Uncoupled Auxiliary S2-Alar-Iliac Screws in Long Lumbopelvic Constructs: Exploratory Finite Element Analysis and Preliminary Clinical Experience

Background and Objectives: In this study, uncoupled auxiliary trans-sacroiliac (UATS) screws were evaluated as a mechanically independent adjunct to conventional S2-alar-iliac (S2AI) fixation in long lumbopelvic constructs. We assessed their exploratory biomechanical behavior and preliminary clinical feasibility. Methods: Conventional bilateral S2AI fixation and the same construct supplemented with bilateral UATS screws were compared in an exploratory finite element analysis under flexion, extension, lateral bending, and axial rotation. A retrospective clinical series of 26 patients undergoing UATS-supported lumbopelvic reconstruction was also evaluated. Results: Across the four loading modes, the UATS configuration showed lower global implant-system stress (81–92% reduction) and lower global sacral stress (43–67% reduction) within the computational model. The clinical cohort was revision dominant (25/26 patients). Mean SIJ-related pain VAS decreased from 8.0 ± 1.5 to 2.4 ± 1.0 and ODI from 68.1% ± 18.1% to 16.7% ± 8.6% at final follow-up (both p < 0.001). These clinical changes reflect the overall reconstructive procedure and cannot be attributed independently to UATS fixation. Conclusions: UATS placement was technically feasible in this small, revision-dominant cohort and altered stress distribution in an exploratory, unvalidated finite element model. The present study does not establish independent clinical efficacy or superiority over established pelvic fixation or SIJ fusion strategies.

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Publication Details

Journal
Journal of Clinical Medicine
Published
2026-09-24
DOI
https://doi.org/10.3390/jcm15197447
Primary Topic
Pelvic and Acetabular Injuries
Type
article
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article

Uncoupled Auxiliary S2-Alar-Iliac Screws in Long Lumbopelvic Constructs: Exploratory Finite Element Analysis and Preliminary Clinical Experience

Hakan Millet, Celal Özbek Çakır, Ülkün Ünlü Ünsal, İsmail Bozkurt et al.
Journal of Clinical Medicine
Pelvic and Acetabular Injuries
article

Uncoupled Auxiliary S2-Alar-Iliac Screws in Long Lumbopelvic Constructs: Exploratory Finite Element Analysis and Preliminary Clinical Experience

Hakan Millet, Celal Özbek Çakır, Ülkün Ünlü Ünsal, İsmail Bozkurt, Erdal Yayla, Eser Pala, Murat Baloglu
article en

Abstract

Background and Objectives: In this study, uncoupled auxiliary trans-sacroiliac (UATS) screws were evaluated as a mechanically independent adjunct to conventional S2-alar-iliac (S2AI) fixation in long lumbopelvic constructs. We assessed their exploratory biomechanical behavior and preliminary clinical feasibility. Methods: Conventional bilateral S2AI fixation and the same construct supplemented with bilateral UATS screws were compared in an exploratory finite element analysis under flexion, extension, lateral bending, and axial rotation. A retrospective clinical series of 26 patients undergoing UATS-supported lumbopelvic reconstruction was also evaluated. Results: Across the four loading modes, the UATS configuration showed lower global implant-system stress (81–92% reduction) and lower global sacral stress (43–67% reduction) within the computational model. The clinical cohort was revision dominant (25/26 patients). Mean SIJ-related pain VAS decreased from 8.0 ± 1.5 to 2.4 ± 1.0 and ODI from 68.1% ± 18.1% to 16.7% ± 8.6% at final follow-up (both p < 0.001). These clinical changes reflect the overall reconstructive procedure and cannot be attributed independently to UATS fixation. Conclusions: UATS placement was technically feasible in this small, revision-dominant cohort and altered stress distribution in an exploratory, unvalidated finite element model. The present study does not establish independent clinical efficacy or superiority over established pelvic fixation or SIJ fusion strategies.

Journal of Clinical MedicineVol. 15(19)
Manisa Celal Bayar University (TR), Eskişehir City Hospital (TR), Memorial Ankara Hospital (TR), Yüksek İhtisas Üniversitesi (TR), Afyon Kocatepe University (TR)
Openalex Percentile: Top 9%
Pelvic and Acetabular Injuries
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