University of Pennsylvania, Department of Bioengineering, 240 Skirkanich Hall, 210 S 33rd Street, Philadelphia, PA 19104-6321, USA.
J Biomech. 2012 Sep 21;45(14):2325-9. doi: 10.1016/j.jbiomech.2012.07.015. Epub 2012 Jul 26.
Studies implicate the cervical facet joint and its capsule as a primary anatomical site of injury during whiplash exposures to the neck. Although the facet joint is known to undergo stretch as the superior vertebra is retracted relative to the inferior vertebra during the whiplash kinematic, the response of the facet capsular ligament and its microstructure during failure in joint retraction is unknown. Polarized light imaging and vector correlation analysis were used to measure the collagen fiber alignment in the human capsular ligament, together with traditional mechanical metrics, during joint retraction sufficient to induce ligament failure. Anomalous fiber realignment occurs at 2.95±1.66mm of displacement, which is not different from the displacement when the ligament first yields (2.77±1.55mm), but is significantly lower (p=0.016) than the displacement at tissue failure (5.40±1.65mm). The maximum principal strain at the first detection of anomalous fiber realignment (0.66±0.39) also is significantly lower (p=0.046) than the strain at failure (1.39±0.64), but is not different from the strains at yield or partial failure. The onset of collagen fiber realignment determined in this study corresponds to the ligament's yielding and supports assertions that the facet capsule can undergo tissue injury during joint retraction. Further, such microstructural responses may indicate tissue damage in the absence of rupture.
研究表明,在颈部遭受挥鞭伤时,颈椎小关节及其关节囊是受伤的主要解剖部位。虽然已知在挥鞭运动中,当上颈椎相对于下颈椎缩回时,小关节会受到拉伸,但关节回缩时关节囊韧带及其微观结构的反应尚不清楚。采用偏光成像和向量相关分析来测量人关节囊韧带中的胶原纤维排列,同时结合传统的机械测量指标,测量足以导致韧带失效的关节回缩。在 2.95±1.66mm 的位移处发生异常纤维重新排列,与韧带最初屈服时(2.77±1.55mm)的位移没有差异,但明显低于组织失效时(5.40±1.65mm)的位移(p=0.016)。在首次检测到异常纤维重新排列时的最大主应变(0.66±0.39)也明显低于失效时的应变(1.39±0.64),但与屈服或部分失效时的应变没有差异。本研究中确定的胶原纤维重新排列的起始时间与韧带的屈服相对应,并支持以下观点,即小关节囊在关节回缩过程中可能会发生组织损伤。此外,这种微观结构的反应可能表明在没有断裂的情况下发生了组织损伤。