用激光振动仪研究肱骨骨折模式和固定系统

IF 2.4 3区 工程技术 Q2 MATERIALS SCIENCE, CHARACTERIZATION & TESTING
B. Carboni, S. K. Guruva, S. Gumina, V. Candela, J. Tirilló, C. Sergi, T. Valente, W. Lacarbonara
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引用次数: 0

摘要

由于骨骼复杂的几何和力学特征,骨科固定系统的力学性能评估在计算和实验上都具有挑战性。非接触式实验技术被广泛应用于多个工程领域,克服了这些问题。目的本研究讨论了一项比较实验研究,通过一种创新的手术程序和一种被称为金标准手术的经典技术来模拟健康的肱骨和骨折的骨头。新的手术包括安装一个外固定装置,根据不同的空间模式,将一定数量的钛细长棒插入并夹入骨折的骨头中。方法通过压缩试验对人工骨的力学性能进行表征,同时用扫描电镜对断口形貌进行分析。三维激光测振仪用于测量谐振频率、模态振型、阻尼比和从驱动器穿过骨骼表面传播的机械波。结果说明了哪种固定架配置对快速恢复效果更好。根据观察到的动态行为,固定架的最佳配置提供了与金标准手术程序相当或可能更好的性能。所采用的实验方法的新颖性和可行性为采用先进的非接触技术来表征生物医学应用中复杂、非均质和各向异性材料和结构的力学特性铺平了道路,也使系统的数据驱动模型成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring Humerus Bone’s Fracture Patterns and Fixation Systems Via Laser Vibrometry

Background

The mechanical performance assessment of orthopedic fixation systems is computationally and experimentally challenging due to the complex geometrical and mechanical features of bones. Non-contact experimental techniques, widely adopted in several engineering fields, is shown to overcome these issues.

Objective

This work discusses a comparative experimental investigation into specimens mimicking healthy humerus bones and fractured bones subject to an innovative surgery procedure and to a classical technique referred to as the gold standard surgery. The new surgery consists in the installation of an external fixation mechanism that constrains, according to different spatial patterns, a certain number of titanium slender bars inserted and clamped into the fractured bones.

Methods

The mechanical properties of artificial bones are characterized through compressive tests, while the morphology of the fracture surface is analyzed using a scanning electron microscope. A three-dimensional laser vibrometer is used to measure the resonance frequencies, mode shapes, damping ratios, and mechanical waves propagating from the actuators across the surface of the bones.

Results

The results provide insights into which configuration of the fixator performs better for a fast recovery. Based on the observed dynamic behaviors, the optimal configuration of the fixator offers performance that is comparable to, or potentially better than, the gold standard surgical procedure.

Conclusions

The novelty and feasibility of the adopted experimental approach paves the way towards the adoption of advanced non-contact techniques for the mechanical characterization of complex, non-homegenous and anisotropic materials and structures in biomedical applications enabling also data-driven models of the systems.

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来源期刊
Experimental Mechanics
Experimental Mechanics 物理-材料科学:表征与测试
CiteScore
4.40
自引率
16.70%
发文量
111
审稿时长
3 months
期刊介绍: Experimental Mechanics is the official journal of the Society for Experimental Mechanics that publishes papers in all areas of experimentation including its theoretical and computational analysis. The journal covers research in design and implementation of novel or improved experiments to characterize materials, structures and systems. Articles extending the frontiers of experimental mechanics at large and small scales are particularly welcome. Coverage extends from research in solid and fluids mechanics to fields at the intersection of disciplines including physics, chemistry and biology. Development of new devices and technologies for metrology applications in a wide range of industrial sectors (e.g., manufacturing, high-performance materials, aerospace, information technology, medicine, energy and environmental technologies) is also covered.
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