Huang Siyi, Yang Jiake, Li Xinyu, Tang Xiaodong, Ji Tao
Musculoskeletal Tumor Center, Peking University People's Hospital, Beijing, China.
Beijing Key Laboratory of Musculoskeletal Tumor, Beijing, China.
Front Bioeng Biotechnol. 2024 Jul 18;12:1400428. doi: 10.3389/fbioe.2024.1400428. eCollection 2024.
Femur and tibia are the most commonly affected sites for primary malignant bone tumors in children. The wide resection of the tumor frequently requires the physis to be resected. The normal growth of the unaffected limb will result in a significant limb length discrepancy at skeletal maturity. To compensate for this resulting LLD, different generations of extendible endoprostheses have been developed. Non-invasive extendable prostheses eliminate the need for surgical procedures and general anesthesia, enabling gradual and painless lengthening. Currently available non-invasive extendable prostheses focus on joint reconstruction, and no case series analysis of intercalary non-invasive extendable prosthesis has been reported. Therefore, we have designed a novel non-invasive electromagnetic extendable intercalary endoprosthesis. mechanical experiments and animal experiments were conducted. experiments have confirmed that the prosthetics can extend at a constant rate, increasing by 4.4 mm every 10 min. The average maximum extension force during prosthetic elongation can reach 1306N. In animal experiments, the extension process is smooth and non-invasive, and the sheep is in a comfortable state. The and animal studies provide evidence to support the extension reliability, laying the foundation for future large-scale validation experiments.
股骨和胫骨是儿童原发性恶性骨肿瘤最常累及的部位。肿瘤的广泛切除常常需要切除骨骺。未受影响肢体的正常生长会导致骨骼成熟时出现明显的肢体长度差异。为了弥补这种由此产生的肢体长度差异,已经开发了不同代的可延长假体。非侵入性可延长假体消除了手术和全身麻醉的需要,实现了逐渐且无痛的延长。目前可用的非侵入性可延长假体主要集中在关节重建方面,尚未有关于节段性非侵入性可延长假体的病例系列分析报道。因此,我们设计了一种新型的非侵入性电磁可延长节段性假体。进行了力学实验和动物实验。实验证实该假体能够以恒定速率延长,每10分钟增加4.4毫米。假体延长过程中的平均最大延长力可达1306牛。在动物实验中,延长过程顺利且无创,绵羊处于舒适状态。力学和动物研究为延长的可靠性提供了证据,为未来的大规模验证实验奠定了基础。