Xueneng Yang, Ruijuan Li, Qiangqiang Qi, JunFei Liu, Xiaoyu Zheng, Jun Shu
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引用次数: 0
Abstract
Purpose: The aim of this study is to evaluate the clinical efficacy and safety of treating patients with rigid degenerative scoliosis by restoring intervertebral balance through a combination of interbody release and asymmetric grade 1 and 2 osteotomy.
Method: The medical collected clinical and radiographic data of patients with rigid degenerative scoliosis from our department between 2015 and 2022. A total of 60 patients were included in the study, comprising 20 males and 40 females, with an average follow-up period of 30.7 months. Data recorded included surgery duration, blood loss, number of fixed segments, hospital stay, complications, clinical scores, and radiographic parameters.
Results: The sagittal vertical axis improved from 4.28 ± 1.48 cm preoperatively to 2.90 ± 1.18 cm postoperatively, while the coronal vertical axis improved from 3.29 ± 1.72 cm preoperatively to 1.12 ± 0.62 cm postoperatively. The preoperative coronal Cobb angle was 30.85 ± 7.33°, which improved to 4.14 ± 3.06°postoperatively. Additionally, lumbar lordosis increased from 24.50 ± 17.24°preoperatively to 30.35 ± 6.11°postoperatively. VAS scores for back pain and leg pain, ODI scores, and JOA scores showed varying degrees of improvement.
Conclusion: Interbody release combined with asymmetric Grade 1 and 2 osteotomy to restore intervertebral balance significantly improves spinal deformity and postoperative functional scores in patients with rigid degenerative scoliosis.
期刊介绍:
Journal of Orthopaedic Surgery and Research is an open access journal that encompasses all aspects of clinical and basic research studies related to musculoskeletal issues.
Orthopaedic research is conducted at clinical and basic science levels. With the advancement of new technologies and the increasing expectation and demand from doctors and patients, we are witnessing an enormous growth in clinical orthopaedic research, particularly in the fields of traumatology, spinal surgery, joint replacement, sports medicine, musculoskeletal tumour management, hand microsurgery, foot and ankle surgery, paediatric orthopaedic, and orthopaedic rehabilitation. The involvement of basic science ranges from molecular, cellular, structural and functional perspectives to tissue engineering, gait analysis, automation and robotic surgery. Implant and biomaterial designs are new disciplines that complement clinical applications.
JOSR encourages the publication of multidisciplinary research with collaboration amongst clinicians and scientists from different disciplines, which will be the trend in the coming decades.