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An ultrasonic measurement for in vitro depth-dependent equilibrium strains of articular cartilage in compression

机译:超声测量受压关节软骨的深度相关的体外平衡应变

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The equilibrium depth-dependent biomechanical properties of articular cartilage were measured using an ultrasound-compression method. Ten cylindrical bovine patella cartilage-bone specimens were tested in compression followed by a period of force-relaxation. A 50 MHz focused ultrasound beam was transmitted into the cartilage specimen through a remaining bone layer and a small hole at the center of a specimen platform. The ultrasound echoes reflected or scattered within the articular cartilage were collected using the same transducer. The displacements of the tissues at different depths of the articular cartilage were derived from the ultrasound echo signals recorded during the compression and the subsequent force-relaxation. For two steps of 0.1 mm compression, the average strain at the superficial 0.2 mm thick layer (0.35 ± 0.09) was significantly (p < 0.05) larger than that at the subsequent 0.2 mm thick layer (0.05 ± 0.07) and that at deeper layers (0.01 ± 0.02). It was demonstrated that the compressive biomechanical properties of cartilage were highly depth-dependent. The results suggested that the ultrasound-compression method could be a useful tool for the study of the depth-dependent biomechanical properties of articular cartilage.
机译:使用超声压缩方法测量关节软骨的平衡深度依赖性生物力学特性。压缩测试十个圆柱状牛骨软骨标本,然后放松一段时间。 50 MHz聚焦超声束通过剩余的骨层和标本平台中心的小孔传输到软骨标本中。使用相同的换能器收集在关节软骨内反射或散射的超声回波。关节软骨不同深度的组织位移是从压缩和随后的放松力过程中记录的超声回波信号得出的。对于0.1 mm压缩的两个步骤,表面0.2 mm厚层(0.35±0.09)的平均应变显着(p <0.05)大于随后的0.2 mm厚层(0.05±0.07)的平均应变和更深层的平均应变(0.01±0.02)。结果表明,软骨的压缩生物力学特性高度依赖于深度。结果表明超声压缩方法可能是研究关节软骨深度依赖性生物力学特性的有用工具。

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