Authors
Han Yang, Qiang Tian, Dan Liu, Zhao-Cong Zhang, Xiao-Hui Li, Ming-Wang Qiu, Zhao-Jun Xia, Yikai Li, Zhun Xu, Zhi-Yong Fan
Published in
Annals of anatomy = Anatomischer Anzeiger : official organ of the Anatomische Gesellschaft. Pages 153366. Aug 29, 2026. Epub Aug 29, 2026.
Abstract
The anterior sacroiliac ligament (ASL) is often described as a thin ventral capsular reinforcement, potentially obscuring regional functional specialisation. We tested whether its superior and inferior regions provide distinct three-dimensional restraint during unilateral and bilateral anterior pelvic loading.
Twenty-seven fresh-frozen pelves (19 male and 8 female; mean age, 57.1 ± 15.5 years) were tested under anteriorly directed loading applied at the anterior superior iliac spines from 10 to 100N in intact, superior-resected, inferior-resected, and complete-resection states. Loading order and the superior-first versus inferior-first resection sequence were randomised. Optical tracking quantified three-dimensional translation and rotation. For each test condition, the mean of three repeated measurements was analysed. Data were analysed by two-factor repeated-measures ANOVA with Greenhouse-Geisser correction and Holm-adjusted contrasts.
Ligament state, loading mode, and their interaction affected every axis-specific and resultant outcome (all corrected p < 0.001; partial η² ranges, 0.981-0.992, 0.932-0.994, and 0.655-0.931). Superior resection increased all translational and rotational components. Inferior resection minimally affected unilateral X- and Y-axis translation but increased rotation and reduced local bilateral translation, indicating kinematic redistribution. Complete resection produced the greatest resultant motion. Bilateral loading increased resultant translation by 31.1%, 12.5%, 0.6%, and 17.1% in the intact, superior-resected, inferior-resected, and complete-resection states, respectively; the inferior-resection change was not significant.
The ASL is a regionally organised ligament rather than a mechanically uniform capsular reinforcement. Superior fibres provide broad multi-axial restraint, whereas inferior fibres are associated with a more rotation-dominant, loading-mode-dependent kinematic response. This regional functional anatomy provides a mechanistic basis for interpreting ventral SIJ disruption.
PMID:
42668125
Bibliographic data and abstract were imported from PubMed on 30 Aug 2026.
Read full publication at:
Please sign in
to see all details.
Advertisement
Stats
- Recommendations n/a n/a positive of 0 vote(s)
- Views 5
- Comments 0