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Hyper-frequency viscoelastic spectroscopy of biomaterials.

机译:生物材料的超高频粘弹性光谱学。

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摘要

With the emergence of new biomaterials and elastography imaging techniques, there is a need for innovative instruments dedicated to viscoelasticity measurements. In this work, we introduce a novel hyper-frequency viscoelastic spectroscopy (HFVS) technique dedicated to characterize soft media subjected to mid-to-very-high frequency stress ranges (or, equivalently, to probe short-to-very-short relaxation times). HFVS, which has been implemented in an analytical instrument performing non-contact measurements in less than 1 s between 10 and 1000 Hz, is a suitable tool to study viscoelasticity for bio-applications. In this context, HFVS has been compared to classical oscillatory rheometry on several classes of soft materials currently encountered in tissue repair, bioengineering and elastography imaging on a frequency range between 10 and 100 Hz. After having demonstrated the good correspondence between HFVS and rheometry, this study has been completed by exploring the sensitivity of HFVS to physicochemically induced variations of viscoelasticity. HFVS opens promising perspectives in the challenging field of biomaterial science and for viscoelasticity-based quality control of materials.
机译:随着新的生物材料和弹性成像技术的出现,需要专门用于粘弹性测量的创新仪器。在这项工作中,我们介绍了一种新颖的超高频粘弹性波谱(HFVS)技术,该技术致力于表征承受中高频应力范围的软介质(或等效地探测短至非常短的弛豫时间) )。 HFVS已在分析仪器中实现,该仪器在10到1000 Hz之间以不到1 s的时间进行了非接触式测量,是研究生物应用的粘弹性的合适工具。在这种情况下,已将HFVS与经典振荡流变法在组织修复,生物工程和弹性成像成像中目前遇到的几种软材料上进行了比较,频率范围为10至100 Hz。在证明了HFVS与流变学之间的良好对应关系之后,本研究通过探索HFVS对物理化学诱导的粘弹性变化的敏感性来完成。 HFVS在具有挑战性的生物材料科学领域以及基于粘弹性的材料质量控制方面开辟了广阔的前景。

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