Horas Konstantin, Schnettler Reinhard, Maier Gerrit, Schneider Gaby, Horas Uwe
Bone Research Program, ANZAC Research Institute, University of Sydney, Gate 3 Hospital Road, Concord, 2139, Australia,
Strategies Trauma Limb Reconstr. 2015 Apr;10(1):21-6. doi: 10.1007/s11751-015-0220-8. Epub 2015 Mar 28.
Callus distraction using bone segment transport systems is an applied process in the treatment of bone defects. However, complications such as muscle contractures, axial deviation and pin track infections occur in the treatment process using the currently available devices. Since successful treatment is influenced by the applied distraction force, knowledge of the biomechanical properties of the involved soft tissues is essential to improve clinical outcome and treatment strategies. To date, little data on distraction forces and the role of soft-tissue traction forces are available. The aim of this study was to assess traction forces generated by soft tissues during bone segment transport using a novel intramedullary callus distraction system on eight human femora. For traction force measurements, bone segment transport over 60-mm femoral defects was conducted under constant load measurement using 40- and 60-mm bone segments. The required traction forces for 60-mm bone segments were higher than forces for 40-mm bone segments. This study demonstrates that soft tissues are of relevance biomechanically in bone segment transport. The size of the bone segment and the selection of the region for osteotomy are of utmost importance in defining the treatment procedure.
使用骨段转移系统进行骨痂牵张是治疗骨缺损的一种应用方法。然而,在使用现有装置的治疗过程中会出现诸如肌肉挛缩、轴向偏移和针道感染等并发症。由于成功的治疗受所施加牵张力的影响,了解相关软组织的生物力学特性对于改善临床结果和治疗策略至关重要。迄今为止,关于牵张力和软组织牵引力作用的数据很少。本研究的目的是使用一种新型髓内骨痂牵张系统,在八具人类股骨上评估骨段转移过程中软组织产生的牵引力。为了测量牵引力,在使用40毫米和60毫米骨段的恒定负荷测量下,对60毫米股骨缺损进行骨段转移。60毫米骨段所需的牵引力高于40毫米骨段的牵引力。本研究表明,软组织在骨段转移中具有生物力学相关性。骨段的大小和截骨区域的选择在确定治疗程序中至关重要。