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"Benjamin C. Mayo"

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Rigid-Plating and Cortico-Cancellous Allograft Are Effective for 3-Level Anterior Cervical Discectomy and Fusion: Radiographic and Clinical Outcomes
Neurospine. 2020;17(1):146-155.   Published online April 12, 2019
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Rigid-Plating and Cortico-Cancellous Allograft Are Effective for 3-Level Anterior Cervical Discectomy and Fusion: Radiographic and Clinical Outcomes
Neurospine. 2020;17(1):146-155.   Published online April 12, 2019
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Objective
To determine the risk factors associated with radiographic changes and clinical outcomes following 3-level anterior cervical discectomy and fusion (ACDF) using rigidplate constructs and cortico-cancellous allograft. ACDF has demonstrated efficacy for treatment of multilevel degenerative cervical conditions, but current data exists in small heterogeneous forms.
Methods
A retrospective review included 98 patients with primary 3-level ACDF surgery at one institution from 2008 to 2013 with minimum 1-year follow-up. Cervical sagittal vertical axis (SVA), segmental height, fusion, and lordosis radiographs were measured preoperatively and at 2 postoperative periods.
Results
Rates of asymptomatic pseudarthroses and total reoperations were 18% and 4%, respectively. Results demonstrated immediate improvements in cervical lordosis (5.5°, p < 0.01) and segmental height (5.0-mm increase, p < 0.01) with little changes in the cervical SVA (3.2-mm increase, p < 0.01). The segmental height decreased from immediate postoperative period to final follow-up (1.7-mm decrease, p < 0.01). Older age was protective against radiolucent lines (p < 0.05). Patient-reported outcomes significantly improved following surgery (p < 0.01). Current smoking status and diagnosis of diabetes mellitus had no impact on radiographic or clinical outcomes. Risk factors were not identified for the 5 reoperations (4%).
Conclusion
Three-level ACDF with rigid-plating and cortico-cancellous allograft is an effective procedure for degenerative diseases of the cervical spine without the application of additional adjuncts or combined anteriorposterior cervical surgeries. Significant improvements in cervical lordosis, segmental height, and segmental alignment can be achieved with little change in cervical SVA and a low rate of reoperations over short-term follow-up. Similarly, patient-reported outcomes show significant improvements.

Citations

Citations to this article as recorded by  Crossref logo
  • Bone Density Distribution in the Cervical Spine
    Francis Lovecchio, Bryan Ang, Philip K. Louie, Chirag Chaudary, Sachin P. Shah, Ananth Punyala, Yu-Cheng Yao, Mike Steinhaus, Michael H. McCarthy, Russel Huang, Darren Lebl, Virginie Lafage, Todd J. Albert, Sravisht Iyer, Sheeraz Qureshi, Han Jo Kim
    Global Spine Journal.2024; 14(1): 169.     CrossRef
  • Anterior Plate-Screws and Lower Postoperative T1 Slope Affect Cervical Allospacer Failures in Multi-Level ACDF Surgery: Anterior Versus Posterior Fixation
    Kyung-Soo Suk, Kathryn Anne Jimenez, Je Hyung Jo, Hak-Sun Kim, Hwan-Mo Lee, Seong-Hwan Moon, Byung Ho Lee
    Global Spine Journal.2023; 13(1): 89.     CrossRef
  • Is 3D-printed Titanium cage a reliable option for 3-level anterior cervical discectomy and fusion in treating degenerative cervical spondylosis?
    Shanxi Wang, Xuan Fang, Yunkun Qu, Rui Lu, Xiaojun Yu, Shaoze Jing, Qing Ding, Chaoxu Liu, Hua Wu, Yang Liu
    Frontiers in Surgery.2023;[Epub]     CrossRef
  • Outcomes of 2-Level Versus 3- or 4-Level Anterior Cervical Discectomy and Fusion Using a Biomimetic Surface Titanium Cage: Multicenter Experience
    Alexander O. Aguirre, Mohamed A.R. Soliman, Nicholas J. Minissale, Patrick K. Jowdy, Cathleen C. Kuo, Asham Khan, Ryan M. Hess, David E. Smolar, Barrett I. Woods, Mark S. Eskander, Paul J. Slosar, John Pollina, Jeffrey P. Mullin
    World Neurosurgery.2023; 177: e453.     CrossRef
  • Mechanistically Scoping Cell‐Free and Cell‐Dependent Artificial Scaffolds in Rebuilding Skeletal and Dental Hard Tissues
    Peng Yu, Fanyuan Yu, Jie Xiang, Kai Zhou, Ling Zhou, Zhengmin Zhang, Xiao Rong, Zichuan Ding, Jiayi Wu, Wudi Li, Zongke Zhou, Ling Ye, Wei Yang
    Advanced Materials.2022;[Epub]     CrossRef
  • What Type of Incision for Anterior Cervical Spine Surgery Involving Long Segments Can Bring Better Cosmetic and Functional Outcomes?
    Hyung Rae Lee, Dong-Ho Lee, Sang Yun Seok, Sehan Park, Jae Hwan Cho, Chang Ju Hwang, Choon Sung Lee
    Neurospine.2022; 19(2): 412.     CrossRef
  • Morphologic Change of CorticoCancellous Allograft Used for Anterior Cervical Discectomy and Fusion
    Jae Jun Yang, Byungyoung Ryu, Ji Weon Moon, Taehyun Kim, Sehan Park
    Spine.2022; 47(13): 944.     CrossRef
  • The Effect of Subsidence on Segmental and Global Lordosis at Long-term Follow-up After Anterior Cervical Discectomy and Fusion
    Akiro H. Duey, Christopher Gonzalez, Eric A. Geng, Pierce J. Ferriter Jr, Ashley M. Rosenberg, Ula N. Isleem, Bashar Zaidat, Paul M. Al-Attar, Jonathan S. Markowitz, Jun S. Kim, Samuel K. Cho
    Neurospine.2022; 19(4): 927.     CrossRef
  • 8,239 View
  • 179 Download
  • 7 Web of Science
  • 8 Crossref

