Yang Huibin, Xu Minhui, He Honghui, Zeng Nan, Song Jiawei, Huang Tongyu, Liang Ziyang, Ma Hui
Shenzhen International Graduate School, Tsinghua University, Shenzhen, 518055, China.
School of Teacher Education, Nanjing Normal University, Nanjing, 210097, China.
Front Optoelectron. 2024 Dec 9;17(1):39. doi: 10.1007/s12200-024-00142-2.
Achilles tendon injuries, as a widely existing disease, have attracted a lot of research interest. Mueller matrix polarimetry, as a novel label-free quantitative imaging method, has been widely used in various applications of lesion identification and pathological diagnosis. However, focusing on the recovery process of Achilles tendon injuries, current optical imaging methods have not yet achieved the label-free precise identification and quantitative evaluation. In this study, using Mueller matrix polarimetry, various Achilles tendon injury samples were characterized specifically, and the efficacy of different recovery schemes was evaluated accordingly. Experiments indicate that injured Achilles tendons show less phase retardance, larger diattenuation, and relatively disordered orientation. The combination of experiments with Monte Carlo simulation results illustrate the microscopic mechanism of the Achilles tendon recovery process from three aspects, that is, the increased fiber diameter, a more consistent fiber orientation, and greater birefringence induced by more collagen protein. Finally, based on the statistical distribution of polarization measurements, a polarization specific characterization parameter was extracted to construct a label-free image, which cannot only intuitively show the injury and recovery of Achilles tendon samples, but also give a quantitative evaluation of the treatment.
跟腱损伤作为一种广泛存在的疾病,已引起了众多研究兴趣。穆勒矩阵偏振测量法作为一种新型的无标记定量成像方法,已被广泛应用于病变识别和病理诊断的各种应用中。然而,聚焦于跟腱损伤的恢复过程,目前的光学成像方法尚未实现无标记的精确识别和定量评估。在本研究中,使用穆勒矩阵偏振测量法对各种跟腱损伤样本进行了特异性表征,并据此评估了不同恢复方案的效果。实验表明,受伤的跟腱表现出更小的相位延迟、更大的二向色性和相对无序的取向。实验与蒙特卡罗模拟结果相结合,从三个方面阐明了跟腱恢复过程的微观机制,即纤维直径增加、纤维取向更一致以及更多胶原蛋白诱导的更大双折射。最后,基于偏振测量的统计分布,提取了一个偏振特异性表征参数来构建无标记图像,该图像不仅可以直观地显示跟腱样本的损伤和恢复情况,还可以对治疗进行定量评估。