,et al. Evaluation of the Fixation Strength of Pedicle Screws Using Cortical Bone Trajectory: What Is the Ideal Trajectory for Optimal Fixation? , 2015, Spine.
[9] N. Hosogane,et al. Biomechanical evaluation of the fixation strength of lumbar pedicle screws using cortical bone trajectory: a finite element study. , 2015, Journal of neurosurgery. Spine.
[10] A. Patwardhan,et al. Effect of Physiological Loads on Cortical and Traditional Pedicle Screw Fixation , 2014, Spine.
[11] T. Asazuma,et al. Cortical bone trajectory for lumbosacral fixation: penetrating S-1 endplate screw technique: technical note. , 2014, Journal of neurosurgery. Spine.
[12] T. Asazuma,et al. In Vivo Analysis of Insertional Torque During Pedicle Screwing Using Cortical Bone Trajectory Technique , 2014, Spine.
[13] G. Inoue,et al. Posterior corrective fusion using a double-trajectory technique (cortical bone trajectory combined with traditional trajectory) for degenerative lumbar scoliosis with osteoporosis: technical note. , 2013, Journal of neurosurgery. Spine.
[14] T. Asazuma,et al. Morphometric Measurement of Cortical Bone Trajectory for Lumbar Pedicle Screw Insertion Using Computed Tomography , 2013, Journal of spinal disorders & techniques.
[15] N. Crawford,et al. Biomechanics of Lumbar Cortical Screw–Rod Fixation Versus Pedicle Screw–Rod Fixation With and Without Interbody Support , 2013, Spine.
[16] C. Puttlitz,et al. Cortical bone trajectory for lumbar pedicle screws. , 2009, The spine journal : official journal of the North American Spine Society.
[17] T. Steffen,et al. Double Pedicle Screw Instrumentation in the Osteoporotic Spine: A Biomechanical Feasibility Study , 2007, Journal of spinal disorders & techniques.
[18] D Resnick,et al. Osteoarthritis of the facet joints: accuracy of oblique radiographic assessment. , 1987, Radiology.