Burton Hanna E, Freij Jenny M, Espino Daniel M
Department of Mechanical Engineering, University of Birmingham, Birmingham, B15 2TT, UK.
Cardiovasc Eng Technol. 2017 Mar;8(1):41-56. doi: 10.1007/s13239-016-0288-4. Epub 2016 Dec 12.
The aim of this study was, for the first time, to measure and compare quantitatively the viscoelastic properties and surface roughness of coronary arteries. Porcine left anterior descending coronary arteries were dissected ex vivo. Viscoelastic properties were measured longitudinally using dynamic mechanical analysis, for a range of frequencies from 0.5 to 10 Hz. Surface roughness was calculated following three-dimensional reconstructed of surface images obtained using an optical microscope. Storage modulus ranged from 14.47 to 25.82 MPa, and was found to be frequency-dependent, decreasing as the frequency increased. Storage was greater than the loss modulus, with the latter found to be frequency-independent with a mean value of 2.10 ± 0.33 MPa. The circumferential surface roughness was significantly greater (p < 0.05) than the longitudinal surface roughness, ranging from 0.73 to 2.83 and 0.35 to 0.92 µm, respectively. However, if surface roughness values were corrected for shrinkage during processing, circumferential and longitudinal surface roughness were not significantly different (1.04 ± 0.47, 0.89 ± 0.27 µm, respectively; p > 0.05). No correlation was found between the viscoelastic properties and surface roughness. It is feasible to quantitatively measure the viscoelastic properties of coronary arteries and the roughness of their endothelial surface.
本研究的目的是首次定量测量和比较冠状动脉的粘弹性特性及表面粗糙度。对猪的左前降支冠状动脉进行离体解剖。使用动态力学分析纵向测量0.5至10Hz范围内一系列频率下的粘弹性特性。通过对使用光学显微镜获得的表面图像进行三维重建来计算表面粗糙度。储能模量范围为14.47至25.82MPa,且发现其与频率相关,随频率增加而降低。储能大于损耗模量,后者与频率无关,平均值为2.10±0.33MPa。圆周表面粗糙度显著大于(p<0.05)纵向表面粗糙度,分别为0.73至2.83μm和0.35至0.92μm。然而,如果对加工过程中的收缩进行表面粗糙度值校正,则圆周和纵向表面粗糙度无显著差异(分别为1.04±0.47、0.89±0.27μm;p>0.05)。未发现粘弹性特性与表面粗糙度之间存在相关性。定量测量冠状动脉的粘弹性特性及其内皮表面粗糙度是可行的。