Skip to main navigation Skip to main content
  • E-Submission
  • Contact us

NS : Neurospine

OPEN ACCESS
ABOUT
BROWSE ARTICLES
FOR AUTHORS

Page Path

3
results for

"Pulmonary embolism"

Article category

Publication year

Keywords

Authors

Funded articles

"Pulmonary embolism"

Original Articles

Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:

Include:

Risk Factors for Pulmonary Cement Embolism (PCE) After Polymethylmethacrylate Augmentation: Analysis of 32 PCE Cases
Neurospine. 2021;18(4):806-815.   Published online December 31, 2021
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:
Include:
Risk Factors for Pulmonary Cement Embolism (PCE) After Polymethylmethacrylate Augmentation: Analysis of 32 PCE Cases
Neurospine. 2021;18(4):806-815.   Published online December 31, 2021
Close
Objective
Pulmonary cement embolism (PCE) is an underestimated but potentially fatal complication after cement augmentation. Although the treatment and follow-up of PCE have been reported in the literature, the risk factors for PCE are so far less investigated. This study aims to identify the preoperative and intraoperative risk factors for the development of PCE.
Methods
A total of 1,373 patients treated with the polymethylmethacrylate (PMMA) augmentation technique were retrospectively included. Patients with PCE were divided into vertebral augmentation group and screw augmentation group. Possible risk factors were collected as follows: age, sex, bone mineral density, body mass index, diagnosis, comorbidity, surgical procedure, type of screw, augmented level, number of augmented vertebrae, fracture severity, presence of intravertebral cleft, cement volume, marked leakage in the paravertebral venous plexus, and periods of surgery. Binary logistic regression analyses were used to analyze independent risk factors for PCE.
Results
PCE was identified in 32 patients, with an incidence rate of 2.33% (32 of 1,373). For patients who had undergone vertebral augmentation, marked leakage in the paravertebral venous plexus (odds ratio [OR], 1.2; 95% confidence interval [CI], 0.1–10.3; p=0.000) and previous surgery (OR, 16.1; 95% CI, 4.2–61.0; p=0.007) were independent risk factors for PCE. Regarding patients who had undergone screw augmentation, the marked leakage in the paravertebral venous plexus (OR, 4.2; 95% CI, 0.5–37.3; p=0.004) was the main risk factor.
Conclusion
Marked leakage in the paravertebral venous plexus and previous surgery were significant risk factors related to PCE. Paravertebral leakage and operator experience should be concerned when performing PMMA augmentation.

