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"Feifei Zhou"

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"Feifei Zhou"

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Artificial Intelligence

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Predicting Postoperative Progression of Ossification of the Posterior Longitudinal Ligament in the Cervical Spine Using Interpretable Radiomics Models
Neurospine. 2025;22(1):144-156.   Published online March 31, 2025
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Predicting Postoperative Progression of Ossification of the Posterior Longitudinal Ligament in the Cervical Spine Using Interpretable Radiomics Models
Neurospine. 2025;22(1):144-156.   Published online March 31, 2025
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Objective
This study investigates the potential of radiomics to predict postoperative progression of ossification of the posterior longitudinal ligament (OPLL) after posterior cervical spine surgery.
Methods
This retrospective study included 473 patients diagnosed with OPLL at Peking University Third Hospital between October 2006 and September 2022. Patients underwent posterior spinal surgery and had at least 2 computed tomography (CT) examinations spaced at least 1 year apart. OPLL progression was defined as an annual growth rate exceeding 7.5%. Radiomic features were extracted from preoperative CT images of the OPLL lesions, followed by feature selection using correlation coefficient analysis and least absolute shrinkage and selection operator, and dimensionality reduction using principal component analysis. Univariable analysis identified significant clinical variables for constructing the clinical model. Logistic regression models, including the Rad-score model, clinical model, and combined model, were developed to predict OPLL progression.
Results
Of the 473 patients, 191 (40.4%) experienced OPLL progression. On the testing set, the combined model, which incorporated the Rad-score and clinical variables (area under the receiver operating characteristic curve [AUC] = 0.751), outperformed both the radiomics-only model (AUC = 0.693) and the clinical model (AUC = 0.620). Calibration curves demonstrated good agreement between predicted probabilities and observed outcomes, and decision curve analysis confirmed the clinical utility of the combined model. SHAP (SHapley Additive exPlanations) analysis indicated that the Rad-score and age were key contributors to the model’s predictions, enhancing clinical interpretability.
Conclusion
Radiomics, combined with clinical variables, provides a valuable predictive tool for assessing the risk of postoperative progression in cervical OPLL, supporting more personalized treatment strategies. Prospective, multicenter validation is needed to confirm the utility of the model in broader clinical settings.

Citations

Citations to this article as recorded by  Crossref logo
  • Plasma proteomic profiles reveal proteins and characteristic patterns associated with hypertension: A prospective cohort study
    Hongrui Zhang, Zhuoshuai Liang, Xinmeng Hu, Huizhen Jin, Yuan Zhang, Jiahe Wang, Bowen Yu, Yuyang Tian, Shuang Qiu, Yong Li, Yulu Gu, Yunkai Liu, Yi Cheng, Jikang Shi, Yawen Liu
    Journal of Hypertension.2026; 44(7): 1254.     CrossRef
  • 6,074 View
  • 119 Download
  • 1 Web of Science
  • 1 Crossref

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Evaluation and Comparation of a Novel Surgical Technique and Hemivertebra Resection to the Correction of Congenital Cervical Scoliosis in Lower Cervical and Cervicothoracic Spine
Neurospine. 2022;19(4):1071-1083.   Published online November 18, 2022
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Evaluation and Comparation of a Novel Surgical Technique and Hemivertebra Resection to the Correction of Congenital Cervical Scoliosis in Lower Cervical and Cervicothoracic Spine
Neurospine. 2022;19(4):1071-1083.   Published online November 18, 2022
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Objective
To report concave-side distraction technique to treat congenital cervical scoliosis in lower cervical and cervicothoracic spine. To evaluate and compare clinical and radiographic results of this procedure with classic hemivertebra resection procedure.
Methods
This study reviewed 29 patients in last 13 years. These patients were divided into convex-side resection group (group R) and concave-side distraction group (group D). Radiographic assessment was based on parameter changes preoperatively, postoperatively and at last follow-up. Demographic data, surgical data and complications were also evaluated and compared between the 2 groups.
Results
In group R, mean age was 8.9 ± 3.3 years and follow-up was 46 ± 18 months. Operation time and blood loss averaged 500 ± 100 minutes, 703 ± 367 mL. In group D, mean age was 9.9 ± 2.8 years and follow-up was 34 ± 14 months. Operation time and blood loss averaged 501 ± 112 minutes, 374 ± 181 mL. Structural Cobb angle was corrected from 29.4° ± 12.5° to 5.3° (2.1°–18.1°) (p = 0.001) and 33.7° ± 14.1° to 12.8° ± 11.4° (p < 0.001) in groups R and D. Compensatory Cobb angle had a spontaneous correction rate of 59.6% (40.0%–80.8%) and 59.7% ± 23.0% in groups R and D. Mandibular incline, clavicle angle and spine coronal balance were significantly improved at last follow-up in both groups. All correction rates were not statistically different between groups. However, group D had significant less blood loss (p < 0.001) and operation time (p = 0.004) per vertebra than group R. Seven patients developed C5 nerve root palsy and recovered by 6 months of follow-up.
Conclusion
Both surgical procedures are safe and effective in correcting congenital cervical scoliosis. But concave-side distraction technique has less blood loss and time-consuming during surgery, which provides a better option for the treatment of congenital cervical scoliosis.

