Department of Orthopedic Surgery, Research Institute for Convergence of Biomedical Science and Technology, Pusan National University Yangsan Hospital, Pusan National University School of Medicine, 20 Geumo-ro, Mulgeum-eup, Yangsan, Gyeongsangnam-do, 626-770, Republic of Korea.
Department of Orthopedic Surgery, Pusan National University Hospital, Busan, Republic of Korea.
Sci Rep. 2023 Dec 20;13(1):22769. doi: 10.1038/s41598-023-50217-x.
The use of a large femoral head in total hip arthroplasty (THA) to stabilize and reduce the incidence of dislocation is on the increase, but concerns arise when combining them with small acetabular components due to potential mechanical failures in thin polyethylene (PE) liners. A single-institution, retrospective cohort study was conducted on 116 patients with minimum 2-year follow-up who received 36-mm femoral heads and acetabular components ≤ 52 mm, using either remelted highly cross-linked polyethylene (remelted HXLPE) or vitamin E-infused HXLPE (VEPE). Osteolysis and implant loosening were not observed in either group. Although a fracture of the PE liner was observed in each group (1.7%), the clinical outcomes were excellent, as the mean modified Harris Hip Score (mHHS) at the last follow-up was 93.5. Moreover, the mean linear wear rates measured by digital imaging software in both groups were low, with 0.035 mm/y in remelted HXLPE and 0.030 mm/y in VEPE. In conclusion, The use of a large femoral head on a thin PE liner can be a viable treatment option in patients who need to prioritize stability; however, careful attention should be paid to mechanical fractures of the PE liner.
在全髋关节置换术 (THA) 中使用大股骨头来稳定并降低脱位发生率的做法越来越多,但当将其与小髋臼组件结合使用时,由于薄型聚乙烯 (PE) 衬垫存在潜在的机械故障,人们会产生担忧。对接受 36mm 股骨头和髋臼组件≤52mm 的 116 例患者进行了单中心回顾性队列研究,这些患者使用的是再加工高交联聚乙烯(再加工 HXLPE)或维生素 E 注入高交联聚乙烯(VEPE)。在这两组患者中均未观察到骨溶解和植入物松动。虽然在每组中都观察到了 PE 衬垫的破裂(1.7%),但临床结果非常出色,因为末次随访时平均改良 Harris 髋关节评分(mHHS)为 93.5。此外,通过数字成像软件测量的两组线性磨损率均较低,再加工 HXLPE 组为 0.035mm/y,VEPE 组为 0.030mm/y。总之,在需要优先考虑稳定性的患者中,使用薄型 PE 衬垫的大股骨头可能是一种可行的治疗选择;但是,应密切注意 PE 衬垫的机械性破裂。