Table 1

Study characteristics providing information on the study design, comparative intervention, instrument details, study duration, population, number of patients, gender percentages, and body mass index of included patients.

StudyStudy DesignGroup ComparisonStudy GroupDetails of the Image Guidance SystemControl GroupDetails of the Image Guidance SystemDurationPopulationTotalNo. of PatientsAge, yGender (% men)BMI, kg/m2
TCTCTCTC
Allam et al, 201325 Cohort studyNCNavigated3D navigationConventionalJanuary 2009–March 2010Internal fixation for fractures, tumors, and spondylodiscitis of the thoracic spine and degenerative lumbar lordosis452718
Alqurashi et al, 202126 Prospective cohort studyNCNavigatedCT-guided navigationConventionalMarch 2016–April 2017Instrumented lumbar fusion using transpedicular screws57154259.3a
(27–76)
45a
(20–61)
26.742.929.5a
23,24,27–36
30.1a
22–24,27–38
Baky et al, 201939 Retrospective cohort studyNCNavigatedCT-guided navigationConventional2009–2015Younger than 19 y underwent pedicle screw instrumentation21710511213.913.832.3825
Bovonratwet et al, 201840 Retrospective cohort studyNCNavigatedAny navigationConventional2010–2015Posterior lumbar fusion, excludes multiple-level cases, uninstrumented cases, cases involving trauma, fracture, neoplasms, infection, or patient age <18 y58051161464458.85940.5740.9130.830.7
Budu et al, 202041 Retrospective cohort studyNCNavigated3D Iso-C scanConventional2013–2018Cases involving a pedicle or lateral mass screw insertion176total = 176
Crawford et al, 202242 Retrospective cohort studyNCNavigatedO-armConventionalJune 2012–May 2016155847153.37 (15.5)52.89 (18.5)54.742.2
De Biase et al, 202143 Retrospective cohort studyRCRoboticMazor X RobotConventionalJuly 2017–March 2020MIS TLIF101524956 (11.7)58.7 (10.5)42.85328.8 (4.8)30.3 (4.6)
Du et al, 202044 Retrospective cohort studyRNRoboticTinavi RobotNavigatedO-arm2017–2019Thoracolumbar internal fixation with pedicle screws30213616658.6 (9.9)60.1 (10.3)54.451.822.5 (4.3)23.2 (3.9)
Edström et al, 202045 Prospective study with retrospective controlACARARSNConventionalDeformity surgery for scoliosis and kyphosis44152928.3 (19)27.8 (17.1)46.631.37
Elmi-Terander et al, 202046 Prospective study with retrospective controlACARARSNConventional40202030 (19.4)36.6 (23.2)454519.8 (2.1)23.2 (5.5)
Fan et al, 201747 Retrospective cohort studyRNCRoboticSpineAssistNavigated and conventionalO-arm2017Degenerative pathology67392860.6 (7.9)65.1 (8)493922.9 (4.7)24.8 (3.5)
Fayed et al, 202048 Prospective comparative studyRCRoboticExcelsiusGPS systemConventionalDecember 2019–February 2020Degenerative spine conditions48202862.8a
(44–75)
57.1a
(53–83)
30.435.731.2 (5.8)NA
Fraser et al, 201049 Cohort studyNCNavigated3D Iso-C C-armConventionalDecember 2005–July 2007Degenerative lumbar instability42291355.1 (13.6)48.4 (12)41.446.2
Fu et al, 200850 Retrospective cohort studyNCNavigatedCTConventionalPedicle screw insertion below the level of T8241113
Gao et al, 202151 Retrospective cohort studyRCRoboticMazor Renaissance Surgical guidance robotConventionalDecember 2017–February 20202-Level percutaneous endoscopic LIF or MIS-TLIF41182361.6 (7.1)62.4 (6.1)44.447.826 (3.6)25.5 (2.9)
García-Fantini et al, 201852 Retrospective cohort studyNCNavigated3D isocentric fluoroscopic navigationConventional2012–2017Open L4-L5-S1 fixation with pedicle screw implantation135963960.658.728.1223.07
Good et al, 202153 Prospective comparative studyRCRoboticMazor Renaissance Surgical guidance robotConventionalOctober 2014–September 2018Primary short lumbar or lumbosacral percutaneous/MIS spinal fusion48537411159 (12.6)62.5 (12.8)43.937.831.2 (6.8)28.1 (5.2)
Gu et al, 202054 Prospective comparative studyACARHoloLens 2 mixed reality technologyConventionalJanuary 2017–October 2018Lumbar disc herniation and/or lumbar spondylolisthesis50252544.32 (3.78)45.56 (3.93)4452
Han et al, 201055 RCTNCNavigated3D computer navigationConventional2006Thoracic spine pedicle screw insertion422220
