Trabecular Bone Score Reflects Trabecular Microarchitecture Deterioration and Fragility Fracture in Female Adult Patients Receiving Glucocorticoid Therapy: A Pre-Post Controlled Study.
Mei-Hua ChuangTzyy-Ling ChuangMalcolm KooYuh-Feng WangPublished in: BioMed research international (2017)
A recently developed diagnostic tool, trabecular bone score (TBS), can provide quality of trabecular microarchitecture based on images obtained from dual-energy X-ray absorptiometry (DXA). Since patients receiving glucocorticoid are at a higher risk of developing secondary osteoporosis, assessment of bone microarchitecture may be used to evaluate risk of fragility fractures of osteoporosis. In this pre-post study of female patients, TBS and fracture risk assessment tool (FRAX) adjusted with TBS (T-FRAX) were evaluated along with bone mineral density (BMD) and FRAX. Medical records of patients with (n = 30) and without (n = 16) glucocorticoid treatment were retrospectively reviewed. All patients had undergone DXA twice within a 12- to 24-month interval. Analysis of covariance was conducted to compare the outcomes between the two groups of patients, adjusting for age and baseline values. Results showed that a significant lower adjusted mean of TBS (p = 0.035) and a significant higher adjusted mean of T-FRAX for major osteoporotic fracture (p = 0.006) were observed in the glucocorticoid group. Conversely, no significant differences were observed in the adjusted means for BMD and FRAX. These findings suggested that TBS and T-FRAX could be used as an adjunct in the evaluation of risk of fragility fractures in patients receiving glucocorticoid therapy.
Keyphrases
- bone mineral density
- postmenopausal women
- body composition
- end stage renal disease
- dual energy
- newly diagnosed
- ejection fraction
- chronic kidney disease
- peritoneal dialysis
- healthcare
- prognostic factors
- type diabetes
- deep learning
- machine learning
- high resolution
- image quality
- skeletal muscle
- quality improvement
- convolutional neural network
- magnetic resonance
- bone marrow
- insulin resistance
- soft tissue
- optical coherence tomography
- bone loss
- bone regeneration