Skip to content
Open access

MRI-Based Vertebral Bone Quality Score and Paravertebral Muscle Parameters for Identifying Osteoporotic Vertebral Compression Fractures.

Aug 2026 · Journal of Magnetic Resonance Imaging · 1 citation · 47 references
Medicine

Abstract

Background

Osteoporotic vertebral compression fractures (OVCFs) are prevalent but frequently remain unrecognized. While bone mineral density (BMD) is the primary assessment tool, MRI-based parameters associated with bone and muscle quality may offer additional value, yet sex-specific analyses are limited, despite sex differences in incidence and hormones.

Purpose

To explore the associations between MRI-based vertebral bone quality (VBQ) score, psoas muscle index (PMI), and paravertebral muscle fat infiltration (FI) fraction with OVCFs, and to assess the potential diagnostic performance of MRI parameters across sexes. STUDY TYPE Retrospective. POPULATION 260 subjects (≥ 50 years); 130 OVCF patients (73.0 years (67.0-80.0), 89 females) and 130 non-fracture (NF) patients (64.5 years (58.0-73.0), 76 females). FIELD STRENGTH AND SEQUENCES 3 T and 1.5 T. T1-weighted TSE and T2-weighted TSE (Siemens) and T1-weighted FSE and T2-weighted FSE (United Imaging). ASSESSMENT VBQ was calculated on sagittal T1-weighted MRI; PMI and FI were quantified on axial T2-weighted MRI at the L3 endplate by ImageJ. BMD was derived from CT using QCT PRO software. Two trained observers, blinded to clinical data, performed all MRI measurements. STATISTICAL TESTS Significance level was set at p < 0.05. t-test/Mann-Whitney U test, chi-squared test (χ2), Spearman's rank correlation coefficient, multivariate logistic regression, receiver operating characteristic (ROC) curve analysis with area under the curve (AUC). Bootstrap resampling (1000 iterations) for internal validation.

Results

The OVCF group exhibited significantly elevated VBQ (3.71 ± 0.55 vs. 3.25 ± 0.58) and FI (24.11% (21.66-28.92) vs. 20.31% (18.90-22.14)), while PMI (3.42 ± 1.02 vs. 4.08 ± 1.14) and BMD (55.82 mg/cm3 (38.75-70.90) vs. 89.24 mg/cm3 (67.80-110.00)) were reduced. FI was independently associated with OVCFs exclusively in females (OR = 1.566). The combined MRI model (VBQ + FI + PMI) yielded a significantly higher AUC in females (AUC = 0.896) than in males (AUC = 0.720). DATA

Conclusion

VBQ, PMI, and FI reveal significant sex-specific correlations with OVCFs. The multi-parametric MRI model shows considerable potential as a diagnostic aid for OVCFs in individuals aged over 50, particularly in females. LEVEL OF EVIDENCE: 4 TECHNICAL EFFICACY STAGE 2 (Diagnostic Accuracy).

Read PDF

Similar papers

Open access Aug 2026

Segment-specific prediction of vertebral collapse severity in osteoporotic fractures

Background Osteoporotic vertebral compression fractures (OVCFs) predominantly cluster at the thoracolumbar junction (T11-L1). Recent studies suggest that both bone quality and muscle health significantly contribute to vertebral collapse. However, among numerous multidimensional imaging metrics, which one can most accurately predict the severity of vertebral collapse, and whether the precise load-sharing proportions between bone and muscle exhibit distinct segment-specific differences, remain rarely quantified in the clinical literature. Purpose To identify imaging metrics that best predict vertebral collapse severity and to quantify segment-specific contributions of bone and muscle quality at T11–L1. Methods This retrospective cohort study analyzed 223 postmenopausal patients with single-level OVCFs at T11–L1. The severity of vertebral collapse was quantified by the sagittal area compression ratio of the fractured vertebral body (SACR-FVB). Radiological parameters including bone mineral density (BMD), trabecular CT Hounsfield units (CT Hu), vertebral bone quality (VBQ), paravertebral muscle quality (PVMQ), and fat infiltration rate (FIR) were measured. LASSO regression selected predictors; segment-specific multivariate regression and LMG variance decomposition quantified proportional contributions; RCS modeled dose-response relationships. Results CT Hu and PVMQ were identified as significant independent predictors of SACR-FVB across all three evaluated segments (P < 0.05). LMG variance decomposition revealed that CT Hu consistently accounted for the largest proportion of the explained variance across all levels (68.2% at T11, 52.7% at T12, 56.3% at L1). However, the combined contribution of paraspinal muscle parameters (PVMQ and FIR) to the explained variance reached its maximum at the L1 segment (43.7%). Furthermore, RCS analyses confirmed that the structural vulnerability of the vertebral body manifests as a continuous gradient alongside local bone attenuation and progressive muscle deterioration. Conclusions CT Hu and PVMQ were identified as significant independent predictors of vertebral collapse severity across all thoracolumbar junction segments. Localized bone quality, measured by CT Hu, remained the primary structural determinant, while the combined contribution of paraspinal muscle parameters increased caudally. Continuous quantitative monitoring of bone and muscle imaging metrics may enable early identification of high-risk patients before vertebral collapse occurs. These findings underscore the importance of a segment-specific, multidimensional approach to individualized fracture risk assessment and intervention.