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Postoperative Fever Evaluation Following Lumbar Fusion Procedures
Neurospine. 2018;15(2):154-162.   Published online June 19, 2018
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Postoperative Fever Evaluation Following Lumbar Fusion Procedures
Neurospine. 2018;15(2):154-162.   Published online June 19, 2018
Close
Objective
This study aimed to determine the incidence of postoperative fever, the workup conducted for postoperative fever, the rate of subsequent fever-related diagnoses or complications, and the risk factors associated with fever following lumbar fusion.
Methods
A retrospective review of patients undergoing lumbar fusion was performed. For patients in whom fever (≥38.6°C) was documented, charts were reviewed for any fever workup or diagnosis. Multivariate regression was used to identify independent risk factors for the development of postoperative fever.
Results
A total of 868 patients met the inclusion criteria, of whom 105 exhibited at least 1 episode of fever during hospitalization. The first documentation of fever occurred during the first 24 hours in 43.8% of cases, during postoperative hours 24–48 in 53.3%, and later than 48 hours postoperatively in 2.9%. At least 1 component of a fever workup was conducted in 47 of the 105 patients who had fever, resulting in fever-associated diagnoses in 4 patients prior to discharge. Three patients who had fever during the inpatient stay developed complications after discharge. On multivariate analysis, operations longer than 150 minutes (relative risk [RR], 1.66; p=0.015) and narcotic consumption greater than 85 oral morphine equivalents on postoperative day 0 (RR, 1.53; p=0.038) were independently associated with an increased risk of developing postoperative fever.
Conclusion
The results of this study suggest that inpatient fever occurred in roughly 1 in 8 patients following lumbar fusion surgery. In most cases where a fever workup was performed, no cause of fever was detected. Longer operative time and increased early postoperative narcotic use may increase the risk of developing postoperative fever.