Citations

Citations to this article as recorded by  Crossref logo
  • Detecting asymptomatic cement pulmonary embolisms following vertebral augmentation using dual-energy computed tomography pulmonary angiography
    Jo-Yu Chen, Fon-Yih Tsuang, Yen-Heng Lin, Chung-Wei Lee
    Journal of the Formosan Medical Association.2026; 125(3): 298.     CrossRef
  • Incidence, Clinical Characteristics, Treatment and Outcomes of Intracardiac Cement Embolism After Vertebral Augmentation: A Systematic Review
    Hao Tong, Peng Xie, Tao Song, Haocheng Ma, Quanzhou Xiao, Zhehao Dai
    Global Spine Journal.2026;[Epub]     CrossRef
  • Pulmonary embolism and cement leakage in cement-augmented spinal instrumentation: incidence, associated factors, and clinical impact
    Javier Sanado-Fernández, Fernando Moreno-Mateo, Raquel Sánchez-García, Felix Tomé-Bermejo, María Garmendia-Aguilar, Luis Álvarez-Galovich
    European Spine Journal.2026;[Epub]     CrossRef
  • Biomechanical insights into anterolateral vertebral screw fixation in osteoporotic spines: a comparative study of fixation methods and positions using porcine vertebrae
    Ming-Kai Hsieh, Yun-Da Li, Weng-Pin Chen, De-Mei Lee, Ching-Lung Tai
    Journal of Orthopaedic Surgery and Research.2025;[Epub]     CrossRef
  • Symptomatic Pulmonary Cement Embolism Following Cement-augmented Pedicle Screw Instrumentation: A Case Report
    Kun-Han Lee, Yu-Chun Liu, Mu-Chieh Chi, Mao-Yi Yang, Cheng-Yi Lin, Vincent W. S. Huang
    Formosan Journal of Musculoskeletal Disorders.2025; 16(3): 133.     CrossRef
  • Presentations, management strategies, and outcomes of intracardiac cement embolism following spinal vertebral augmentation: a systematic review of case reports
    Omar Lubbad, Giuseppe L Morassi, Laila Lubbad, Moadh Hwessa, Wajeeh Ullah Mahmood, Nektarios K Mazarakis
    Journal of Orthopaedic Surgery and Research.2025;[Epub]     CrossRef
  • Symptomatic pulmonary cement embolism following PMMA vertebroplasty: Clinical presentation and management
    Haytham Najjar, Hind Neiroukh, Layth J.M. Saada, Mohamad Thalji, Kataeb Doudin
    Respiratory Medicine Case Reports.2025; 58: 102325.     CrossRef
  • Extensive Continuous Pulmonary Cement Embolism
    Siyan Xiong, Wei Yang
    American Journal of Roentgenology.2025;[Epub]     CrossRef
  • High Rate of Pulmonary Cement Embolism after Cement-Augmented Pedicle Screw Fixation: A 12-Year Single-Center Study
    Pavlina Lenga, Awais Akbar Bajwa, Till Schneider, Joe Iwanaga, R. Shane Tubbs, Karl L. Kiening, Andreas W. Unterberg, Basem Ishak
    Journal of Neurological Surgery Part A: Central European Neurosurgery.2024; 85(02): 117.     CrossRef
  • Pulmonary embolism and intracardiac foreign bodies caused by bone cement leakage: a case report and literature review
    Zihan Zhao, Ranran Wang, Lihua Gao, Meijing Zhang
    Journal of Cardiothoracic Surgery.2024;[Epub]     CrossRef
  • Construction and clinical validation of risk model for predicting bone cement leakage after the surgical management of spinal metastases
    Yanrong Liu
    American Journal of Cancer Research.2024; 14(10): 4841.     CrossRef
  • Risk factors for pulmonary cement embolism after percutaneous vertebroplasty and radiofrequency ablation for spinal metastases
    Luqiang Wang, Ming Lu, Xinxin Zhang, Zhenguo Zhao, Xiaoyang Li, Ting Liu, Libin Xu, Shengji Yu
    Frontiers in Oncology.2023;[Epub]     CrossRef
  • Advances in materials used for minimally invasive treatment of vertebral compression fractures
    Pengfei Sui, Tong Yu, Shouye Sun, Bo Chao, Cheng Qin, Jingwei Wang, Erwei Wang, Changjun Zheng
    Frontiers in Bioengineering and Biotechnology.2023;[Epub]     CrossRef
  • Zementaugmentation in der Wirbelsäulenchirurgie
    Philipp Schleicher, Alexander Wengert, Jonathan Neuhoff, Frank Kandziora
    Die Unfallchirurgie.2022; 125(6): 460.     CrossRef
  • 11,424 View
  • 208 Download
  • 16 Web of Science
  • 14 Crossref

Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:

Include:

Venous Thromboembolism Chemoprophylaxis Within 24 Hours of Surgery for Spinal Cord Injury: Is It Safe and Effective?
Neurospine. 2020;17(2):407-416.   Published online June 30, 2020
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:
Include:
Venous Thromboembolism Chemoprophylaxis Within 24 Hours of Surgery for Spinal Cord Injury: Is It Safe and Effective?
Neurospine. 2020;17(2):407-416.   Published online June 30, 2020
Close
Objective
Current guidelines recommend initiation of venous thromboembolism (VTE) chemoprophylaxis within 72 hours of spinal cord injury (SCI). This study investigated the safety and efficacy of chemoprophylaxis within 24 hours of surgery for SCI.
Methods
A retrospective review of 97 consecutive patients who underwent surgery for acute traumatic SCI at a single level 1 trauma center from 2013–2018 was performed. VTE/postoperative bleeding rates during hospitalization, demographics, medical/surgical complications, drain output, length of stay, and disposition were obtained. Chi–square with odds ratios (ORs), 1-way analysis of variance, and logistic regression were performed to establish significant differences between groups.
Results
Seventy–nine patients were included, 49 received chemoprophylaxis within 24 hours and 20 within 24–72 hours. Cohort characteristics included an average age of 51.8 years, 77.2% male, 62.0% cervical, and 35.4% thoracic SCIs. Using the American Spinal Injury Association Impairment Scale (AIS), 39.2% were AIS-A injuries, 19.0% AIS-B, 25.3% AIS-C, and 16.5% AIS-D. Unfractionated heparin was administered in 88.6% of patients and 11.4% received low molecular weight heparin. Chemoprophylaxis within 24 hours of surgery was associated with a lower rate of VTE (6.1% vs. 35.0%; OR, 0.121; 95% confidence interval [CI], 0.027–0.535) and deep vein thrombosis (4.1% vs. 30.0%; OR, 0.099; 95% CI, 0.018–0.548) versus 24–72 hours. Pulmonary embolism rates were not significantly different (6.1% vs. 5.0%, p = 1.0). There were no postoperative bleeding complications and no significant difference in drain output between cohorts.
Conclusion
Early VTE chemoprophylaxis is effective with lower VTE rates when initiated within 24 hours of surgery for SCI and is safe with no observed postoperative bleeding complications.