Han et al, 201956 RCTRCRoboticTiRobotConventionalJanuary 2016–September 2017Thoracolumbar posterior fusion due to degenerative or traumatic disorders23411511954.6 (11.3)56.1 (13.4)52.1751.2625.7 (4.1)24.9 (2.9)
Hyun et al, 201757 RCTRCRoboticMazor Renaissance Surgical guidance robotConventionalDecember 2013–January 2015Primary lumbar interbody fusion60303066.5 (8.1)66.8 (8.9)3026.724.7 (2.6)25.8 (3.3)
Ishikawa et al, 201058 Retrospective cohort studyNCNavigated3D fluoroscopy-based computer assistedConventional2003–2008Posterior cervical fixation62323059.3 (9.8)59.9 (18.3)62.553.33
Jin et al, 201659 Retrospective cohort studyNCNavigatedO-armConventionalJune 2011–September 2013Dystrophic neurofibromatosis I associated scoliosis31121914.8a
11–22
15.3a
12–24,27–29
38.4647.37
Karamian et al, 202332 Retrospective cohort studyRCRoboticGlobus Excelsius GPS and Medtronic Mazor Robotic RenaissanceConventionalJanuary 2014–August 20201–3-level lumbar fusion2628517765 (11.9)64.9 (11.5)44.744.629.7 (6.67)29.5 (5.58)
Katsevman et al, 202160 Retrospective cohort studyRCRoboticMazor X robotConventional2017–2019Posterior percutaneous thoracic and/or lumbar fixation surgery37172061.4 (13.8)57.3 (17.3)7552.9432.3 (6.7)31.9 (8.1)
Khanna et al, 201661 Retrospective cohort studyNCNavigatedO-armConventionalMarch 2005–May 20151-Level lumbar fusion surgery1367363
Kim et al, 201762 RCTRCRoboticMazor Renaissance Surgical guidance robotConventionalDecember 2013–October 2014Lumbar spinal stenosis78374165.4 (10.4)66 (8.6)5054.825.925.3
Kim et al, 201863 RCTRCRoboticMazor Renaissance Surgical guidance robotConventionalDecember 2013–October 2014Degenerative spinal disease with lumbar spinal stenosis78374165.4 (10.4)66 (8.6)51.454.825.925.3
Laine et al, 200064 RCTNCNavigatedMedivisionConventionalApril 1980–June 1999Thoracolumbar and lumbosacral fusion914150
Lai et al, 202265 Retrospective cohort studyRCRoboticMazor Renaissance Surgical guidance robotConventionalMay 2018–September 2020Degenerative lumbar disease underwent TLIF108297966a
(60–76.5)
64a
(54.5–71)
48.341.827.4a
(23.3–30.6)
25.9a
(23.4–29)
Laudato et al, 201866 Retrospective cohort studyRNCRoboticMazor roboticsNavigated and conventionalO-arm3611256563
Lau et al, 201367 Matched cohort studyNCNavigatedO-armConventional2006–2011MIS TLIF1423710550.2 (13.2)53.9 (14.6)48.635.231.9 (6.7)28.9 (5.8)
Liounakos et al, 202168 Retrospective review of a prospective studyRCRoboticMazorConventionalOctober 2014–January 2019Short segment minimally invasive lumbar interbody fusion procedure4853741115962.543.937.831.228.1
Li et al, 202069 RCTRCRoboticOrthbot systemConventionalAugust 2018–December 2018Posterior fusion for degenerative lumbar disease2772047.4 (12.9)49.9 (10.9)42.854024.3 (1.8)24.6 (2.6)
Lonjon et al, 201670 Prospective matched controlled studyRCRoboticROSA robotsConventionalApril–October 2013Posterior fusion for degenerative lumbar spine disease20101063.4 (11)63.4 (11)66.6766.6727.8 (4)27.3 (5.6)
Malham et al, 202271 RCTANARFLASHNavigated3D fluoroscopy2019–2020Open posterior lumbar fusion, exclude MIS because of necessity of bone registration90454563.86431.1148.88
Molliqaj et al, 201772 Retrospective cohort studyRCRoboticMazor robotConventional2007–2015Spinal instability due to degeneration, tumor, or trauma169987158.3 (12.8)54.4 (17)51.0250.7
Noshchenko et al, 201873 Retrospective cohort studyNCNavigatedO-armConventional2011–201281414059 (9.3)65 (9.2)29.334.5
Pendharkar et al, 201974 Matched retrospective studyNCNavigatedAny navigationConventional2007–2016Laminectomy and instrumented PLF: single level and 3–5 levels89389355.6 (12.2)55.1 (12.3)60.860.2
Rajasekaran et al, 200775 RCTNCNavigated3D Iso-C scanConventionalSpinal deformity correction using posterior pedicle screw of the thoracic spine33171619.6 (9.3)15.4 (4.3)35.2925
Ringel et al, 201276 RCTRCRoboticMazor SpineAssistConventionalLumbosacral stabilization60303068a 67a 46.674026a 28a
Ruatti et al, 201677 RCTNCNavigated3D fluoroscopyConventionalMarch 2011–July 20121437172
