Institute for Biomechanics, ETH Zürich, Zürich, Switzerland.
Zimmer Biomet, Winterthur, Switzerland.
PLoS One. 2020 May 29;15(5):e0233548. doi: 10.1371/journal.pone.0233548. eCollection 2020.
This study proposes to use cross-interface quantitative acoustics (ci-qA) and load self-referencing (LSR) to assess implant stability in a radiation-free, inexpensive, rapid, and quantitative manner. Eight bone analog specimens, made from polyurethane foam, were implanted with a cementless stemless shoulder implant-first in a fixed and later in a loose configuration-and measured using ci-qA under two load conditions. The loose implants exhibited higher micromotion and lower pull-out strength than their stable counterparts, with all values falling within the range of reported reference values. All acoustic characteristics differentiated between loose and fixed implants (maximum area-under-curve AUC = 1.0 for mean total signal energy, AUC = 1.0 for mean total signal energy ratio, AUC = 0.8 for harmonic ratio, and AUC = 0.92 for load self-referencing coefficient). While these results on bone substitute material will need to be confirmed on real bone specimen, ci-qA could ultimately facilitate the assessment of primary stability during implantation surgery and avoid unnecessary revision through quantitative evaluation of secondary stability during follow-up.
本研究提出使用跨界面定量声学(ci-qA)和负载自参考(LSR)以无辐射、廉价、快速和定量的方式评估植入物稳定性。 八个由聚氨酯泡沫制成的骨模拟标本,首先以固定的方式然后以松动的方式植入无水泥柄肩植入物,并在两种负载条件下使用 ci-qA 进行测量。松动的植入物表现出比稳定的植入物更高的微动和更低的拔出强度,所有值都在报告的参考值范围内。所有声学特征都区分了松动和固定的植入物(平均总信号能量的最大曲线下面积 AUC = 1.0,平均总信号能量比的 AUC = 1.0,谐波比的 AUC = 0.8,负载自参考系数的 AUC = 0.92)。虽然这些在骨替代材料上的结果需要在真正的骨标本上得到证实,但 ci-qA 最终可以通过在随访期间对继发性稳定性进行定量评估来促进在植入手术期间评估原发性稳定性,并避免不必要的翻修。