Citations

Citations to this article as recorded by  Crossref logo
  • Timing of Chemical Anticoagulant Administration in Spine Trauma and its Impact on VTE, Bleeding, and Mortality: A Systematic Review and Meta-Analysis
    Sarthak Mohanty, Hanna von Riegen, Michael Akodu, Elizabeth Oginni, Diana Yeritsyan, Kaveh Momenzadeh, Anne Fladger, Mario Keko, Michael McTague, Ara Nazarian, Jason L. Pittman, Sapan D. Gandhi
    Global Spine Journal.2026; 16(1): 782.     CrossRef
  • Evaluating clinical outcomes for very early versus late venous thromboembolism prophylaxis in patients with isolated severe spinal trauma
    Youssef Nasef, Alexander Brown, Sukriti Prashar, Ian Bundschu, Yusra Othman, Ariel Hus, Adel Elkbuli
    Thrombosis Research.2026; 259: 109627.     CrossRef
  • Every hour counts: Venous thromboembolism prophylaxis after spinal trauma
    Alexandra Campbell, Michael Rubsamen, Ryan Adkins, Katherine Sparling, Erin Brown, Danielle Tatum, Kevin Harrell, Jeanette Zhang, Clifton McGinness, Berje Shammassian, Sharven Taghavi
    Journal of Trauma and Acute Care Surgery.2026;[Epub]     CrossRef
  • Timing of thromboprophylaxis in acute spinal cord injury patients: a TQIP study in 15,960 patients
    Aazad Abbas, Robert Koucheki, Jay Toor, Robert Fowler, Avery B. Nathens, Albert Yee, Stephen Lewis, Jefferson R. Wilson, Christopher D. Witiw, Michael G. Fehlings, Cari Whyne, Jetan Badhiwala
    The Spine Journal.2026;[Epub]     CrossRef
  • Management of traumatic spinal cord injury in the Nordic countries: a multidisciplinary survey
    Anders C. Feyling, Johan Undén, Niklas Marklund, Ilke Malak, Ramona Åstrand, Jussi P. Posti, Tor Brommeland
    Scandinavian Journal of Trauma, Resuscitation and Emergency Medicine.2025;[Epub]     CrossRef
  • Venous Thromboembolism Prophylaxis in the Neurocritically Ill Population
    Oyshik Banerjee, Roysten Rodrigues, Lauren Adkins, Katharina M. Busl
    Journal of Clinical Medicine.2025; 14(13): 4434.     CrossRef
  • Risk factors for venous thromboembolism in patients with spinal cord injury: A systematic review and meta-analysis
    Bo Wei, Hongjun Zhou, Genlin Liu, Ying Zheng, Ying Zhang, Chunxia Hao, Yiji Wang, Haiqiong Kang, Xiaolei Lu, Yuan Yuan, Qianru Meng
    The Journal of Spinal Cord Medicine.2023; 46(2): 181.     CrossRef
  • Venous thromboembolism risk after spinal cord injury: A secondary analysis of the CLOTT study
    Laura N. Godat, Elliott R. Haut, Ernest E. Moore, M. Margaret Knudson, Todd W. Costantini
    Journal of Trauma and Acute Care Surgery.2023; 94(1): 23.     CrossRef
  • Proceedings from the 2022 Consensus Conference to Implement Optimal Venous Thromboembolism Prophylaxis in Trauma
    Elliott R. Haut, James P. Byrne, Michelle A. Price, Pamela Bixby, Eileen M. Bulger, Leslie Lake, Todd Costantini
    Journal of Trauma and Acute Care Surgery.2023; 94(3): 461.     CrossRef
  • Saudi Critical Care Society clinical practice guidelines on the prevention of venous thromboembolism in adults with trauma: reviewed for evidence-based integrity and endorsed by the Scandinavian Society of Anaesthesiology and Intensive Care Medicine
