| Literature DB >> 24907127 |
Yi-Long Chen1, Wen-Chuan Chen2, Chi-Wei Chou3, Jou-Wen Chen2, Chia-Ming Chang4, Yu-Shu Lai5, Cheng-Kung Cheng6, Shih-Tien Wang7.
Abstract
Pedicle screws are widely utilized to treat the unstable thoracolumbar spine. The superior biomechanical strength of pedicle screws could increase fusion rates and provide accurate corrections of complex deformities. However, osteoporosis and revision cases of pedicle screw substantially reduce screw holding strength and cause loosening. Pedicle screw fixation becomes a challenge for spine surgeons in those scenarios. The purpose of this study was to determine if an expandable pedicle screw design could be used to improve biomechanical fixation in osteoporotic bone. Axial mechanical pull-out test was performed on the expandable, conventional and augmented pedicle screws placed in a commercial synthetic bone block which mimicked a human bone with severe osteoporosis. Results revealed that the pull-out strength and failure energy of expandable pedicle screws were similar with conventional pedicle screws augmented with bone cement by 2 ml. The pull-out strength was 5-fold greater than conventional pedicle screws and the failure energy was about 2-fold greater. Besides, the pull-out strength of expandable screw was reinforced by the expandable mechanism without cement augmentation, indicated that the risks of cement leakage from vertebral body would potentially be avoided. Comparing with the biomechanical performances of conventional screw with or without cement augmentation, the expandable screws are recommended to be applied for the osteoporotic vertebrae.Entities:
Keywords: Cement augmentation; Expandable pedicle screw; Failure energy; Osteoporosis; Pedicle screw; Pull-out
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Year: 2014 PMID: 24907127 DOI: 10.1016/j.medengphy.2014.05.003
Source DB: PubMed Journal: Med Eng Phys ISSN: 1350-4533 Impact factor: 2.242