Haen T X, Roux A, Soubeyrand M, Laporte S
Arts et Metiers ParisTech, Institut de Biomécanique Humaine Georges Charpak, 151 bd de l'Hôpital, 75013 Paris, France; Service de Chirurgie Orthopédique, Hôpital Raymond Poincaré (A.P.-H.P), 104 bd Raymond Poincaré, 92380 Garches (Paris area), France.
Arts et Metiers ParisTech, Institut de Biomécanique Humaine Georges Charpak, 151 bd de l'Hôpital, 75013 Paris, France.
J Mech Behav Biomed Mater. 2017 May;69:178-184. doi: 10.1016/j.jmbbm.2017.01.007. Epub 2017 Jan 6.
Achilles tendon is the most frequently ruptured tendon, but its optimal treatment is increasingly controversial. The mechanical properties of the healing tendon should be studied further. Shear waves elastography (SWE) measures the shear modulus, which is proven to be correlated to elastic modulus in animal tendons. The aim of our study was to study whether the shear moduli of human cadaveric Achilles tendon, given by SWE, were correlated with the apparent elastic moduli of those tendons given by tensile tests.
Fourteen cadaveric lower-limbs were studied. An elastographic study of the Achilles tendon (AT) was first done in clinical-like conditions. SWE was performed at three successive levels (0, 3 and 6cm from tendon insertion) with elastographic probe oriented parallel to tendon fibers, blindly, for three standardized ankle positions (25° plantar flexion, neutral position, and maximal dorsal flexion). The mean shear moduli were collected through blind offline data-analysis. Then, AT with triceps were harvested. They were subjected to tensile tests. A continuous SWE of the Achilles tendon was performed simultaneously. The apparent elastic modulus was obtained from the experimental stress-strain curve, and correlation with shear modulus (given by SWE) was studied.
Average shear moduli of harvested AT, given by SWE made an instant before the tensile tests, were significantly correlated with shear moduli of the same AT made at the same level, previously in clinical-like condition (p<0.05), only in neutral position. There was a statistical correlation (p<0.005) and a correlation coefficient R² equal to 0.95±0.05, between shear moduli (SWE) and apparent elastic moduli (tensile tests), for 11 tendons (3 tendons were inoperable due to technical error), before a constant disruption in the correlation curves.
We demonstrated a significant correlation between SWE of Achilles tendon performed in clinical-like conditions (in neutral position) and SWE performed in harvested tendon. We also found a correlation between SWE performed on harvested tendon and apparent elastic moduli obtained with tensile tests (for 11 specimens). As a consequence, we can suppose that SWE of AT in clinical-like conditions is related to tensile tests. To our knowledge, the ability of SWE to reliably assess biomechanical properties of a tendon or muscle was, so far, only demonstrated in animal models.
SWE can provide biomechanical information of the human AT non-invasively.
跟腱是最常发生断裂的肌腱,但其最佳治疗方法越来越具有争议性。愈合中肌腱的力学性能仍需进一步研究。剪切波弹性成像(SWE)可测量剪切模量,在动物肌腱中已证实该模量与弹性模量相关。本研究的目的是探讨SWE测量的人尸体跟腱剪切模量是否与拉伸试验测得的这些肌腱的表观弹性模量相关。
研究了14具尸体下肢。首先在类似临床的条件下对跟腱(AT)进行弹性成像研究。使用弹性成像探头,在距肌腱附着点0、3和6厘米的三个连续水平处,以与肌腱纤维平行的方向,在三个标准化踝关节位置(25°跖屈、中立位和最大背屈)进行盲法SWE检查。通过盲法离线数据分析收集平均剪切模量。然后,取下带有三头肌的AT。对其进行拉伸试验。同时对跟腱进行连续SWE检查。从实验应力-应变曲线获得表观弹性模量,并研究其与剪切模量(由SWE给出)的相关性。
在拉伸试验前即刻由SWE测得的取下的AT的平均剪切模量与之前在类似临床条件下同一水平处测得的同一AT的剪切模量显著相关(p<0.05),仅在中立位时如此。对于11条肌腱(3条肌腱因技术误差无法进行操作),在相关曲线出现持续中断之前,剪切模量(SWE)与表观弹性模量(拉伸试验)之间存在统计学相关性(p<0.005),相关系数R²等于0.95±0.05。
我们证明了在类似临床条件下(中立位)对跟腱进行的SWE与对取下的肌腱进行的SWE之间存在显著相关性。我们还发现对取下的肌腱进行的SWE与通过拉伸试验获得的表观弹性模量之间存在相关性(对于11个标本)。因此,我们可以推测在类似临床条件下对AT进行的SWE与拉伸试验相关。据我们所知,到目前为止,SWE可靠评估肌腱或肌肉生物力学特性的能力仅在动物模型中得到证实。
SWE可以无创地提供人AT的生物力学信息。