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人关节软骨的机械敏感性与组织学退变有关——一项功能磁共振成像研究。

Human articular cartilage mechanosensitivity is related to histological degeneration - a functional MRI study.

机构信息

Department of Diagnostic and Interventional Radiology, Aachen University Hospital, Aachen, Germany.

Department of Orthopaedic Trauma, Aachen University Hospital, Aachen, Germany.

出版信息

Osteoarthritis Cartilage. 2019 Nov;27(11):1711-1720. doi: 10.1016/j.joca.2019.07.006. Epub 2019 Jul 15.

Abstract

OBJECTIVE

To investigate changes in response to sequential pressure-controlled loading and unloading in human articular cartilage of variable histological degeneration using serial T1ρ mapping.

METHOD

We obtained 42 cartilage samples of variable degeneration from the medial femoral condyles of 42 patients undergoing total knee replacement. Samples were placed in a standardized artificial knee joint within an MRI-compatible whole knee-joint compressive loading device and imaged before (δ), during (δ, δ, δ, δ, δ) and after (δ, δ, δ, δ, δ) pressure-controlled loading to 0.663 ± 0.021 kN (94% body weight) using serial T1ρ mapping (spin-lock multigradient echo sequence; 3.0T MRI system [Achieva, Philips]). Reference assessment included histology (Mankin scoring) and conventional biomechanics (Tangent stiffness). We dichotomized sample into intact (n = 21) and degenerative (n = 21) based on histology and analyzed data using Mann Whitney, Kruskal Wallis, one-way ANOVA tests and Spearman's correlation, respectively.

RESULTS

At δ, we found no significant differences between intact and degenerative samples, while the response-to-loading patterns were distinctly different. In intact samples, T1ρ increases were consistent and non-significant, while in degenerative samples, T1ρ increases were significantly higher (P = 0.004, δ0 vs δld1, δ0 vs δld3), yet undulating and variable. With unloading, T1ρ increases subsided, yet were persistently elevated beyond δ0.

CONCLUSION

Cartilage mechanosensitivity is related to histological degeneration and assessable by serial T1ρ mapping. Unloaded, T1ρ characteristics are not significantly different in intact vs degenerative cartilage, while load bearing is organized in intact cartilage and disorganized in degenerative cartilage.

摘要

目的

使用序列 T1ρ 映射研究人关节软骨在不同组织学退变时对顺序压力控制加载和卸载的反应变化。

方法

我们从 42 名接受全膝关节置换术的患者的内侧股骨髁中获得了 42 个具有不同退变程度的软骨样本。样本被放置在一个标准化的人工膝关节内,位于一个与 MRI 兼容的全膝关节压缩加载设备中,在使用序列 T1ρ 映射(自旋锁定多梯度回波序列;3.0T MRI 系统[Achieva,Philips])进行压力控制加载至 0.663±0.021kN(94%体重)之前(δ)、期间(δ,δ,δ,δ,δ)和之后(δ,δ,δ,δ,δ)进行成像。参考评估包括组织学(Mankin 评分)和常规生物力学(切线刚度)。我们根据组织学将样本分为完整(n=21)和退变(n=21),并使用 Mann-Whitney、Kruskal-Wallis、单向方差分析和 Spearman 相关分析分别分析数据。

结果

在 δ 时,我们没有发现完整样本和退变样本之间有显著差异,而加载反应模式则明显不同。在完整样本中,T1ρ 的增加是一致且无显著差异的,而在退变样本中,T1ρ 的增加明显更高(P=0.004,δ0 与 δld1,δ0 与 δld3),但波动且变化不定。卸载后,T1ρ 的增加消退,但仍持续高于 δ0。

结论

软骨的机械敏感性与组织学退变有关,可通过序列 T1ρ 映射进行评估。在卸载状态下,完整和退变软骨的 T1ρ 特征没有显著差异,而在承载负荷时,完整软骨的组织有序,退变软骨的组织无序。

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