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Updated: Jan 18, 2026

Minimally Invasive Treatment for Thoracolumbar Burst Fracture Using Sagittal Alignment Screws and A Trauma Reduction Device
Published on: November 8, 2024
Biomechanical comparison of triangular osteosynthesis and triangular minimally invasive spinopelvic stabilization
Hans-Joachim Riesner1, Jason DePhillips2, Amber R Witt2
1German Armed Forces Hospital, Ulm, Germany.
Objectives:
To biomechanically compare triangular osteosynthesis (TOS) and a minimally invasive triangular spinopelvic stabilization (TMSS) technique for Type IV fragility fractures of the pelvis (FFP) in a cadaveric model.
Methods:
Six fresh-frozen lumbopelvic specimens (L3-pelvis; mean age 61.5 ± 11.5 yrs) with simulated Type IV U-shaped sacral fractures were sequentially instrumented with TOS (bilateral iliosacral screws + lumbopelvic fixation) and TMSS (bilateral iliac screws with transverse connecting rod + lumbopelvic fixation). Constructs were cyclically loaded (200-430 N; 25,000 cycles or 1 cm axial displacement) to simulate postoperative single-leg stance loading. Fracture displacement was quantified using a motion capture system.
Results:
All but one TOS specimen completed 25,000 cycles. Bone mineral density had no effect on displacement. TMSS showed lower maximum fracture displacement (6.05 mm) than TOS (12.12 mm; p= 0.071). Displacement after 1000 cycles averaged 56% (TOS) and 62% (TMSS) of the maximum.
Conclusions:
TMSS provided comparable or improved stability versus TOS and, with its minimally invasive design, may offer a viable alternative for FFP Type IV treatment. Further clinical validation is warranted.
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