Citations

Citations to this article as recorded by  Crossref logo
  • Eccentric cranial traction combined with concave-side distraction: a novel and effective management for correcting congenital cervical scoliosis
    Dazhao Tie, Zhenxu Li, Xiaoxiong Yang, Tian Xia, Shengfa Pan, Xin Chen, Yanbin Zhao, Shilin Xue, Yu Sun, Feifei Zhou
    Spine Deformity.2026; 14(3): 1009.     CrossRef
  • One-stage posterior-only radical hemivertebra resection and short-segment fusion for congenital cervicothoracic scoliosis: a cohort study
    Yihan Yang, Weishi Liang, Yeqiu Xu, Duan Sun, Lijin Zhou, Yong Hai
    BMC Surgery.2026;[Epub]     CrossRef
  • Cervical scoliosis surgery: understanding neurological complications and defining prevention strategies. A biomechanical study and narrative review
    Heiko Koller, Klemen Bošnjak, Jure Leban, Armand Dominik Škapin, Chiedozie Kenneth Ugwoke, Juliane Koller, Wolfgang Hitzl, Lovro Suhodolčan, Miha Vodičar
    European Spine Journal.2026;[Epub]     CrossRef
  • Curve Behavior of Distal Segments After Posterior‐Only Hemivertebra Resection for Congenital Cervicothoracic Scoliosis
    Yang Li, Zezhang Zhu, Wanyou Liu, Saihu Mao, Zhen Liu, Xu Sun, Yong Qiu, Benlong Shi
    Orthopaedic Surgery.2025; 17(3): 869.     CrossRef
  • Early one-stage posterior-only surgery for congenital cervicothoracic scoliosis in children: medium- and long-term follow-up
    Cefei Zhang, Fuyun Liu, Ke Xu, Weiming Hu, Bing Xia, Yufeng Zhao
    Frontiers in Surgery.2025;[Epub]     CrossRef
  • How to Apply the Sequential Correction Technique to Treatment of Congenital Cervicothoracic Scoliosis: A Technical Note and Case Series
    Saihu Mao, Kai Sun, Song Li, Jie Zhou, Hongda Bao, Benlong Shi, Xu Sun, Zhen Liu, Yong Qiu, Zezhang Zhu
    Orthopaedic Surgery.2025; 17(7): 2159.     CrossRef
  • The single-cell transcription reveals the aberrant differentiation trajectory of chondrocytes in the intervertebral disc for congenital scoliosis
    Junfeng Wang, Haodong Li, Dong Fu, Yiming Zheng, Chuang Qian, Lin Li, Maoxiang Qian, Dahui Wang
    iScience.2025; 28(6): 112608.     CrossRef
  • Congenital Cervical Scoliosis at the Craniovertebral Junction
    Dazhao Tie, Tian Xia, Shuo Cao, Shengfa Pan, Xin Chen, Yanbin Zhao, Yu Sun, Feifei Zhou
    Journal of Bone and Joint Surgery.2025; 107(21): 2406.     CrossRef
  • Clinical Classification of Adolescent Cervicothoracic Hemivertebra Treated with Surgical Intervention Incorporating Shoulder Balance Considerations
    Jinhui Wu, Biao Yang, Yefeng Zhao, Ce Wang, Xuhui Zhou
    World Neurosurgery.2025; 202: 124362.     CrossRef
  • Progressive coronal caudal curve after corrective osteotomies for congenital cervicothoracic scoliosis: incidence and predictors
    Ziqun Liu, Bin Jiang, Yifang Jiang, Yawei Li, Yuliang Dai, Lei Li, Yupeng Zhang, Zhenzhong Zheng, Bing Wang
    European Spine Journal.2024; 33(4): 1675.     CrossRef
  • Posterior-only approach cervical hemivertebrectomy and short fusion with pedicle screws in young children with cervical scoliosis: case report and technical note
    Saihu Mao, Yong Qiu, Zhen liu, Benlong Shi, Song Li, Jun Jiang, Zezhang Zhu
    European Spine Journal.2024; 33(10): 3993.     CrossRef
  • Design, fabrication, and evaluation of single- and multi-level 3D-printed non-covering cervical spinal fusion surgery templates
    A. H. Safahieh, H. Nazemi, N. Arjmand, P. Azimi, K. Khalaf
    Frontiers in Bioengineering and Biotechnology.2024;[Epub]     CrossRef
  • Minimally invasive spine surgery strategy for congenital cervicothoracic scoliosis in children: Less blood loss and shortened segmental fusions/fewer pedical screws
    Zhou Zhiguo, Liu Fan, Lei Yuanxue, Wu Xing, Wang Si, Li Ruichen
    Frontiers in Surgery.2023;[Epub]     CrossRef
  • Cervical hemivertebrae: A literature review on the evolution of surgical management and its results
    Nikita O. Khusainov, Dmitriy N. Kokushin, Alexandra N. Filippova, Sergei V. Vissarionov
    Pediatric Traumatology, Orthopaedics and Reconstructive Surgery.2023; 11(2): 219.     CrossRef
  • 8,368 View
  • 309 Download
  • 13 Web of Science
  • 14 Crossref