    Marwa Amer, Mohammed S. Alshahrani, Yaseen M. Arabi, Ahmed Al-jedai, Hassan M. Alshaqaq, Abdulaziz Al-Sharydah, Faisal A. Al-Suwaidan, Hosam Aljehani, Thamer Nouh, Hassan Mashbari, Nehal Tarazan, Saad Alqahtani, Wail Tashkandi, Khalid Maghrabi, Muneerah A
    Annals of Intensive Care.2023; 13(1): 41.     CrossRef
  • Weight-Based Dosing for Venous Thromboembolism Prophylaxis in Spinal Trauma Patients Appears Safe
    Thomas Heye, Tarendeep Thind, Allison Jenkins, Rebecca Reif, Hanna K. Jensen, Kevin Sexton, Kyle Kalkwarf, Avi Bhavaraju
    Journal of Surgical Research.2023; 290: 209.     CrossRef
  • Limaprost and the Risk of Bleeding: A Self-Controlled Case Series Study
    Eun-Joo Lee, Han Eol Jeong, Yoosoo Chang, Ju-Young Shin
    Neurospine.2023; 20(4): 1490.     CrossRef
  • American Association for the Surgery of Trauma/American College of Surgeons-Committee on Trauma Clinical Protocol for inpatient venous thromboembolism prophylaxis after trauma
    Brian K. Yorkgitis, Allison E. Berndtson, Alisa Cross, Ryan Kennedy, Matthew P. Kochuba, Christopher Tignanelli, Gail T. Tominaga, David G. Jacobs, William H. Marx, Dennis W. Ashley, Eric J. Ley, Lena Napolitano, Todd W. Costantini
    Journal of Trauma and Acute Care Surgery.2022; 92(3): 597.     CrossRef
  • Chemoprophylactic Anticoagulation 72 Hours After Spinal Fracture Surgical Treatment Decreases Venous Thromboembolic Events Without Increasing Surgical Complications
    Khaled Taghlabi, Brandon B. Carlson, Joshua Bunch, R. Sean Jackson, Robert Winfield, Douglas C. Burton
    North American Spine Society Journal (NASSJ).2022; 11: 100141.     CrossRef
  • Relationship between anti-Xa level achieved with prophylactic low-molecular weight heparin and venous thromboembolism in trauma patients: A systematic review and meta-analysis
    Kevin Verhoeff, Kendra Raffael, Matthew Connell, Janice Y. Kung, Matt Strickland, Arabesque Parker, Ram V. Anantha
    Journal of Trauma and Acute Care Surgery.2022; 93(2): e61.     CrossRef
  • Is Deep Vein Thrombosis Chemoprophylaxis Indicated After Spinal Irrigation and Débridement?
    Mark J. Lambrechts, Tristan Fried, Nicholas D. D’Antonio, Brian A. Karamian, John G. Bodnar, Sydney Somers, Jose A. Canseco, Ian David Kaye, Barrett I. Woods, Alan S. Hilibrand, Christopher K. Kepler, Alexander R. Vaccaro, Gregory D. Schroeder
    World Neurosurgery.2022; 168: e278.     CrossRef
  • The effectiveness and safety of LMWH for preventing thrombosis in patients with spinal cord injury: a meta-analysis
    Ze Lin, Yun Sun, Hang Xue, Lang Chen, Chenchen Yan, Adriana C. Panayi, Bobin Mi, Guohui Liu
    Journal of Orthopaedic Surgery and Research.2021;[Epub]     CrossRef
  • 17,219 View
  • 204 Download
  • 17 Web of Science
  • 17 Crossref

Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:

Include:

Postoperative Fever Evaluation Following Lumbar Fusion Procedures
Neurospine. 2018;15(2):154-162.   Published online June 19, 2018
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

Format:
Include:
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