References
- Wainner RS, Gill H. Diagnosis and nonoperative management of cervical radiculopathy. J Orthop Sports Phys Ther 2000;30:728-744 https://doi.org/10.2519/jospt.2000.30.12.728
- Yousem DM, Atlas SW, Goldberg HI, Grossman RI. Degenerative narrowing of the cervical spine neural foramina: evaluation with high-resolution 3DFT gradient-echo MR imaging. AJNR Am J Neuroradiol 1991;12:229-236
- Abbed KM, Coumans JV. Cervical radiculopathy: pathophysiology, presentation, and clinical evaluation. Neurosurgery 2007;60(1 Supp1 1):S28-S34
- Modic MT, Masaryk TJ, Mulopulos GP, Bundschuh C, Han JS, Bohlman H. Cervical radiculopathy: prospective evaluation with surface coil MR imaging, CT with metrizamide, and metrizamide myelography. Radiology 1986;161:753-759 https://doi.org/10.1148/radiology.161.3.3786728
- Russell EJ. Cervical disk disease. Radiology 1990;177:313-325 https://doi.org/10.1148/radiology.177.2.2217760
- Jahnke RW, Hart BL. Cervical stenosis, spondylosis, and herniated disc disease. Radiol Clin North Am 1991;29:777-791
- Yousem DM, Atlas SW, Hackney DB. Cervical spine disk herniation: comparison of CT and 3DFT gradient echo MR scans. J Comput Assist Tomogr 1992;16:345-351 https://doi.org/10.1097/00004728-199205000-00002
- Ryan AG, Morrissey BM, Newcombe RG, Halpin SF, Hourihan MD. Are T1 weighted images helpful in MRI of cervical radiculopathy? Br J Radiol 2004;77:189-196 https://doi.org/10.1259/bjr/97837637
- Bartlett RJ, Hill CR, Gardiner E. A comparison of T2 and gadolinium enhanced MRI with CT myelography in cervical radiculopathy. Br J Radiol 1998;71:11-19 https://doi.org/10.1259/bjr.71.841.9534693
- Modic MT, Masaryk TJ, Ross JS, Mulopulos GP, Bundschuh CV, Bohlman H. Cervical radiculopathy: value of oblique MR imaging. Radiology 1987;163:227-231 https://doi.org/10.1148/radiology.163.1.3823440
- Shim JH, Park CK, Lee JH, Choi JW, Lee DC, Kim DH, et al. A comparison of angled sagittal MRI and conventional MRI in the diagnosis of herniated disc and stenosis in the cervical foramen. Eur Spine J 2009;18:1109-1116 https://doi.org/10.1007/s00586-009-0932-x
- Park HJ, Kim SS, Lee SY, Park NH, Chung EC, Rho MH, et al. A practical MRI grading system for cervical foraminal stenosis based on oblique sagittal images. Br J Radiol 2013;86:20120515 https://doi.org/10.1259/bjr.20120515
- Park HJ, Kim SS, Han CH, Lee SY, Chung EC, Kim MS, et al. The clinical correlation of a new practical MRI method for grading cervical neural foraminal stenosis based on oblique sagittal images. AJR Am J Roentgenol 2014;203:412-417 https://doi.org/10.2214/AJR.13.11647
- Boden SD, McCowin PR, Davis DO, Dina TS, Mark AS, Wiesel S. Abnormal magnetic-resonance scans of the cervical spine in asymptomatic subjects. A prospective investigation. J Bone Joint Surg Am 1990;72:1178-1184 https://doi.org/10.2106/00004623-199072080-00008
- Humphreys SC, Hodges SD, Patwardhan A, Eck JC, Covington LA, Sartori M. The natural history of the cervical foramen in symptomatic and asymptomatic individuals aged 20-60 years as measured by magnetic resonance imaging. A descriptive approach. Spine (Phila Pa 1976) 1998;23:2180-2184 https://doi.org/10.1097/00007632-199810150-00007
- Lee MJ, Riew KD. The prevalence cervical facet arthrosis: an osseous study in a cadveric population. Spine J 2009;9:711-714 https://doi.org/10.1016/j.spinee.2009.04.016
- Tanaka N, Fujimoto Y, An HS, Ikuta Y, Yasuda M. The anatomic relation among the nerve roots, intervertebral foramina, and intervertebral discs of the cervical spine. Spine (Phila Pa 1976) 2000;25:286-291 https://doi.org/10.1097/00007632-200002010-00005
- Sim J, Wright CC. The kappa statistic in reliability studies: use, interpretation, and sample size requirements. Phys Ther 2005;85:257-268
- Kundel HL, Polansky M. Measurement of observer agreement. Radiology 2003;228:303-308 https://doi.org/10.1148/radiol.2282011860
- Kang Y, Lee JW, Koh YH, Hur S, Kim SJ, Chai JW, et al. New MRI grading system for the cervical canal stenosis. AJR Am J Roentgenol 2011;197:W134-W140 https://doi.org/10.2214/AJR.10.5560
- Park HJ, Kim SS, Lee YJ, Lee SY, Park NH, Choi YJ, et al. Clinical correlation of a new practical MRI method for assessing central lumbar spinal stenosis. Br J Radiol 2013;86:20120180 https://doi.org/10.1259/bjr.20120180
- Rosner B. Fundamentals of Biostatistics, 7th ed. Canada: Cengage Learning, 2010
- Song KJ, Choi BW, Kim GH, Kim JR. Clinical usefulness of CTmyelogram comparing with the MRI in degenerative cervical spinal disorders: is CTM still useful for primary diagnostic tool? J Spinal Disord Tech 2009;22:353-357 https://doi.org/10.1097/BSD.0b013e31817df78e
- Park MS, Moon SH, Lee HM, Kim TH, Oh JK, Lee SY, et al. Diagnostic value of oblique magnetic resonance images for evaluating cervical foraminal stenosis. Spine J 2015;15:607-611 https://doi.org/10.1016/j.spinee.2014.10.019
- Shin HY, Park JK, Park SK, Jung GS, Choi YS. Variations in Entrance of Vertebral Artery in Korean Cervical Spine: MDCTbased Analysis. Korean J Pain 2014;27:266-270 https://doi.org/10.3344/kjp.2014.27.3.266
- Bruneau M, Cornelius JF, Marneffe V, Triffaux M, George B. Anatomical variations of the V2 segment of the vertebral artery. Neurosurgery 2006;59(1 Suppl 1):ONS20-ONS24; discussion ONS20-ONS24
- Rawal JD, Jadav HR. Anatomical study of variation of vertebral artery entering the foramen transversarium of cervical vertebrae. Natl J Med Res 2012;2:199-201
- Kitagawa T, Fujiwara A, Kobayashi N, Saiki K, Tamai K, Saotome K. Morphologic changes in the cervical neural foramen due to flexion and extension: in vivo imaging study. Spine (Phila Pa 1976) 2004;29:2821-2825 https://doi.org/10.1097/01.brs.0000147741.11273.1c
- Vitaz TW, Shields CB, Raque GH, Hushek SG, Moser R, Hoerter N, et al. Dynamic weight-bearing cervical magnetic resonance imaging: technical review and preliminary results. South Med J 2004;97:456-461 https://doi.org/10.1097/00007611-200405000-00008
- Jinkins JR, Dworkin JS, Damadian RV. Upright, weightbearing, dynamic-kinetic MRI of the spine: initial results. Eur Radiol 2005;15:1815-1825 https://doi.org/10.1007/s00330-005-2666-4
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