Yi-tao Liao, Xing-Guo Zhang, Xuanyu Xie et al. · 0 citations
Open access Aug 2026

Routine MRI for opportunistic osteoporosis screening: diagnostic accuracy of vertebral bone quality and a novel femoral bone quality score compared with DXA.

VBQ can serve as an opportunistic exploratory screening marker of low BMD and FBQcsf may complement VBQ by identifying early marrow-related changes, although further validation is required.

Margrit Elis Müller, João Paulo Colhado Ferreira, Laura Mulazzani Minuzzi Macedo et al. · 0 citations
Review Aug 2026

Prevalence and characteristics of morphometric vertebral fractures in the Spanish population: Data from the OsteoSER study.

MVFs affected nearly one in six Spanish adults aged ≥40 years, and were independently associated with male sex, older age, and lower hip BMD, and were independently associated with male sex, older age, and lower hip BMD.

C. Gómez-Vaquero, Jordi Fiter Aresté, M. Domínguez-Álvaro et al. · 0 citations
Open access Jul 2026

Development and validation of a CT-based predictive model for new vertebral compression fractures: the role of vertebral CT attenuation and paraspinal muscle

The nomogram developed based on conventional clinical data in this study, has undergone internal validation and demonstrated efficacy in predicting NVCF following PVP, and serves as a valuable decision-making tool for clinicians.

Yiqi Wu, Qing Song, Canwei Hu et al. · 0 citations
Review Open access Aug 2026

Trabecular bone score beyond bone mineral density for identifying osteoporotic vertebral compression fractures: a matched case-control study.

Study Design Retrospective sex- and age-matched case-control study. Purpose To assess bone mineral density (BMD)-trabecular bone score (TBS) discordance and high-burden abdominal aortic calcification (AAC) in patients with radiographically confirmed osteoporotic vertebral compression fracture (OVCF). Overview of Literature Conventional BMD thresholds may fail to identify all patients with vertebral skeletal fragility, as vertebral fractures can occur despite nonosteoporotic BMD. TBS complements BMD by evaluating trabecular microarchitecture, while AAC may serve as a marker of systemic bone-vascular health associated with skeletal fragility. Methods This retrospective sex- and age-matched case-control study enrolled patients aged ≥50 years who underwent dual-energy X-ray absorptiometry (DXA) with TBS assessment and vertebral imaging. OVCF was defined as a Genant grade 2 or 3 vertebral fracture. The primary cohort included 47 OVCF patients and 188 matched controls. BMD T-scores at the lumbar spine, femoral neck, total hip, TBS, and AAC-24 were evaluated. Matched conditional logistic regression was used to determine associations with OVCF. Results More than half of OVCF patients did not demonstrate osteoporotic BMD at any measured DXA site (53.2%). Among those with nonosteoporotic BMD, low TBS was more common in cases than in controls (48.0% vs. 22.7%). Low TBS remained independently associated with OVCF after adjusting for the lowest BMD T-score and high-burden AAC (odds ratio, 2.66; 95% confidence interval, 1.25-5.63; p =0.011). High-burden AAC was more frequent among cases, although its association was attenuated after adjustment. Conclusions Low TBS may aid in identifying vertebral skeletal fragility in OVCF patients with nonosteoporotic BMD on conventional DXA. High-burden AAC may provide vascular information, although its incremental association beyond BMD and TBS was attenuated.

Rathapoom Suwanaratana, Attaporn Lawanprasert, Nuttawut Chanalithichai · 0 citations