Suppr超能文献

一种新型可定制骨折固定技术的生物力学变异性与可用性

Biomechanical Variability and Usability of a Novel Customizable Fracture Fixation Technique.

作者信息

Colding-Rasmussen Thomas, Schwarzenberg Peter, Horstmann Peter Frederik, Ottesen Casper Bent Smedegaard, Garcia Jorge San Jacinto, Hutchinson Daniel John, Malkoch Michael, Petersen Michael Mørk, Varga Peter, Tierp-Wong Christian Nai En

机构信息

Department of Orthopedic Surgery, Hvidovre University Hospital, Kettegaard Allé 30, 2650 Hvidovre, Denmark.

AO Research Institute Davos, Clavadelerstrasse 8, 7270 Davos, Switzerland.

出版信息

Bioengineering (Basel). 2023 Sep 29;10(10):1146. doi: 10.3390/bioengineering10101146.

Abstract

A novel in situ customizable osteosynthesis technique, Bonevolent™ AdhFix, demonstrates promising biomechanical properties under the expertise of a single trained operator. This study assesses inter- and intra-surgeon biomechanical variability and usability of the AdhFix osteosynthesis platform. Six surgeons conducted ten osteosyntheses on a synthetic bone fracture model after reviewing an instruction manual and completing one supervised osteosynthesis. Samples underwent 4-point bending tests at a quasi-static loading rate, and the maximum bending moment (BM), bending stiffness (BS), and AdhFix cross-sectional area (CSA: mm²) were evaluated. All constructs exhibited a consistent appearance and were suitable for biomechanical testing. The mean BM was 2.64 ± 0.57 Nm, and the mean BS was 4.35 ± 0.44 Nm/mm. Statistically significant differences were observed among the six surgeons in BM ( < 0.001) and BS ( = 0.004). Throughout ten trials, only one surgeon demonstrated a significant improvement in BM ( < 0.025), and another showed a significant improvement in BS ( < 0.01). A larger CSA corresponded to a statistically significantly higher value for BM ( < 0.001) but not for BS ( = 0.594). In conclusion, this study found consistent biomechanical stability both across and within the surgeons included, suggesting that the AdhFix osteosynthesis platform can be learned and applied with minimal training and, therefore, might be a clinically viable fracture fixation technique. The variability in BM and BS observed is not expected to have a clinical impact, but future clinical studies are warranted.

摘要

一种新型的原位可定制骨固定技术——Bonevolent™ AdhFix,在经过单一训练的操作人员的专业操作下,展现出了良好的生物力学性能。本研究评估了外科医生之间以及同一外科医生内部使用AdhFix骨固定平台时的生物力学变异性和可用性。六位外科医生在查阅操作手册并完成一次有监督的骨固定操作后,在合成骨折模型上进行了十次骨固定操作。样本在准静态加载速率下进行了4点弯曲试验,并评估了最大弯矩(BM)、弯曲刚度(BS)和AdhFix横截面积(CSA:mm²)。所有构建物外观一致,适合进行生物力学测试。平均BM为2.64±0.57 Nm,平均BS为4.35±0.44 Nm/mm。六位外科医生在BM(<0.001)和BS(=0.004)方面存在统计学上的显著差异。在整个十次试验中,只有一位外科医生的BM有显著改善(<0.025),另一位外科医生的BS有显著改善(<0.01)。较大的CSA对应于BM的统计学显著更高值(<0.001),但对BS而言并非如此(=0.594)。总之,本研究发现,在所纳入的外科医生之间以及同一外科医生内部,生物力学稳定性是一致的,这表明AdhFix骨固定平台经过最少的培训即可学习和应用,因此可能是一种临床上可行的骨折固定技术。观察到的BM和BS的变异性预计不会产生临床影响,但未来有必要进行临床研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c41/10604275/9bcc93961af2/bioengineering-10-01146-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验