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Accepted for/Published in: JMIR Perioperative Medicine

Date Submitted: May 21, 2026
Date Accepted: Aug 21, 2026

The final, peer-reviewed published version of this preprint can be found here:

In-House 3D Planning for Corrective Osteotomy of the Distal Radius: Prospective Cohort Study With 1-Year Radiological and Clinical Follow-Up

Stor Swinkels C, Axelsson P, Libberecht K, Fredrikson P, Gryska E, Björkman A

In-House 3D Planning for Corrective Osteotomy of the Distal Radius: Prospective Cohort Study With 1-Year Radiological and Clinical Follow-Up

JMIR Perioper Med 2026;9:e101764

DOI: 10.2196/101764

PMID: 42715417

In-house 3D planning for corrective osteotomy of the distal radius: A prospective cohort study with one-year radiological and clinical follow-up

  • Charlotte Stor Swinkels; 
  • Peter Axelsson; 
  • Katleen Libberecht; 
  • Per Fredrikson; 
  • Emilia Gryska; 
  • Anders Björkman

ABSTRACT

Background:

Distal radius malunions occur in 5–17% of fractures and may lead to pain and functional impairment. While three-dimensional (3D) surgical planning with patient-specific guides has demonstrated high accuracy and reduced fluoroscopy use compared with conventional two-dimensional techniques, its routine clinical implementation remains limited, particularly for in-house hospital-based workflows.

Objective:

This study aimed to evaluate the precision of corrective osteotomy for distal radius malunions using in-house designed 3D patient-specific surgical guides one year after surgery. Secondary objectives were to assess clinical and patient-reported outcomes and to document intraoperative fluoroscopy use.

Methods:

Corrective osteotomies of extra-articular distal radius malunions were performed in 16 consecutive patients using in-house 3D surgical planning and patient-specific surgical guides. Accuracy was evaluated by comparing preoperative plans with one-year postoperative computed tomography-based 3D models, assessing ulnar variance, volar tilt and radial inclination. Acceptable error margins were defined as ≤ 5° for volar tilt and ≤ 2 mm for ulnar variance. Clinical outcomes were evaluated using patient-reported outcome measures and range of motion, lift, grip and torque strength measurements.

Results:

The mean error was −0.8 mm (SD 1.0 mm) in ulnar variance, −4.6º (SD 3.2º) in volar tilt and −0.7º (SD 2.4º) in radial inclination. The corrections were within predefined equivalence bounds of the virtual plans in terms of ulnar variance, but not volar tilt. Significant improvements were observed in Patient-Rated Wrist Evaluation (PRWE) and Disabilities of the Arm, Shoulder and Hand (DASH) scores, pain during activity, pain at rest, lift strength, wrist flexion and ulnar deviation.

Conclusions:

3D technology enables accurate planning, execution and evaluation of corrective osteotomies. Despite generally good outcomes, residual alignment errors and two major complications highlight the complexity of these procedures. In-house 3D planning supports continuous surgical refinement and quality improvement.


 Citation

Please cite as:

Stor Swinkels C, Axelsson P, Libberecht K, Fredrikson P, Gryska E, Björkman A

In-House 3D Planning for Corrective Osteotomy of the Distal Radius: Prospective Cohort Study With 1-Year Radiological and Clinical Follow-Up

JMIR Perioper Med 2026;9:e101764

DOI: 10.2196/101764

PMID: 42715417

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