Evaluating Three-Dimensional Navigation versus Conventional Fluoroscopy for Posterior Cervical Foraminotomy: An Exploratory Cohort Comparison

 SFX Search Permissions and Reprints(opens in new window) Article preview thumbnailAbstract Background

Unilateral monosegmental radiculopathy, caused by foraminal soft disc nerve root compression, can be treated with posterior cervical foraminotomy (PCF). Conventional fluoroscopy is widely used for level localization and verifying decompression extent intraoperatively. However, the failure rate increases, especially in obese patients and the lower cervical spine. Can intraoperative three-dimensional (3D) navigation improve outcomes in PCF compared with conventional fluoroscopy?

Materials and Methods

In this retrospective study, we analyzed two groups: 42 patients (mean age: 54 ± 10 years) who underwent PCF using intraoperative 3D navigation (study group) and 63 patients (mean age: 51 ± 11 years) who underwent PCF with conventional fluoroscopy (control group). Each cohort was divided into upper (C3–C6) and lower cervical spine (C6–T1) subgroups. Differences were explored by Mann–Whitney U and Friedman tests.

Results

Both groups experienced significant postoperative symptom improvement, with no significant neurological differences. Subgroup analyses revealed no significant differences between surgeries in the upper (C3–C6) and lower (C6–T1) cervical spine. Only blood loss in the C3–C6 group differed significantly between control and study groups.

Conclusion

Intraoperative 3D navigation was successfully used for PCF, resulting in significant symptom relief. Outcomes after PCF with 3D navigation appeared comparable to those achieved with conventional fluoroscopy, without statistical evidence of a clear advantage. Thus, technical complexity should be considered when selecting the surgical method.

Keywords posterior cervical foraminotomy - 3D navigation - fluoroscopy - intraoperative CT - foraminal stenosis

‡ Contributed equally.

Publication History

Received: 29 November 2025

Accepted: 15 January 2026

Article published online:
01 July 2026

© 2026. The Author(s). This is an open access article published by Thieme under the terms of the Creative Commons Attribution License, permitting unrestricted use, distribution, and reproduction so long as the original work is properly cited. (https://creativecommons.org/licenses/by/4.0/)

Georg Thieme Verlag KG
Oswald-Hesse-Straße 50, 70469 Stuttgart, Germany

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