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Contents
Prioritization of realignment associated with superior clinical outcomes for cervical deformity patients / Katherine E. Pierce ; Peter G. Passias ; Avery E. Brown ; Cole A. Bortz ; Haddy Alas ; Lara Passfall ; Oscar Krol ; Nicholas Kummer ; Renaud Lafage ; Dean Chou … [et. al.] 1
[요약] 1
INTRODUCTION 2
MATERIALS AND METHODS 2
1. Data Source and Inclusion Criteria 2
2. Data Collection, Radiographic, and HRQoL Assessment 2
3. Statistical Analysis 3
RESULTS 4
1. Overall Cohort Patient Characteristics 4
2. Baseline and 1-Year Radiographic Parameters Between C and CT Ames Drivers 4
3. Radiographic Corrective Measures Predictive of Meeting MCID for NDI 4
4. Ratios (%) of Correction in Predictors by Ames Driver 4
5. Prioritization of Realignment Parameters and Their Corrective Cutoff Values 4
6. HRQoLs for Patients With Ideal Prioritization 5
7. Case Examples 5
DISCUSSION 6
CONCLUSION 7
REFERENCES 7
번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | Smith JS, Line B, Bess S, et al. The health impact of adult cervical deformity in patients presenting for surgical treatment: comparison to United States population norms and chronic disease states based on the EuroQuol-5 Dimensions Questionnaire. Neurosurgery 2017;80:716-25. | 미소장 |
2 | Chi JH, Tay B, Stahl D, et al. Complex deformities of the cervical spine. Neurosurg Clin N Am 2007;18:295-304. | 미소장 |
3 | Grob D, Frauenfelder H, Mannion AF. The association between cervical spine curvature and neck pain. Eur Spine J 2007;16:669-78. | 미소장 |
4 | Ames CP, Smith JS, Scheer JK, et al. Impact of spinopelvic alignment on decision making in deformity surgery in adults:a review. J Neurosurg Spine 2012;16:547-64. | 미소장 |
5 | Hallager DW, Hansen LV, Dragsted CR, et al. A comprehensive analysis of the SRS-Schwab Adult Spinal Deformity Classification and confounding variables - a prospective, non-US cross-sectional study in 292 patients. Spine (Phila Pa 1976)2016;41:E589-97. | 미소장 |
6 | Schwab F, Ungar B, Blondel B, et al. SRS-Schwab adult spinal deformity classification: a validation study. Spine (Phila Pa 1976) 2012;37:1077-82. | 미소장 |
7 | Ailon T, Smith JS, Shaffrey CI, et al. Outcomes of operative treatment for adult cervical deformity: a prospective multicenter assessment with 1-year follow-up. Neurosurgery 2018;83:1031-9. | 미소장 |
8 | Miller EK, Ailon T, Neuman BJ, et al. Assessment of a novel adult cervical deformity frailty index as a component of preoperative risk stratification. World Neurosurg 2018;109:e800-6. | 미소장 |
9 | Passias PG, Poorman GW, Horn SR, et al. Effect of obesity on radiographic alignment and short-term complications after surgical treatment of adult cervical deformity. World Neurosurg 2019;125:e1082-8. | 미소장 |
10 | Lafage R, Schwab F, Glassman S, et al. Age-adjusted alignment goals have the potential to reduce PJK. Spine (Phila Pa 1976) 2017;42:1275-82. | 미소장 |
11 | Protopsaltis TS, Ramchandran S, Hamilton DK, et al. Analysis of successful versus failed radiographic outcomes after cervical deformity surgery. Spine (Phila Pa 1976) 2018;43:E773-81. | 미소장 |
12 | Ames CP, Smith JS, Eastlack R, et al. Reliability assessment of a novel cervical spine deformity classification system. J Neurosurg Spine 2015;23:673-83. | 미소장 |
13 | Bakouny Z, Khalil N, Otayek J, et al. Are the sagittal cervical radiographic modifiers of the Ames-ISSG classification specific to adult cervical deformity? J Neurosurg Spine 2018;29:483-90. | 미소장 |
14 | Passias PG, Jalai CM, Smith JS, et al. Characterizing adult cervical deformity and disability based on existing cervical and adult deformity classification schemes at presentation and following correction. Neurosurgery 2018;82:192-201. | 미소장 |
