Enhancing fracture risk indication: The impact of bone load index and muscle fat infiltration on vertebral compression fracture.

Xiao-Yue Jiang, Zhi-Yang Tang, Bo-Wen Liu, Si-Yuan Lu, Dong-Gang Pan, Hui Jiang, Xiu-Hong Shan
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Abstract

Purpose: This study aims to identify risk factors for vertebral compression fracture and enhance the ability to indicate fracture risk.

Methods: A retrospective collection of clinical and imaging data was conducted for patients with vertebral compression fractures and control subjects who underwent quantitative computed tomography scans. Stepwise logistic regression analysis was employed to identify variables associated with fractures, constructing both unadjusted model and adjusted model.

Results: Compared with the non-fracture group, the fracture group showed significant differences in weight, body mass index (BMI), bone mineral density (BMD), vertebral cross-sectional area, paraspinal muscle area and right psoas major muscle fat area (all P < 0.05). Adjusted characteristics analyzed by stepwise logistic regression indicated that bone load index (BLI) (OR = 3.19, P = 0.041), paraspinal muscle fat infiltration (PMFI) (OR = 2.27, P = 0.039), and right psoas major muscle fat infiltration (RPMFI) (OR = 1.08, P = 0.005) were independent risk factors for vertebral fractures. Interaction analysis revealed a positive interaction between BLI and PMFI (OR = 1.95, P = 0.008) as well as RPMFI (OR = 1.53, P = 0.045). Compared with the unadjusted model, the diagnostic performance of the adjusted model was significantly improved (training set IDI: 19.5 %, validation set IDI: 18.4 %, P < 0.001). Correlation analysis demonstrated significant associations between BMD (r = -0.353, P = 0.002), BLI (r = 0.631, P < 0.001), PMFI (r = 0.412, P < 0.001), RPMFI (r = 0.513, P < 0.001), and the degree of vertebral compression.

Conclusion: Under conditions of bone maladaptive loading and muscle degeneration, vertebral bodies may become more susceptible to external forces, increasing the risk of vertebral compression fracture.

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加强骨折风险指示:骨负荷指数和肌肉脂肪浸润对椎体压缩性骨折的影响。
目的:本研究旨在确定椎体压缩性骨折的风险因素,并提高预测骨折风险的能力:方法:对接受定量计算机断层扫描的椎体压缩性骨折患者和对照受试者的临床和影像学数据进行回顾性收集。采用逐步逻辑回归分析法确定与骨折相关的变量,建立未调整模型和调整模型:结果:与非骨折组相比,骨折组在体重、体重指数(BMI)、骨质密度(BMD)、椎体横截面积、脊柱旁肌肉面积和右腰大肌脂肪面积等方面均存在显著差异(均为 P 结论:骨折组与非骨折组相比,在体重、体重指数(BMI)、骨质密度(BMD)、椎体横截面积、脊柱旁肌肉面积和右腰大肌脂肪面积等方面均存在显著差异:在骨不适应负荷和肌肉退化的情况下,椎体可能更容易受到外力的影响,从而增加椎体压缩性骨折的风险。
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来源期刊
Experimental gerontology
Experimental gerontology Ageing, Biochemistry, Geriatrics and Gerontology
CiteScore
6.70
自引率
0.00%
发文量
0
审稿时长
66 days
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