Mao, W., F. Dong, G. Huang, P. He, H. Chen, S. Qin and A. Li, 2021. Risk factors for secondary fractures to percutaneous vertebroplasty for osteoporotic vertebral compression fractures: A systematic review. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, J. Orthop. Surg. Res., Vol. 16. 10.1186/s13018-021-02722-w 1-10.
Tang, J., S. Wang, J. Wang, X. Wang and T. Li et al., 2024. Risk factors for secondary vertebral compression fracture after percutaneous vertebral augmentation: A single-centre retrospective study. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, J. Orthop. Surg. Res., Vol. 19. 10.1186/s13018-024-05290-x 1-10.
Johnell, O. and J.A. Kanis, 2006. An estimate of the worldwide prevalence and disability associated with osteoporotic fractures. Osteoporosis Int., 17: 1726-1733.
Kanis, J.A. and O.J. School, 1999. The burden of osteoporosis. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, J. Endocrinological Invest., 22: 1-10.
Griffoni, C., J.N.M. Lukassen, L. Babbi, M. Girolami and C. Lamartina et al., 2020. Percutaneous vertebroplasty and balloon kyphoplasty in the treatment of osteoporotic vertebral fractures: A prospective randomized comparison. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Eur. Spine J., 29: 1-10.
Jeon, I., S.W. Kim and D. Yu, 2022. Paraspinal muscle fatty degeneration as a predictor of progressive vertebral collapse in osteoporotic vertebral compression fractures. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, The Spine J., 22: 1-10.
Parkkola, R., U. Rytökoski and M. Kormano, 1993. Magnetic Resonance Imaging of the Discs and Trunk Muscles in patients with Chronic Low Back Pain and Healthy Control Subjects. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Spine, 18: 1-10.
Fortin, M., M. Omidyeganeh, M.C. Battié, O. Ahmad and H. Rivaz, 2017. Evaluation of an automated thresholding algorithm for the quantification of paraspinal muscle composition from MRI images. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, BioMed. Eng. OnLine, Vol. 16. 10.1186/s12938-017-0350-y 1-10.
Li, K.C., C.H. Hsieh, T.H. Liao and B.H. Cheng, 2022. A novel classification of cement distribution patterns based on plain radiographs associated with cement filling rate and relevance to the clinical results of unipedicle vertebroplasty. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Eur. Spine J., 32: 1-10.
Zhou, C., S. Huang, Y. Liao, F. Zhang and X. Meng et al., 2023. Feasibility Analysis of the Bone Cement‐Gelatine Sponge Composite Intravertebral Prefilling Technique for Reducing Bone Cement Leakage in Stage I and II Kümmell's Disease: A Prospective Randomized Controlled Trial. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Orthop. Surg., 15: 1-10.
Yang, S., Y. Liu, H. Yang and J. Zou, 2016. Risk factors and correlation of secondary adjacent vertebral compression fracture in percutaneous kyphoplasty. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Int. J. Surg., 36: 1-10.
Xiong, Y.C., W. Guo, F. Xu, C.C. Zhang and Z.P. Liang et al., 2021. Refracture of the cemented vertebrae after percutaneous vertebroplasty: Risk factors and imaging findings. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, BMC Musculoskeletal Disord., Vol. 22. 10.1186/s12891-021-04355-w 1-10.
Ekşi, M.Ş. and E.E. Özcan‐Ekşi, 2024. Fatty infiltration of the erector spinae at the upper lumbar spine could be a landmark for low back pain. 0 0, January 01-01, 1970, In: 0, 0 (Ed.)., 0 Edn., 0, 0, ISBN-1: 0, Pain Pract., 24: 1-10.