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3D FSE Cube and VIPR-aTR 3.0 Tesla magnetic resonance imaging predicts canine cranial cruciate ligament structural properties

机译:3D FSE Cube和VIPR-aTR 3.0 Tesla磁共振成像可预测犬颅十字形韧带的结构特性

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摘要

Estimation of cranial cruciate ligament (CrCL) structural properties in client-owned dogs with incipient cruciate rupture would be advantageous. The objective of this study was to determine whether magnetic resonance imaging (MRI) measurement of normal CrCL volume in an ex-vivo canine model predicts structural properties. Stifles from eight dogs underwent 3.0 Tesla 3D MRI. CrCL volume and normalized median grayscale values were determined using 3D Fast Spin Echo (FSE) Cube and Vastly under-sampled Isotropic PRojection (VIPR)-alternative repetition time (aTR) sequences. Stifles were then mechanically tested. After joint laxity testing, CrCL structural properties were determined, including displacement at yield, yield load, load to failure, and stiffness.Yield load and load to failure (R2=0.56, P<0.01) were correlated with CrCL volume determined by VIPR-aTR. Yield load was also correlated with CrCL volume determined by 3D FSE Cube (R2=0.32, P<0.05). Structural properties were not related to median grayscale values. Joint laxity and CrCL stiffness were not related to MRI parameters, but displacement at yield load was related to CrCL volume for both sequences during testing (R2>0.57, P<0.005). In conclusion, 3D MRI offers a predictive method for estimating canine CrCL structural properties. 3D MRI may be useful for monitoring CrCL properties in clinical trials.
机译:估计具有初期十字形破裂的客户拥有的狗的颅十字韧带(CrCL)的结构特性将是有利的。这项研究的目的是确定离体犬模型中正常CrCL体积的磁共振成像(MRI)测量是否可以预测结构特性。来自八只狗的窒息经历了3.0 Tesla 3D MRI。使用3D快速自旋回波(FSE)多维数据集和Vastly欠采样各向同性抛射(VIPR)或替代重复时间(aTR)序列确定CrCL体积和标准化的中位灰度值。然后对脚枪进行机械测试。经过关节松弛试验,确定了CrCL的结构特性,包括屈服位移,屈服载荷,破坏载荷和刚度。屈服载荷和破坏载荷(R 2 = 0.56,P <0.01)与VIPR-aTR确定的CrCL量相关。屈服载荷也与3D FSE Cube确定的CrCL体积相关(R 2 = 0.32,P <0.05)。结构特性与中间灰度值无关。关节松弛度和CrCL刚度与MRI参数无关,但在测试过程中两个序列的屈服载荷下位移均与CrCL体积有关(R 2

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