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The European Robotic Spinal Instrumentation (EUROSPIN) Study

The European Robotic Spinal Instrumentation (EUROSPIN) Study: A European Prospective Multicenter Multinational Pragmatic Trial on Robot-guided Versus Navigated Versus Freehand Pedicle Screw Fixation

Status
Active, not recruiting
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03398915
Acronym
EUROSPIN
Enrollment
932
Registered
2018-01-16
Start date
2019-01-01
Completion date
2026-05-01
Last updated
2026-03-31

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Degenerative Disc Disease, Recurrent Disc Herniation, Spinal Metastases, Spinal Stenosis, Spinal Tumor, Spondylodiskitis, Spondylolisthesis

Keywords

robotic, robot-guided, navigated, computer-assisted, pedicle screw, instrumentation, thoracolumbar

Brief summary

In a multinational prospective study, preoperative, intraoperative, perioperative and follow-up data on patients receiving thoracolumbar pedicle screw placement for degenerative disease or infections or tumors will be collected. The three arms consist of robot-guided (RG), navigated (NV), or freehand (FH) screw insertion.

Detailed description

Introduction A decade ago, minimally invasive surgery (MIS) was considered a promising development in spine surgery, yet the value of the pioneering technologies was questionable. With the growing number of experienced MIS surgeons, the influx of evidence in favour of MIS is rapidly increasing. This makes a compelling argument towards MIS offering distinct clinical benefits over open approaches in terms of blood loss, length of stay, rehabilitation, cost-effectiveness and perioperative patient comfort. Due to the limited or inexistent line-of-sight in MIS procedures, surgeons need to rely on imaging, navigation, and guidance technologies to operate in a safe and efficient manner. Therefore, a plethora of new and ever improving navigational systems have been developed. These systems allow a consistent level of safety and accuracy, on par with results achieved by very experienced free hand surgeons, with a reasonably short learning curve. Computer-based navigation systems were first introduced to spine surgery in 1995 and while they have been long established as standards in certain cranial procedures, they have not been similarly adopted in spine surgery. Designed to overcome some of the limitations of navigation-based technologies, robot-guided surgery has become commercially available to surgeons worldwide, like SpineAssist® (Mazor Robotics Ltd. Caesarea, Israel) and the recently launched ROSA™ Spine (Zimmer-Biomet, Warsaw, Indiana, USA). These systems are rapidly challenging the gold standards. SpineAssist®, and its upgraded version, the Renaissance®, provides a stable drilling platform and restricts the surgeon's natural full range of motion to 2 degrees of freedom (up/down motion and yaw in the cannula). The system's guidance unit moves into the trajectory based on exact preoperative planning of pedicle screws, while accounting for changes in intervertebral relationships such as due to distraction, cage insertion or changes between the supine patient position in the preoperative CT and the prone patient on the operating table. Published evidence on robot-guided screw placement has demonstrated high levels of accuracy with most reports ranging around 98% of screws placed within the pedicle or with a cortical encroachment of less than 2 mm.4 Although the reliability and accuracy of robot-guided spine surgery have been established, the actual benefits for the patient in terms of clinical outcomes and revision surgeries remain unknown. We have recently conducted cohort studies that showed some evidence that robotic guidance lowers the rate of intraoperative screw revisions and implant related reoperations compared to free hand procedures, while achieving comparable clinical outcomes. We now want to assess these factors, among others, on a higher level of evidence. We aim to conduct a prospective, multicenter, multinational controlled trial comparing clinical and patient reported outcomes of robotic guided (RG) pedicle screw placement vs. navigated (NV) vs. free hand (FH) pedicle screw placement using pooled data from three centers. Study Design The European Robotic Spinal Instrumentation (EUROSPIN) study is a prospective, international, multicentre, pragmatic, open-label, non-randomized controlled trial comparing the effectiveness of three techniques for pedicle screw instrumentation, namely RG, NV (CT-, O-Arm, or 3DFL-based), and FH. Following the baseline evaluation, patients will receive one of the three treatments, and will subsequently be followed up for 24 months (Figure 1). The primary analysis will be conducted using the 12-month data. Sample Size Calculation It was determined that, to detect an intergroup difference of 5% in the primary endpoint, 205 patients are required per group to achieve a power of 1 - beta = 0.8 at alpha = 0.05. The incidence rates were based on the published literature, with an approximated incidence rate of the primary endpoint of 0% for the intervention and 5% for the control group. Because the study protocol is in line with the normal clinical follow-up of most centers, a low dropout rate is expected. This led to a minimum total sample size of 615 patients. Monitoring An epidemiologist from the sponsor institution will organize an initiation monitor visit at every participating center before starting recruitment. This monitor visit will check whether all study staff are properly trained and the delegation of tasks are well documented (complete Investigator Site File, training and delegation logs). An additional audit will be carried out at 6 months after initiation of recruitment to check whether source documentation and eCRF documentation is similar. Throughout the entire study additional queries by the monitor are send to the investigator in the data capturing system to ensure proper data capturing.

