Duenwald-Kuehl Sarah, Kobayashi Hirohito, Lakes Roderic, Vanderby Ray
Department of Biomedical Engineering, University of Wisconsin, Madison, WI 53706, USA.
J Biomech Eng. 2012 Nov;134(11):111006. doi: 10.1115/1.4007745.
The viscoelastic behavior of tendons has been extensively studied in vitro. A noninvasive method by which to acquire mechanical data would be highly beneficial, as it could lead to the collection of viscoelastic data in vivo. Our lab has previously presented acoustoelasticity as an alternative ultrasound-based method of measuring tendon stress and strain by reporting a relationship between ultrasonic echo intensity (B mode ultrasound image brightness) and mechanical behavior of tendon under pseudoelastic in vitro conditions [Duenwald, S., Kobayashi, H., Frisch, K., Lakes, R., and Vanderby Jr, R., 2011, "Ultrasound Echo is Related to Stress and Strain in Tendon," J. Biomech., 44(3), pp. 424-429]. Viscoelastic properties of the tendons were not examined in that study, so the presence of time-dependent echo intensity changes has not been verified. In this study, porcine flexor tendons were subjected to relaxation and cyclic testing while ultrasonic echo response was recorded. We report that time- and strain history-dependent mechanical properties during viscoelastic testing are manifested in ultrasonic echo intensity changes. We also report that the patterns of the echo intensity changes do not directly mimic the patterns of viscoelastic load changes, but the intensity changed in a repeatable (and therefore predictable) fashion. Although mechanisms need further elucidation, viscoelastic behavior can be anticipated from echo intensity changes. This phenomenon could potentially lead to a more extensive characterization of in vivo tissue behavior.
肌腱的粘弹性行为已在体外得到广泛研究。一种获取力学数据的非侵入性方法将非常有益,因为它可能会带来体内粘弹性数据的收集。我们实验室此前曾提出声弹性作为一种基于超声的测量肌腱应力和应变的替代方法,通过报告在体外伪弹性条件下超声回波强度(B 模式超声图像亮度)与肌腱力学行为之间的关系[杜恩瓦尔德,S.,小林,H.,弗里施,K.,莱克斯,R.,和范德比 Jr,R.,2011,“超声回波与肌腱中的应力和应变相关”,《生物力学杂志》,44(3),第 424 - 429 页]。该研究未考察肌腱的粘弹性特性,因此尚未验证随时间变化的回波强度变化的存在。在本研究中,对猪的屈肌腱进行松弛和循环测试,同时记录超声回波响应。我们报告在粘弹性测试期间,与时间和应变历史相关的力学特性表现为超声回波强度的变化。我们还报告回波强度变化的模式并不直接模仿粘弹性载荷变化的模式,但强度以可重复(因此可预测)的方式变化。尽管机制需要进一步阐明,但可以从回波强度变化预测粘弹性行为。这种现象可能会导致对体内组织行为进行更广泛的表征。