Citations

Citations to this article as recorded by  Crossref logo
  • Postoperative Fever in Children Hospitalized After Surgery: Incidence and Risk Factors
    Peter J. Hong, Lynne Ferrari, Steven Staffa, Ben Reis, Maria Osipovich, Jonathan D. Hron, Jay G. Berry
    Hospital Pediatrics.2026; 16(5): 357.     CrossRef
  • Postoperative fever after elective minimally invasive resection for gastric and colorectal cancer: incidence, risk factors and characteristics
    Fan He, Chenglin Tang, Fuyu Yang, Dongqin Zhao, Junjie Xiong, Yu Zou, Defei Chen, Guoquan Huang, Kun Qian
    Frontiers in Oncology.2025;[Epub]     CrossRef
  • Postoperative Fever Following Pelvic and Acetabular Fixation: Incidence, Risk Factors, and Lack of Association With Surgical Site Infection
    Mark Ayoub, Eric Curtis, Yeng Vue, Daniel Wilson, Kamran Movassaghi
    Orthopedics.2025; 48(4): 229.     CrossRef
  • Postoperative Noninfectious Fever in Degenerative Lumbar Spine Diseases: A Multivariate Logistic Regression Analysis
    Yao Li, Guanyu Yang, Tianci Fang, Fanqi Kong, Peng Yang, Bin Pi, Huilin Yang, Xuwei Ling
    World Neurosurgery.2025; 200: 124190.     CrossRef
  • A Randomized Study on the Prophylactic Use of Acetaminophen to Prevent Fever after the Removal of Drainage Tubes for Lumbar Surgery
    Kaifeng Ye, Yan Li, Yong Xing, Kaixi Liu, Fang Zhou, Yun Tian, Yanping Zhang
    Orthopaedic Surgery.2023; 15(2): 440.     CrossRef
  • Preoperative predictors of prolonged hospitalization in patients undergoing lateral lumbar interbody fusion
    James W. Nie, Timothy J. Hartman, Keith R. MacGregor, Omolabake O. Oyetayo, Eileen Zheng, Vincent P. Federico, Dustin H. Massel, Arash J. Sayari, Kern Singh
    Acta Neurochirurgica.2023; 165(9): 2615.     CrossRef
  • Single-Level Minimally Invasive Transforaminal Lumbar Interbody Fusion versus Anterior Lumbar Interbody Fusion with Posterior Instrumentation at L5/S1
    Kevin C. Jacob, Madhav R. Patel, Max A. Ribot, Alexander W. Parsons, Nisheka N. Vanjani, Hanna Pawlowski, Michael C. Prabhu, Kern Singh
    World Neurosurgery.2022; 157: e111.     CrossRef
  • Postoperative fever after liver resection: Incidence, risk factors, and characteristics associated with febrile infectious complication
    Hon-Fan Lai, Ivy Yenwen Chau, Hao-Jan Lei, Shu-Cheng Chou, Cheng-Yuan Hsia, Yi-Chu Kao, Gar-Yang Chau, Leonidas G Koniaris
    PLOS ONE.2022; 17(1): e0262113.     CrossRef
  • Preoperative Cognitive Impairment as a Predictor of Postoperative Outcomes in Elderly Patients Undergoing Spinal Surgery for Degenerative Spinal Disease
    Hyung Cheol Kim, Seong Bae An, Hyeongseok Jeon, Tae Woo Kim, Jae Keun Oh, Dong Ah Shin, Seong Yi, Keung Nyun Kim, Phil Hyu Lee, Suk Yun Kang, Yoon Ha
    Journal of Clinical Medicine.2021; 10(7): 1385.     CrossRef
  • Association Between Postoperative Fever and Readmission Rates in Lumbar Fusion Patients
    Geoffrey P. Stricsek, Thiago S. Montenegro, Glenn A. Gonzalez, Akash Singh, Catriona Harrop, James Harrop
    Clinical Spine Surgery.2021; 34(6): E349.     CrossRef
  • Local temperature elevation as a marker of spinal implant infection in an animal model
    Steven D. Glassman, Leah Y. Carreon, Olumide Aruwajoye, Nicholas M. Benson, Ping Li, Arjun Siby Kurian
    North American Spine Society Journal (NASSJ).2021; 7: 100077.     CrossRef
  • The Effect of the Severity of Preoperative Back Pain on Patient-Reported Outcomes, Recovery Ratios, and Patient Satisfaction Following Minimally Invasive Transforaminal Lumbar Interbody Fusion (MIS-TLIF)
    Kevin C. Jacob, Madhav R. Patel, Alexander W. Parsons, Nisheka N. Vanjani, Hanna Pawlowski, Michael C. Prabhu, Kern Singh
    World Neurosurgery.2021; 156: e254.     CrossRef
  • Experimental Comparison of Autograft and DBM Flex (Grafton) for Spinal Lumbar Fusion in Rabbits
    Cem DEMİREL, Dursun TÜRKÖZ, Tuncay YİLMAZ
    Archives of Clinical and Experimental Medicine.2021; 6(3): 153.     CrossRef
  • Comparison of Fusion Rate between Demineralized Bone Matrix versus Autograft in Lumbar Fusion : Meta-Analysis
    Sanghyun Han, Bumsoo Park, Jeong-Wook Lim, Jin-Young Youm, Seoung-Won Choi, Dae Hwan Kim, Dong Ki Ahn
    Journal of Korean Neurosurgical Society.2020; 63(6): 673.     CrossRef
  • Management of Common Postoperative Complications
    Christopher Stephenson, Arya Mohabbat, David Raslau, Elizabeth Gilman, Elizabeth Wight, Deanne Kashiwagi
    Mayo Clinic Proceedings.2020; 95(11): 2540.     CrossRef
  • 15,576 View
  • 188 Download
  • 13 Web of Science
  • 15 Crossref