15 | Passias PG, Horn SR, Oh C, et al. Evaluating cervical deformity corrective surgery outcomes at 1-year using current patient-derived and functional measures: are they adequate? J Spine Surg 2018;4:295-303. | 미소장 |
16 | Champain S, Benchikh K, Nogier A, et al. Validation of new clinical quantitative analysis software applicable in spine orthopaedic studies. Eur Spine J 2006;15:982-91. | 미소장 |
17 | O’Brien MF, Kuklo TRTR, Blanke KM, et al. Radiographic measurement manual. Memphis (TN): Medtronic Sofamor Danek USA; 2004. | 미소장 |
18 | Rillardon L, Levassor N, Guigui P, et al. Validation of a tool to measure pelvic and spinal parameters of sagittal balance. Rev Chir Orthop Reparatrice Appar Mot 2003;89:218-27. | 미소장 |
19 | Hung M, Saltzman CL, Kendall R, et al. What are the MCIDs for PROMIS, NDI, and ODI instruments among patients with spinal conditions? Clin Orthop Relat Res 2018;476:2027-36. | 미소장 |
20 | Passias PG, Oh C, Jalai CM, et al. Predictive model for cervical alignment and malalignment following surgical correction of adult spinal deformity. Spine (Phila Pa 1976) 2016;41:E1096-103. | 미소장 |
21 | Wang VY, Chou D. The cervicothoracic junction. Neurosurg Clin N Am 2007;18:365-71. | 미소장 |
22 | Diebo BG, Ferrero E, Lafage R, et al. Recruitment of compensatory mechanisms in sagittal spinal malalignment is age and regional deformity dependent: a full-standing axis analysis of key radiographical parameters. Spine (Phila Pa 1976) 2015;40:642-9. | 미소장 |
23 | Passias PG, Soroceanu A, Scheer J, et al. Magnitude of preoperative cervical lordotic compensation and C2-T3 angle are correlated to increased risk of postoperative sagittal spinal pelvic malalignment in adult thoracolumbar deformity patients at 2-year follow-up. Spine J 2015;15:1756-63. | 미소장 |
24 | Protopsaltis TS, Scheer JK, Terran JS, et al. How the neck affects the back: changes in regional cervical sagittal alignment correlate to HRQOL improvement in adult thoracolumbar deformity patients at 2-year follow-up. J Neurosurg Spine 2015;23:153-8. | 미소장 |
25 | Protopsaltis TS, Lafage R, Vira S, et al. Novel angular measures of cervical deformity account for upper cervical compensation and sagittal alignment. Clin spine Surg 2017;30:E959-67. | 미소장 |
26 | Protopsaltis T, Schwab F, Bronsard N, et al. TheT1 pelvic angle, a novel radiographic measure of global sagittal deformity, accounts for both spinal inclination and pelvic tilt and correlates with health-related quality of life. J Bone Joint Surg Am 2014;96:1631-40. | 미소장 |
27 | Goldschmidt E, Angriman F, Agarwal N, et al. A new piece of the puzzle to understand cervical sagittal alignment: utilizing a novel angle delta to describe the relationship among T1 vertebral body slope, cervical lordosis, and cervical sagittal alignment. Neurosurgery 2020;86:446-51. | 미소장 |
28 | Scheer JK, Tang JA, Smith JS, et al. Cervical spine alignment, sagittal deformity, and clinical implications. J Neurosurg Spine 2013;19:141-59. | 미소장 |
29 | Tang JA, Scheer JK, Smith JS, et al. The impact of standing regional cervical sagittal alignment on outcomes in posterior cervical fusion surgery. Neurosurgery 2015;76 Suppl 1:S14-21; discussion S21. | 미소장 |
30 | Suk KS, Kim KT, Lee SH, et al. Significance of chin-brow vertical angle in correction of kyphotic deformity of ankylosing spondylitis patients. Spine (Phila Pa 1976) 2003;28:2001-5. | 미소장 |
31 | Jeon SI, Hyun SJ, Han S, et al. Relationship between cervical sagittal alignment and patient outcomes after anterior cervical fusion surgery involving 3 or more levels. World Neurosurg 2018;113:e548-54. | 미소장 |
32 | Lee S, Kim KT, Seo EM, et al. The influence of thoracic inlet alignment on the craniocervical sagittal balance in asymptomatic adults. J Spinal Disord Tech 2012;25:E41-7. | 미소장 |
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