National Taiwan University, Graduate Institute of Photonics and Optoelectronics and Department of Electrical Engineering, 1 Roosevelt Road Section 4, Taipei, 10617 Taiwan.
J Biomed Opt. 2010 Mar-Apr;15(2):026002. doi: 10.1117/1.3365943.
Atrial fibrillation (AF) is the most common irregular heart rhythm and the mortality rate for patients with AF is approximately twice the mortality rate for patients with normal sinus rhythm (NSR). Some research has indicated that myocardial fibrosis plays an important role in predisposing patients to AF. Therefore, realizing the relationship between myocardial collagen fibrosis and AF is significant. Second-harmonic generation (SHG) is an optically nonlinear coherent process to image the collagen network. We perform SHG microscopic imaging of the collagen fibers in the human atrial myocardium. Utilizing the SHG images, we can identify the differences in morphology and the arrangement of collagen fibers between NSR and AF tissues. We also quantify the arrangement of the collagen fibers using Fourier transform images and calculating the values of angle entropy. We indicate that SHG imaging, a nondestructive and reproducible method to analyze the arrangement of collagen fibers, can provide explicit information about the relationship between myocardial fibrosis and AF.
心房颤动(AF)是最常见的不规则心律,AF 患者的死亡率约为窦性心律正常(NSR)患者的两倍。一些研究表明,心肌纤维化在使患者易患 AF 方面起着重要作用。因此,了解心肌胶原纤维化与 AF 的关系具有重要意义。二次谐波产生(SHG)是一种光学非线性相干过程,可用于成像胶原网络。我们对人心房心肌中的胶原纤维进行 SHG 微观成像。利用 SHG 图像,我们可以识别 NSR 和 AF 组织中胶原纤维的形态和排列差异。我们还使用傅立叶变换图像量化胶原纤维的排列,并计算角度熵的值。我们表明,SHG 成像作为一种非破坏性和可重复的分析胶原纤维排列的方法,可以提供关于心肌纤维化与 AF 之间关系的明确信息。