University of Dundee, School of Engineering, Physics and Mathematics, Dundee DD14HN, Scotland, United KingdombUniversity of Washington, Department of Bioengineering, 3720 15th Ave NE, Seattle, Washington 98195.
J Biomed Opt. 2013 Nov;18(11):111417. doi: 10.1117/1.JBO.18.11.111417.
Damage of collagen fibers in tendons is often directly related to changes in a tendon's mechanical properties. Direct quantitative elasticity measurement of tendons will provide important information in tendon dysfunction diagnosis and treatment assessment. A feasibility study of quantifying the mechanical properties of a degenerated tendon model by a nondestructive imaging modality, which combines optical coherence elastography and acoustic radiation force (ARF) method, is presented. The degenerated tendon model was produced by the partial degradation of chicken tendons through incubation with collagenase at different concentrations and incubation times. A 30-kHz longitudinal ultrasound transducer was used to provide an ARF signal, which was detected by an ultra-high sensitive phase sensitive optical coherence tomography (PhS-OCT) system. The experimental results demonstrate that the combination of ARF method and PhS-OCT can measure the elasticity of tendon quantitatively. The corresponding changes in tendon elasticity due to the application of collagenase have been revealed by this new imaging modality. This method can potentially be used in the assessment of tissue engineering products and in the diagnosis and treatment progression of tendon diseases.
肌腱胶原纤维的损伤通常与肌腱力学性能的变化直接相关。对肌腱进行直接的定量弹性测量将为肌腱功能障碍的诊断和治疗评估提供重要信息。本研究提出了一种将光相干弹性成像(OCE)和声辐射力(ARF)方法相结合的非破坏性成像方式来定量评估退变肌腱模型力学性能的可行性。通过不同浓度和孵育时间的胶原酶孵育来部分降解鸡肌腱,从而产生退变的肌腱模型。使用 30 kHz 的纵向超声换能器来提供 ARF 信号,该信号由超高灵敏相敏光相干断层扫描(PhS-OCT)系统检测。实验结果表明,ARF 方法与 PhS-OCT 的结合可定量测量肌腱的弹性。该新的成像方式揭示了由于胶原酶应用而导致的肌腱弹性的相应变化。该方法有望用于组织工程产品的评估以及肌腱疾病的诊断和治疗进展的评估。