首例使用生物活性可降解髓内植入物进行伊利扎罗夫股骨延长术的临床病例

IF 0.4 Q4 ORTHOPEDICS
A. Popkov, S. Tverdokhlebov, Sergei Muradisinov, Dmitry Popkov
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引用次数: 0

摘要

介绍。Ilizarov牵张成骨术是骨科实践中公认的肢体延长方法。其最具挑战性的问题是长时间的外固定和相关的针道感染和关节挛缩。解决方案可能是使用生物活性可降解的髓内植入物刺激骨愈合。案例演示。我们提出了一个14岁的男孩6厘米创伤后股骨缩短和相关的内翻畸形20度。患者采用Ilizarov技术在髓内可降解聚己内酯(PCL)种植体上羟基磷灰石(HA)填充股骨延长。我们在延长过程中没有遇到并发症。股骨短缩和畸形在90天内得到矫正。外固定指数为15天/厘米。与常规方法相比,外固定时间缩短了近两倍。可降解髓内钉确保了避免拔除手术的优势。x线摄影和CT证实新骨愈合和重塑更快。结论。在PCL/HA种植体上联合延长技术可用于缩短外固定时间和刺激骨愈合,特别是对骨受损患者。使用生物可吸收材料的好处是不需要第二次手术来移除指甲,从而减少软组织损伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First Clinical Case of Ilizarov Femur Lengthening over a Bioactive and Degradable Intramedullary Implant
Introduction. The Ilizarov distraction osteogenesis is a recognized method of limb lengthening in orthopaedic practice. Its most challenging problems are long duration of external fixation and related pin-tract infection and joint contractures. The solution might be the use of a bioactive degradable intramedullary implant stimulating bone healing. Case Presentation. We present a case of a 14-year-old boy with 6 cm posttraumatic shortening of the femur and associated varus deformity of 20 degrees. He was treated with the Ilizarov technique of femur lengthening over an intramedullary degradable polycaprolactone (PCL) implant with hydroxyapatite (HA) filling. We faced no complications within the lengthening process. Shortening and deformity of the femur were corrected in 90 days. The index of external fixation was 15 days/cm. External fixation time was reduced almost twice comparing to the conventional method. Degradable intramedullary nails ensured the advantage of avoidance of the removal procedure. Radiography and CT confirmed faster new bone healing and remodeling. Conclusion. The combined lengthening technique over a PCL/HA implant might be used to shorten external fixation time and to stimulate bone healing especially in patients with compromised bone. Using a bioabsorbable material presents the benefit of eliminating the need for a second surgery to remove the nail, thereby reducing soft tissue damage.
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