scholarly journals Neurological events due to pedicle screw malpositioning with lateral fluoroscopy guided pedicle screw insertion

2021 ◽  
Vol 1 ◽  
pp. 100190
Author(s):  
Inge Caelers ◽  
Kim Rijkers ◽  
Sander Van Kuijk ◽  
Henk Van Santbrink ◽  
Rob De Bie ◽  
...  
2020 ◽  
Vol 33 (6) ◽  
pp. 806-811
Author(s):  
Inge J. M. H. Caelers ◽  
Kim Rijkers ◽  
Sander M. J. van Kuijk ◽  
Henk van Santbrink ◽  
Rob A. de Bie ◽  
...  

OBJECTIVEThe risk of novel postoperative neurological events due to pedicle screw malpositioning in lumbar fusion surgery is minimized by using one of the several image-guided techniques for pedicle screw insertion. These techniques for guided screw insertion range from intraoperative fluoroscopy to intraoperative navigation. A practical technique consists of anatomical identification of the screw entry point followed by lateral fluoroscopy used for guidance during insertion of the screw. This technique is available in most clinics and is less expensive than intraoperative navigation. However, the safety of lateral fluoroscopy–guided pedicle screw placement with regard to novel postoperative neurological events due to screw malposition has been addressed only rarely in the literature. In this study the authors aimed to determine the rate of novel postoperative neurological events due to intraoperative and postoperatively established screw malpositioning during lateral fluoroscopy–assisted screw insertion.METHODSIncluded patients underwent lateral fluoroscopy–assisted lumbosacral screw insertion between January 2012 and August 2017. The occurrence of novel postoperative neurological events was analyzed from patient files. In case of an event, surgical reports were screened for the occurrence of intraoperative screw malposition. Furthermore, postoperative CT scans were analyzed to identify and describe possible screw malposition.RESULTSIn total, 246 patients with 1079 screws were included. Novel postoperative neurological events were present in 36 patients (14.6%). In 8 of these 36 patients (3.25% of the total study population), the neurological events could be directly attributed to screw malposition. Screw malpositioning was caused either by problematic screw insertion with immediate screw correction (4 patients) or by malpositioned screws for which the malposition was established postoperatively using CT scans (4 patients). Three patients with screw malposition underwent revision surgery without subsequent symptom relief.CONCLUSIONSLateral fluoroscopy–assisted lumbosacral screw placement results in low rates of novel postoperative neurological events caused by screw malposition. In the majority of patients suffering from novel postoperative neurological events, these events could not be attributed to screw malpositioning, but rather were due to postoperative neurapraxia of peripheral nerves, neuropathy, or intraoperative traction of nerve roots.


2019 ◽  
Vol 31 (1) ◽  
pp. 139-146 ◽  
Author(s):  
Camilo A. Molina ◽  
Nicholas Theodore ◽  
A. Karim Ahmed ◽  
Erick M. Westbroek ◽  
Yigal Mirovsky ◽  
...  

OBJECTIVEAugmented reality (AR) is a novel technology that has the potential to increase the technical feasibility, accuracy, and safety of conventional manual and robotic computer-navigated pedicle insertion methods. Visual data are directly projected to the operator’s retina and overlaid onto the surgical field, thereby removing the requirement to shift attention to a remote display. The objective of this study was to assess the comparative accuracy of AR-assisted pedicle screw insertion in comparison to conventional pedicle screw insertion methods.METHODSFive cadaveric male torsos were instrumented bilaterally from T6 to L5 for a total of 120 inserted pedicle screws. Postprocedural CT scans were obtained, and screw insertion accuracy was graded by 2 independent neuroradiologists using both the Gertzbein scale (GS) and a combination of that scale and the Heary classification, referred to in this paper as the Heary-Gertzbein scale (HGS). Non-inferiority analysis was performed, comparing the accuracy to freehand, manual computer-navigated, and robotics-assisted computer-navigated insertion accuracy rates reported in the literature. User experience analysis was conducted via a user experience questionnaire filled out by operators after the procedures.RESULTSThe overall screw placement accuracy achieved with the AR system was 96.7% based on the HGS and 94.6% based on the GS. Insertion accuracy was non-inferior to accuracy reported for manual computer-navigated pedicle insertion based on both the GS and the HGS scores. When compared to accuracy reported for robotics-assisted computer-navigated insertion, accuracy achieved with the AR system was found to be non-inferior when assessed with the GS, but superior when assessed with the HGS. Last, accuracy results achieved with the AR system were found to be superior to results obtained with freehand insertion based on both the HGS and the GS scores. Accuracy results were not found to be inferior in any comparison. User experience analysis yielded “excellent” usability classification.CONCLUSIONSAR-assisted pedicle screw insertion is a technically feasible and accurate insertion method.


2005 ◽  
Vol 12 (2) ◽  
pp. 123
Author(s):  
Young Joon Ahn ◽  
Choon Sung Lee ◽  
Ji Hyo Kim ◽  
Kyeong Il Jeong ◽  
Yung Tae Kim

2009 ◽  
Vol 18 (9) ◽  
pp. 1300-1313 ◽  
Author(s):  
Heiko Koller ◽  
Wolfgang Hitzl ◽  
Frank Acosta ◽  
Mark Tauber ◽  
Juliane Zenner ◽  
...  

Neurosurgery ◽  
1999 ◽  
Vol 45 (3) ◽  
pp. 710-711
Author(s):  
Kevin Foley ◽  
Y. Raja Rampersaud ◽  
Alfred C. Shen ◽  
Scott Williams ◽  
Milo Solomito

2017 ◽  
Vol 23 ◽  
pp. 5960-5968 ◽  
Author(s):  
Yong Fan ◽  
Jinpeng Du ◽  
Jianan Zhang ◽  
Shichang Liu ◽  
Xukai Xue ◽  
...  

2021 ◽  
Vol 0 ◽  
pp. 0-0
Author(s):  
Tiffany Yeretsian ◽  
Carolyn Lai ◽  
Daipayan Guha ◽  
Joel Ramjist ◽  
Victor X. D. Yang

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