Schatlo et al, 201478 Matched retrospective studyRCRoboticMazor SpineAssistConventional2007–2011PLIF and TLIF95554052a
(27–83)
58a
(23-82)
47.33024.7 (3.7)28 (6.1)
Schizas et al, 201279 Prospective studyRCRoboticMazor bone-mounted roboticConventionalVertebral fracture, spinal stenosis, degenerative disc disease, or lumbar scoliosis; exclude thoracic scoliosis341123
Shafi et al, 202280 Retrospective cohort studyRNRoboticExcelsiusGPS systemNavigated3D fluoroscopyApril 2017–June 2021MIS TLIF2229213059.5 (12.1)58.5 (12.9)51.153.127.5 (4.9)27.9 (6.4)
Shi et al, 202181 Retrospective cohort studyRCRoboticRobotic system of ZhuzhensConventionalSeptember 2017–June 2019Thoracolumbar fracture underwent MIS pedicle screw fixation30131747a
(23-70)
49.1a
(25-69)
61.552.9424.16a
(19.1–27.0)
25.13a
(18.7–31.1)
Shin et al, 201582 RCTNCNavigatedO-armConventionalJanuary 2010–July 2010Thoracic or lumbar spine pathology40202057.5a
(30-72)
55.3a
(28-75)
6055
Silbermann et al, 201183 Comparative studyNCNavigatedO-armConventionalJanuary–September 2009PLIF or TLIF67373064.4160.156.7650
Solomiichuk et al, 201784 Matched retrospective studyRCRoboticMazor SpineAssistConventionalJune 2009–June 2015Metastatic spine disease70353563.7 (10.6)62.2 (11.1)6065.7
Su et al, 202085 Prospective controlled studyRCRoboticTiRobotConventionalDecember 2018–December 2019Posterior cervical surgeries for degenerative or trauma conditions58283060.40 (4.99)60.33 (5.23)53.5756.6723.53 (3.22)23.59 (2.64)
Boon Tow et al, 201586 Prospective studyRCRoboticO-armConventionalSingle-level lumbar degenerative spondylolisthesis38191960 (11.25)62 (18.07)
Urbanski et al, 201887 Cohort studyNCNavigatedO-armConventional2016Progressive idiopathic scoliosis49272220a
(11-45)
24a
(12-48)
18.5113.63
Wang et al, 202188 Retrospective cohort studyRCRoboticMazor Renaissance Surgical guidance robotConventionalJanuary 2017–January 2020Open surgery for lumbar spondylolisthesis62313157.2 (12.1)58.6 (10.7)25.832.2526.1 (3.8)26.4 (3.5)
Wang et al, 201989 Retrospective cohort studyNCNavigatedO-armConventionalJanuary 2014–June 20163-Level degenerative lumbar disease41202172.15 (5.58)72.57 (6.41)4557.14
Waschke et al, 201390 Retrospective cohort studyNCNavigatedCT navigationConventional1995–2005Pedicle screw instrumentation1006505501
Wu et al, 201091 RCTNCNavigated3D computer navigationConventional2006Pedicle screw instrumentation422220
Yang et al, 201992 Retrospective cohort studyRCRoboticMazor Renaissance Surgical guidance robotConventionalJanuary 2017–December 2017Unstable lumbar spondylolisthesis60303054 (7.7)55.1 (8.1)46.674023.5 (1.9)23.2 (1.7)
Yan et al, 202293 Retrospective cohort studyRCRoboticTiRobotConventionalDecember 2020–June 2021Thoracolumbar pedicle screw placement89404958.68 (11.64)60.78 (7.78)42.53526.5 (5.14)25.78 (3.2)
Zhang et al, 202194 Retrospective cohort studyRCRoboticRenaissance robot systemConventionalJanuary 2018–December 2019Lumbar revision surgery81394265.96 (7.55)66.86 (7.32)53.8452.3824.46 (2.26)23.68 (2.58)
Zhang et al, 201995 Retrospective cohort studyRCRoboticTiRobot systemConventionalMarch 2016–November 2017TLIF for lumbar degenerative surgery87434456.7 (12.5)60.2 (10.9)27.940.926.4 (3.9)25.2 (2.8)
Zhang et al, 201996 Prospective studyRCRoboticTiRobot systemConventionalFebruary 2016–2018Lumbar degenerative disease undergoing TLIF100505054.6 (11.1)55.6 (12.8)345225.6 (3.9)25.3 (3.1)
  • Abbreviations: AC, augmented reality-assisted vs conventional methods; AN, augmented reality-assisted vs navigated methods; AR, augmented reality; ARSN, augmented reality system navigation; C, control group; CT, computer tomography; 3D, 3-dimensional; LIF, lumbar interbody fusion; MIS, minimally invasive surgery; NC, navigated vs conventional methods; PLF, posterior lumbar fusion; PLIF, posterior lumbar interbody fusion; RC, robotic vs conventional methods; RCT, randomized controlled trial; RNC, robotic vs navigated vs conventional methods; T, treatment group; TLIF, transforaminal lumbar interbody fusion.

  • a Age and BMI were reported with mean (SD) or median (range).