Biomechanical Analysis of Rigid Stabilization Techniques for Three-Column Injury in the Lower Cervical Spine
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概要
- 論文の詳細を見る
- 2005-04-15
著者
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Crawford Neil
Spinal Biomechanics Research Laboratory Barrow Neurological Institute
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CRAWFORD Neil
Barrow Neurological Institute
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Sonntag Volker
Spinal Biomechanics Research Laboratory Department Of Neurosurgery Research Barrow Neurological Inst
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CHAMBERLAIN Robert
Spinal Biomechanics Research Laboratory, Barrow Neurological Institute
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Bozkus Hakan
Vkv Amerikan Hastanesi Department Of Neurosurgery
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Nottmeier Eric
Spinal Biomechanics Research Laboratory Department Of Neurosurgery Research Barrow Neurological Inst
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Crawford Neil
Spinal Biomechanics Research Laboratory Department Of Neurosurgery Research Barrow Neurological Inst
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Chamberlain Robert
Spinal Biomechanics Research Laboratory Barrow Neurological Institute
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AMES Christopher
UCSF, Department of Neurosurgery
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NOTTMEIER Eric
Department of Neurosurgery, Mayo Clinic
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PAPADOPOULOS Stephen
Spinal Biomechanics, Barrow Neurological Institute
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Ames Christopher
Comprehensive Spine Center Department Of Neurological Surgery University Of California San Francisco
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Sonntag Volker
Spinal Biomechanics Barrow Neurological Institute
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Crawford Neil
Spinal Biomechanics Barrow Neurological Institute
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Papadopoulos Stephen
Department Of Neurosurgery Barrow Neurological Institute
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- Unilateral Cervical Facet Dislocation : Injury Mechanism and Biomechanical Consequences
- Letters
- Biomechanical Effects of Progressive Anterior Cervical Decompression
- Biomechanical Analysis of a Resorbable Anterior Cervical Graft Containment Plate
- Biomechanical Analysis of Rigid Stabilization Techniques for Three-Column Injury in the Lower Cervical Spine
- Biomechanics of Stabilization After Cervicothoracic Compression-Flexion Injury
- The Biomechanical Effects of Cervical Multilevel Oblique Corpectomy
- Bioresorbable Polylactide Interbody Implants in an Ovine Anterior Cervical Discectomy and Fusion Model : Three-Year Results
- Anatomical and Biomechanical Analyses of the Unique and Consistent Locations of Sacral Insufficiency Fractures
- A New Stand-Alone Cervical Anterior Interbody Fusion Device : Biomechanical Comparison With Established Anterior Cervical Fixation Devices
- Increase in Spinal Canal Area After Inverse Laminoplasty : An Anatomical Study