Bone and Joint Research Laboratory, DVA SLC HCS, Salt Lake City, Utah 84148; Department of Orthopaedics, University of Utah, Salt Lake City, Utah 84108, USA.
J Biomed Mater Res A. 2013 Jul;101(7):2075-82. doi: 10.1002/jbm.a.34510. Epub 2012 Dec 27.
A percutaneous, osseointegrated (OI) prosthetics are alternative docking systems for upper- and lower-extremity prostheses. Persistent inflammation and micro-motion are known to cause negative soft-tissue adaptation in wound healing and may also be detrimental to implant longevity. In this study, a unique single-stage sheep amputation and implantation model was developed to assess the efficacy of a porous coated sub-dermal fixation surface in the prevention of skin regression around a percutaneous osseointegrated prosthetic implant. Porous coated and smooth sub-dermal fixation surface prosthetics were implanted in the right forelimb of skeletally mature sheep for up to 12 months. Skin regression kinetics and sub-dermal fixation surface coverage were measured from histological samples. Quantitative measurements of porous coated surfaces yielded skin migration rates of 0.90 ± 0.23, 0.56 ± 0.15, 0.44 ± 0.22 mm/month for the 6, 9, and 12 month animals, respectively. In addition, three load dependent regions of skin adaptation were identified; an interface, a transition, and a stress absorbance region. Immediate post-implantation immobilization of the skin may foster improved load-bearing percutaneous device outcomes. The skin adaptations reported here will aid in informing the design and optimization of future percutaneous, OI devices intended for the treatment of upper- and lower-extremity amputees.
经皮、骨整合(OI)假肢是上肢和下肢假肢的替代对接系统。众所周知,持续的炎症和微动会导致伤口愈合中的软组织适应性不良,并且可能对植入物的寿命产生不利影响。在这项研究中,开发了一种独特的单阶段绵羊截肢和植入模型,以评估多孔涂层皮下固定表面在预防经皮骨整合假肢植入物周围皮肤退缩方面的功效。多孔涂层和光滑的皮下固定表面假肢被植入骨骼成熟绵羊的右前肢中长达 12 个月。从组织学样本中测量皮肤退缩动力学和皮下固定表面覆盖率。多孔涂层表面的定量测量得出的皮肤迁移率分别为 0.90±0.23、0.56±0.15、0.44±0.22mm/月,用于 6、9 和 12 个月的动物。此外,还确定了三个依赖于负载的皮肤适应区域;一个界面、一个过渡和一个应力吸收区域。皮肤的即刻植入后固定可能会促进经皮设备更好的承载结果。这里报告的皮肤适应性将有助于为旨在治疗上肢和下肢截肢者的未来经皮、OI 设备的设计和优化提供信息。