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关节软骨和软骨下骨的同步超声测量。

Simultaneous ultrasound measurement of articular cartilage and subchondral bone.

机构信息

Department of Physics and Mathematics, University of Eastern Finland, POB 1627, 70211, Kuopio, Finland.

出版信息

Osteoarthritis Cartilage. 2010 Dec;18(12):1570-6. doi: 10.1016/j.joca.2010.09.009. Epub 2010 Oct 13.

Abstract

OBJECTIVE

In osteoarthritis (OA), subchondral sclerosis takes place during cartilage degeneration. High frequency ultrasound (12-55MHz) has been shown to diagnose degenerated articular cartilage, while 0.1-1MHz ultrasound has been applied for clinical characterization of bone and diagnostics of osteoporosis. The aim of the study is to investigate, for the first time, the feasibility of 5MHz ultrasound for simultaneous analysis of articular cartilage and subchondral bone.

METHODS

Osteochondral samples (n=10) were prepared from fresh and visually normal bovine medial tibial plateaus. Acoustic properties of the cartilage and subchondral bone were measured with a scanning ultrasound system using the pulse-echo geometry and compared with biomechanical, histological and compositional reference data.

RESULTS

The apparent integrated backscatter (AIB) from internal cartilage showed significant partial correlations with hydroxyproline (Hypro) (r=0.58, P=0.000), water content (r=-0.52, P=0.001) and dynamic modulus (r=0.57, P=0.000) of the tissue. Weak but statistically significant correlation was found between the bone AIB and mineral density of the subchondral plate (r=-0.34, P=0.041). Topographical variations in cartilage thickness could be detected using ultrasound. Composition, thickness and mechanical properties of the cartilage varied significantly across the tibial plateau. For the calculated ultrasound parameters, the variation was significant only between a few locations.

CONCLUSIONS

Pulse-echo ultrasound geometry at 5MHz was feasible for simultaneous measurement of the acoustic properties of articular cartilage and subchondral bone. However, the relationships between the ultrasound parameters and properties of cartilage and bone were not as strong as reported earlier in studies focusing only either on bone or cartilage. Simultaneous measurement of both tissues compromises, due to natural curvature of articulating surfaces, the perpendicularity of the incidence of the ultrasound pulse. Obviously, this source of uncertainty should be minimized in order to enable effective clinical use of ultrasound in simultaneous measurement of articular cartilage and subchondral bone.

摘要

目的

在骨关节炎(OA)中,软骨退化过程中会发生软骨下硬化。高频超声(12-55MHz)已被证明可用于诊断退变的关节软骨,而 0.1-1MHz 超声已应用于骨的临床特征描述和骨质疏松症的诊断。本研究旨在首次探讨 5MHz 超声同时分析关节软骨和软骨下骨的可行性。

方法

从新鲜且肉眼正常的牛胫骨平台中制备骨软骨样本(n=10)。使用脉冲回波几何形状的扫描超声系统测量软骨和软骨下骨的声特性,并将其与生物力学、组织学和成分参考数据进行比较。

结果

内部软骨的表观积分回波(AIB)与组织中的羟脯氨酸(Hypro)(r=0.58,P=0.000)、水含量(r=-0.52,P=0.001)和动态模量(r=0.57,P=0.000)呈显著的部分相关。骨 AIB 与软骨下板的矿物质密度之间存在微弱但具有统计学意义的相关性(r=-0.34,P=0.041)。使用超声可以检测软骨厚度的地形变化。软骨的成分、厚度和力学性能在胫骨平台上有显著差异。对于计算出的超声参数,仅在几个位置之间的变化具有统计学意义。

结论

5MHz 时的脉冲回波超声几何形状可用于同时测量关节软骨和软骨下骨的声特性。然而,与仅关注骨或软骨的研究中报道的关系相比,超声参数与软骨和骨的特性之间的关系并不那么强。由于关节表面的自然曲率,会影响到超声波脉冲的入射角度,这会对同时测量两种组织产生影响。显然,为了能够在同时测量关节软骨和软骨下骨中有效应用超声,应尽量减少这种不确定性的来源。

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