Makarewich Christopher A, Herzenberg John E, McClure Philip K
Department of Orthopaedics, University of Utah, Salt Lake City, Utah.
ediatric Orthopedics, Sinai Hospital of Baltimore, Department of Orthopaedics, University of Maryland School of Medicine, Baltimore, Maryland.
Surg Technol Int. 2020 May 28;36:404-411.
Magnetically controlled intramedullary lengthening nails (MCILN) have revolutionized the field of limb lengthening and deformity correction. They allow for accurate and precise distraction with excellent patient outcomes and satisfaction. Though potentially technically easier than external fixation, general deformity principles and bone and soft-tissue biology must be considered for successful use. MCILN can address deformities of a wide range of etiologies including congenital, posttraumatic, post-infectious, tumor, and many others with excellent healing rates and outcomes as well as better patient satisfaction and similar cost compared to external fixation. Of the approximately 10,000 MCILN that have been implanted (written communication, NuVasive, Inc., San Diego, California), about 749 cases have been reported in the published literature. Applications outside of deformity correction are on the rise, with new uses reported in reconstruction after tumor resection and acute trauma. This review of MCILN summarizes the history, recent advances, and results of MCILN treatment in a multitude of clinical applications.
磁控髓内延长钉(MCILN)彻底改变了肢体延长和畸形矫正领域。它们能够实现精确的牵张,患者预后良好且满意度高。虽然在技术上可能比外固定更容易,但要成功使用,必须考虑一般的畸形原则以及骨与软组织生物学特性。MCILN可用于治疗多种病因导致的畸形,包括先天性、创伤后、感染后、肿瘤性等,其愈合率和治疗效果良好,患者满意度更高,与外固定相比成本相近。在已植入的约10,000枚MCILN中(书面交流,NuVasive公司,加利福尼亚州圣地亚哥),已发表的文献报道了约749例病例。畸形矫正之外的应用正在增加,肿瘤切除和急性创伤后的重建等新用途也有报道。本文对MCILN的综述总结了其在众多临床应用中的历史、近期进展及治疗结果。