距下植入物在儿童平足矫正中的迁移:一项合成骨模型的初步研究。

Q3 Medicine
M. Kwiatkowski, T. Guszczyn, A. Sobolewski, M. Sar, A. Hermanowicz
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引用次数: 0

摘要

背景:距下假体移位是距下关节内固定后的并发症,已有科学文献报道。然而,临床研究不能明确地确定潜在的原因。该研究的目的是确定两种几何类型的距下植入物的迁移风险。生物力学测试是在一个带有软组织替代物的合成骨模型上进行的,这可以减少由生物差异引起的结果的可变性。材料与方法采用合成骨和与足部软组织硬度相同的硅胶软组织替代物制备反映自然解剖结构的足模型。研究了两种11mm Ti6Al4V钛合金植入物,即矩形距下螺钉和圆柱距下螺钉,圆柱距下螺钉是儿童平足重建手术中常用的一种。将螺钉放置于跗骨窦内并进行循环加载(频率为5 Hz,最大载荷为500 N,最多可达1,000,000次)。在植入后和动态加载试验后立即进行比较拔出力测试。Wyniki。动载试验结束后,12个试样均符合拔出力试验要求。圆柱形螺钉在植入后立即测试的样品和经过动态加载的样品都显示出更高的拔出力值。同种形状种植体的Mann-Whitney U检验差异无统计学意义(p >0.05)。Wniosek。该综合研究模型在评估种植体迁移风险方面产生了可重复的结果。长期负荷对种植体移位风险无显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Migration of Subtalar Implants in Paediatric Flatfoot Correction: A Pilot Study in Synthetic Bone Models.
BACKGROUND Subtalar implant migration as a complication following subtalar arthroeresis has been described in the scientific literature. However, clinical studies do not allow for unequivocally determining the underlying causes. The aim of the study is to determine the risk of migration of two geometric types of subtalar implants. Biomechanical tests were carried out on a synthetic bone model with a soft tissue substitute, which allowed for reduction of variability of results caused by biological differences. MATERIAL AND METHODS A foot model mirroring natural anatomy was made from synthetic bone and a silicone soft tissue substitute with the same hardness as that of the soft tissues of the foot. Two types of 11 mm Ti6Al4V titanium alloy implants were studied, namely, a rectangular subtalar screw and a cylindrical subtalar screw, a type commonly used in flatfoot reconstruction surgery in children. The screws were placed in the sinus tarsi and subjected to cyclic loading (up to 1,000,000 cycles at a frequency of 5 Hz, with a maximum load of 500 N). Comparative pull-out force tests were performed immediately following implantation and after the dynamic loading test. Wyniki. Following the dynamic loading test, all 12 samples were qualified for the pull-out force test. Cylindrical screws demonstrated higher pull-out force values both for the samples tested immediately following implantation and for those that underwent dynamic loading. Implants of the same shape did not show statistically significant differences in the Mann-Whitney U test (p >0.05). Wniosek. The synthetic research model produces reproducible results in the assessment of risk of implant migration. Long-term loading does not significantly affect the risk of implant migration.
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来源期刊
Ortopedia, traumatologia, rehabilitacja
Ortopedia, traumatologia, rehabilitacja Medicine-Rehabilitation
CiteScore
1.00
自引率
0.00%
发文量
26
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