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首页> 外文期刊>Journal of orthopaedic research >T2 relaxation time and delayed gadolinium-enhanced MRI of cartilage (dGEMRIC) of human patellar cartilage at 1.5 T and 9.4 T: Relationships with tissue mechanical properties.
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T2 relaxation time and delayed gadolinium-enhanced MRI of cartilage (dGEMRIC) of human patellar cartilage at 1.5 T and 9.4 T: Relationships with tissue mechanical properties.

机译:T2弛豫时间和1.5 T和9.4 T下人pa骨软骨的延迟delayed增强MRI(dGEMRIC):与组织力学性能的关系。

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摘要

Quantitative magnetic resonance imaging (MRI) techniques have been developed for noninvasive assessment of the structure of articular cartilage. T2 relaxation time is sensitive to the integrity and orientation of the collagen network, while T1 relaxation time in presence of Gd-DTPA2- (dGEMRIC) reflects the proteoglycan content of cartilage. In the present study, human patellar cartilage samples were investigated in vitro to determine the ability of MRI parameters to reveal topographical variations and to predict mechanical properties of cartilage at two different field strengths. T2 and dGEMRIC measurements at 1.5 T and 9.4 T were correlated with the static and dynamic compressive moduli at six anatomical locations of the patellar surface. Statistically significant linear correlations were observed between MRI and mechanical parameters at both field strengths, especially between T2 and Young's modulus. No significant difference was found between the T2 measurements at different field strengths in predicting mechanical properties of the tissue. Topographical variation of T2 values at both field strengths was similar to that of Young's moduli. The current results demonstrate the feasibility of quantitative MRI, particularly T2 mapping, to reflect the mechanical properties of human patellar cartilage at both field strengths.
机译:定量磁共振成像(MRI)技术已被开发用于关节结构的非侵入性评估。 T2弛豫时间对胶原网络的完整性和方向很敏感,而存在Gd-DTPA2-(dGEMRIC)的T1弛豫时间反映了软骨蛋白聚糖的含量。在本研究中,在体外对人samples骨软骨样品进行了研究,以确定MRI参数揭示地形变化和预测两种不同场强下软骨力学性能的能力。 1.5 T和9.4 T下的T2和dGEMRIC测量值与pa骨表面六个解剖位置的静态和动态压缩模量相关。在两个场强下,特别是在T2和杨氏模量之间,在MRI和力学参数之间观察到统计学上显着的线性相关性。在预测组织的机械特性时,在不同场强下的T2测量之间没有发现显着差异。在两种场强下,T2值的形貌变化与杨氏模量相似。目前的结果证明了定量MRI(特别是T2映射)在两种场强下反映人pa软骨力学性能的可行性。

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