Patil S G, Zheng Y P, Wu J Y, Shi J
Rehabilitation Engineering Center, The Hong Kong Polytechnic University, Kowloon, Hong Kong, China.
Ultrasound Med Biol. 2004 Jul;30(7):953-63. doi: 10.1016/j.ultrasmedbio.2004.04.009.
The inhomogeneous and anisotropic mechanical properties and structural components of articular cartilage (artC) may cause complex acoustic properties in this important tissue. In this study, we used 50-MHz ultrasound (US) to measure in vitro the depth-dependence and anisotropy of the US speed of artC collected from the bovine patellae. The US speeds of 18 disk artC specimens sampled from 18 different patellae were measured in two orthogonal directions. One full-thickness layer (n=18) and three horizontal slices (n=18 x 3) with approximately equal thickness were prepared from each artC disk and measured with the US beam perpendicular to the artC surface. One full-thickness vertical slice (n=10) was measured at different depths with the US beam parallel to the artC surface. The measured US speeds of artC in the two orthogonal directions were significantly different (p < 0.001). The US speeds also significantly increased with the increase of tissue depth for both measurement directions (p < 0.001). The US speeds of artC from the superficial to deep regions were 1518 +/- 17 (mean + SD), 1532 +/- 26 and 1554 +/- 42 m/s for the US beam parallel to the artC surface, and 1574 +/- 29, 1621 +/- 34 and 1701 +/- 36 m/s for the beam perpendicular to the artC surface. The sound speed of the full-thickness layer was 1636 +/- 25 m/s. The results suggested that the depth-dependence and anisotropy of the US speed in artC should be taken into account when US is used for the artC measurement. It was also demonstrated in this study, using additional specimens (5 x 2), that the swelling of artC after detaching from its subchondral bone could cause the change of its sound speed.
关节软骨(artC)的非均匀和各向异性力学性能及结构成分可能导致这一重要组织具有复杂的声学特性。在本研究中,我们使用50兆赫超声(US)在体外测量了从牛髌骨采集的artC的超声速度的深度依赖性和各向异性。在两个正交方向上测量了从18个不同髌骨采集的18个圆盘状artC标本的超声速度。从每个artC圆盘制备一个全层(n = 18)和三个厚度大致相等的水平切片(n = 18×3),并在超声束垂直于artC表面的情况下进行测量。在超声束平行于artC表面的情况下,在不同深度测量了一个全层垂直切片(n = 10)。在两个正交方向上测量的artC的超声速度存在显著差异(p < 0.001)。在两个测量方向上,超声速度也都随组织深度的增加而显著增加(p < 0.001)。对于平行于artC表面的超声束,从浅层到深层区域的artC的超声速度分别为1518±17(平均值+标准差)、1532±26和1554±42米/秒,对于垂直于artC表面的超声束,分别为1574±29、1621±34和1701±36米/秒。全层的声速为1636±25米/秒。结果表明,在使用超声进行artC测量时,应考虑artC中超声速度的深度依赖性和各向异性。本研究还使用额外的标本(5×2)证明,artC从其软骨下骨分离后肿胀会导致其声速变化。