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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Ultrasound evaluation of mechanical injury of bovine knee articular cartilage under arthroscopic control
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Ultrasound evaluation of mechanical injury of bovine knee articular cartilage under arthroscopic control

机译:关节镜下超声评价牛膝关节软骨机械损伤

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摘要

local cartilage injury can trigger development of posttraumatic osteoarthritis (OA). Surgical methods have been developed for repairing cartilage injuries. Objective and sensitive methods are needed for planning an optimal surgery as well as for monitoring the surgical outcome. In this laboratory study, the feasibility of an arthroscopic ultrasound technique for diagnosing cartilage injuries was investigated. In bovine knees (n = 7) articular cartilage in the central patella and femoral sulcus was mechanically degraded with a steel brush modified for use under arthroscopic control. Subsequently, mechanically degraded and intact adjacent tissue was imaged with a high frequency (40 MHz) intravascular ultrasound device operated under arthroscopic guidance. After opening the knee joint, mechanical indentation measurements were also conducted with an arthroscopic device at each predefined anatomical site. Finally, cylindrical osteochondral samples were extracted from the measurement sites and prepared for histological analysis. Quantitative parameters, i.e., reflection coefficient (R), integrated reflection coefficient (IRC), apparent integrated backscattering (AIB), and ultrasound roughness index (URI) were calculated from the ultrasound signals. The reproducibilities (sCV %) of the measurements of ultrasound parameters were variable (3.7% to 26.1%). Reflection and roughness parameters were significantly different between mechanically degraded and adjacent intact tissue (p < 0.05). Surface fibrillation of mechanically degraded tissue could be visualized in ultrasound images. Furthermore, R and IRC correlated significantly with the indentation stiffness. The present results are encouraging; however, further technical development of the arthroscopic ultrasound technique is needed for evaluation of the integrity of human articular cartilage in vivo.
机译:局部软骨损伤可引发创伤后骨关节炎(OA)的发展。已经开发出用于修复软骨损伤的手术方法。需要客观而敏感的方法来计划最佳手术以及监测手术结果。在本实验室研究中,研究了关节镜超声技术诊断软骨损伤的可行性。在牛膝(n = 7)中,使用经关节镜控制的改良钢刷将degrade骨中央和股沟的关节软骨机械降解。随后,使用在关节镜引导下操作的高频(40 MHz)血管内超声设备对机械降解和完整的邻近组织成像。打开膝关节后,还使用关节镜设备在每个预定的解剖部位进行机械压痕测量。最后,从测量部位提取圆柱形骨软骨样品,并准备进行组织学分析。从超声信号计算定量参数,即反射系数(R),积分反射系数(IRC),表观积分反向散射(AIB)和超声粗糙度指数(URI)。超声参数测量的重复性(sCV%)可变(3.7%至26.1%)。机械降解的和邻近的完整组织之间的反射率和粗糙度参数显着不同(p <0.05)。机械降解组织的表面原纤化可以在超声图像中看到。此外,R和IRC与压痕刚度显着相关。目前的结果令人鼓舞;然而,需要在关节镜超声技术的进一步技术发展,以评估体内人体关节软骨的完整性。

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