Interventions

PROCEDURETranspedicular Instrumentation

Transpedicular screw placement and instrumentation

Sponsors

Marc Schröder
Lead SponsorOTHER
University Hospital, Zürich
CollaboratorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Informed consent * Thoracolumbar pedicle screw placement * Indication for surgery: Degenerative pathologies (stenosis, spondylolisthesis, degenerative disc disease, recurrent disc herniation), infections, tumors, fractures, trauma * Age ≥ 18

Exclusion criteria

* Deformity surgery * \>5 index levels

Design outcomes

Primary

MeasureTime frameDescription
Revision Surgery for a Malpositioned Pedicle Screw12 monthsWe defined the primary endpoint as required revision surgery for a malpositioned or loosened pedicle screw within the first postoperative year.

Secondary

MeasureTime frameDescription
Intraoperative Screw RevisionIntraoperativeRevision or redirection of a placed screw during the same general anesthesia session
Duration of SurgeryIntraoperativeDuration of Surgery in minutes
Length of Hospital StayThrough hospital stay (From admission to discharge of the hospital stay in which the primary surgery was carried out)Length of Hospital Stay in days (Defined as from admission to discharge, during the hospital stay in which the primary surgery was carried out)
Radiation Dose (DAP)IntraoperativeRadiation Dose as DAP (Dose Area Product, cGy cm2)
Estimated Blood LossIntraoperativeEstimated Blood Loss (ml)
Need for Blood TransfusionThrough hospital stay (From admission to discharge of the hospital stay in which the primary surgery was carried out)Need for blood transfusion during the hospital stay (Defined as from admission to discharge, during the hospital stay in which the primary surgery was carried out)
Intraoperative Complications0 weeksIntraoperative Complications
Postoperative Complications6 weeksPostoperative Complications
EQ-5D-3L2 yearsEQ-5D-3L (Health-related quality of life) EuroQOL-five dimensions 3-level version measures health-related quality of life. The scale is subdivided into an index, ranging from 0 to 1 and normalized to population-specific values, and a "thermometer" or visual analogue scale, ranging from 0 to 100. The two subscores are not combined towards a single score. Higher values represent a better health-related quality of life in both subscores.
NRS Back Pain Severity2 yearsNumeric Rating Scale (NRS) of back pain severity The scale ranges from 0 to 10. Only integers are available to choose from. Higher values represent a higher amount of pain. There are no subscales.
NRS Leg Pain Severity2 yearsNumeric Rating Scale (NRS) of leg pain severity The scale ranges from 0 to 10. Only integers are available to choose from. Higher values represent a higher amount of pain. There are no subscales.
Oswestry Disability Index2 yearsOswestry Disability Index (ODI) for functional impairment

Countries

Austria, France, Germany, Italy, Netherlands, Spain, Switzerland

Contacts

STUDY_DIRECTORVictor E Staartjes, MD, PhD

Department of Neurosurgery, University Hospital Zurich

PRINCIPAL_INVESTIGATORGranit Molliqaj, MD

Department of Neurosurgery, Hôpitaux Universitaires de Genève

STUDY_CHAIREnrico Tessitore, MD

Department of Neurosurgery, Hôpitaux Universitaires de Genève

Participant flow

Recruitment details

After attentive consideration the final number of included patients that met the inclusion criteria were 902

Baseline characteristics

Characteristic
Age, Categorical
<=18 years
0 Participants
Age, Categorical
>=65 years
389 Participants
Age, Categorical
Between 18 and 65 years
100 Participants
Age, Continuous60.4 years
STANDARD_DEVIATION 13.8
Race/Ethnicity, Customized0 Participants
Region of Enrollment
Austria
49 participants
Region of Enrollment
France
0 participants
Region of Enrollment
Germany
11 participants
Region of Enrollment
Italy
465 participants
Region of Enrollment
Netherlands
35 participants
Region of Enrollment
Spain
62 participants
Region of Enrollment
Switzerland
122 participants
Sex: Female, Male
Female
0 Participants
Sex: Female, Male
Male
0 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
1 / 38911 / 1988 / 315
other
Total, other adverse events
41 / 38947 / 19851 / 315
serious
Total, serious adverse events
4 / 3897 / 1984 / 315

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Apr 1, 2026