Literature DB >> 28463623

Accuracy of robot-guided versus freehand fluoroscopy-assisted pedicle screw insertion in thoracolumbar spinal surgery.

Granit Molliqaj1, Bawarjan Schatlo2, Awad Alaid2, Volodymyr Solomiichuk2, Veit Rohde2, Karl Schaller1, Enrico Tessitore1.   

Abstract

OBJECTIVE The quest to improve the safety and accuracy and decrease the invasiveness of pedicle screw placement in spine surgery has led to a markedly increased interest in robotic technology. The SpineAssist from Mazor is one of the most widely distributed robotic systems. The aim of this study was to compare the accuracy of robot-guided and conventional freehand fluoroscopy-guided pedicle screw placement in thoracolumbar surgery. METHODS This study is a retrospective series of 169 patients (83 women [49%]) who underwent placement of pedicle screw instrumentation from 2007 to 2015 in 2 reference centers. Pathological entities included degenerative disorders, tumors, and traumatic cases. In the robot-assisted cohort (98 patients, 439 screws), pedicle screws were inserted with robotic assistance. In the freehand fluoroscopy-guided cohort (71 patients, 441 screws), screws were inserted using anatomical landmarks and lateral fluoroscopic guidance. Patients treated before 2009 were included in the fluoroscopy cohort, whereas those treated since mid-2009 (when the robot was acquired) were included in the robot cohort. Since then, the decision to operate using robotic assistance or conventional freehand technique has been based on surgeon preference and logistics. The accuracy of screw placement was assessed based on the Gertzbein-Robbins scale by a neuroradiologist blinded to treatment group. The radiological slice with the largest visible deviation from the pedicle was chosen for grading. A pedicle breach of 2 mm or less was deemed acceptable (Grades A and B) while deviations greater than 2 mm (Grades C, D, and E) were classified as misplacements. RESULTS In the robot-assisted cohort, a perfect trajectory (Grade A) was observed for 366 screws (83.4%). The remaining screws were Grades B (n = 44 [10%]), C (n = 15 [3.4%]), D (n = 8 [1.8%]), and E (n = 6 [1.4%]). In the fluoroscopy-guided group, a completely intrapedicular course graded as A was found in 76% (n = 335). The remaining screws were Grades B (n = 57 [12.9%]), C (n = 29 [6.6%]), D (n = 12 [2.7%]), and E (n = 8 [1.8%]). The proportion of non-misplaced screws (corresponding to Gertzbein-Robbins Grades A and B) was higher in the robot-assisted group (93.4%) than the freehand fluoroscopy group (88.9%) (p = 0.005). CONCLUSIONS The authors' retrospective case review found that robot-guided pedicle screw placement is a safe, useful, and potentially more accurate alternative to the conventional freehand technique for the placement of thoracolumbar spinal instrumentation.

Entities:  

Keywords:  BMI = body mass index; computer-assisted surgery; pedicle screw; robotic surgery; spinal fusion; spine instrumentation

Mesh:

Year:  2017        PMID: 28463623     DOI: 10.3171/2017.3.FOCUS179

Source DB:  PubMed          Journal:  Neurosurg Focus        ISSN: 1092-0684            Impact factor:   4.047


  36 in total

1.  Ensuring navigation integrity using robotics in spine surgery.

Authors:  Neil Crawford; Norbert Johnson; Nicholas Theodore
Journal:  J Robot Surg       Date:  2019-04-15

2.  Impact of robot-assisted spine surgery on health care quality and neurosurgical economics: A systemic review.

Authors:  Brian Fiani; Syed A Quadri; Mudassir Farooqui; Alessandra Cathel; Blake Berman; Jerry Noel; Javed Siddiqi
Journal:  Neurosurg Rev       Date:  2018-04-03       Impact factor: 3.042

3.  Highlights from the First Annual Spinal Navigation, Emerging Technologies and Systems Integration Meeting.

Authors:  Doniel Drazin; Peter Grunert; Roger Hartl; David Polly; Bernhard Meyer; Ken Catchpole; Ilya Laufer; Rajiv Sethi; Tiffany Perry; David Simon; Michael Wang; Charles Fisher; Marissa Scribner; Genevieve White; R Shane Tubbs; Rod J Oskouian; Terrence Kim; J Patrick Johnson
Journal:  Ann Transl Med       Date:  2018-03

Review 4.  Robotics in trauma and orthopaedics.

Authors:  Karthik Karuppiah; Joydeep Sinha
Journal:  Ann R Coll Surg Engl       Date:  2018-05       Impact factor: 1.891

5.  Navigated percutaneous versus open pedicle screw implantation using intraoperative CT and robotic cone-beam CT imaging.

Authors:  Dimitri Tkatschenko; Paul Kendlbacher; Marcus Czabanka; Georg Bohner; Peter Vajkoczy; Nils Hecht
Journal:  Eur Spine J       Date:  2019-12-09       Impact factor: 3.134

6.  A multicenter study of the 5-year trends in robot-assisted spine surgery outcomes and complications.

Authors:  Nathan J Lee; Eric Leung; Ian A Buchanan; Matthew Geiselmann; Josephine R Coury; Matthew E Simhon; Scott Zuckerman; Avery L Buchholz; John Pollina; Ehsan Jazini; Colin Haines; Thomas C Schuler; Christopher R Good; Joseph Lombardi; Ronald A Lehman
Journal:  J Spine Surg       Date:  2022-03

7.  Comparison of robot-assisted versus fluoroscopy-assisted minimally invasive transforaminal lumbar interbody fusion for degenerative lumbar spinal diseases: 2-year follow-up.

Authors:  Lianlei Wang; Chao Li; Zheng Wang; Donglai Li; Yonghao Tian; Suomao Yuan; Xinyu Liu
Journal:  J Robot Surg       Date:  2022-07-05

8.  Comparison of robot-assisted and freehand pedicle screw placement for lumbar revision surgery.

Authors:  Jia-Nan Zhang; Yong Fan; Xin He; Tuan-Jiang Liu; Ding-Jun Hao
Journal:  Int Orthop       Date:  2020-09-28       Impact factor: 3.075

9.  [Short-term effectiveness comparison between robotic-guided percutaneous minimally invasive pedicle screw internal fixation and traditional open internal fixation in treatment of thoracolumbar fractures].

Authors:  Shu Lin; Jiang Hu; Lun Wan; Liuyi Tang; Yue Wang; Yang Yu; Wei Zhang
Journal:  Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi       Date:  2020-01-15

10.  Robotic-Assisted Pedicle Screw Placement During Spine Surgery.

Authors:  Isador H Lieberman; Stanley Kisinde; Shea Hesselbacher
Journal:  JBJS Essent Surg Tech       Date:  2020-05-21
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