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Ultrasound assessment of articular cartilage: Analysis of the frequency profile of reflected signals from naturally and artificially degraded samples

机译:超声评估关节软骨:分析来自自然和人工降解样品的反射信号的频率分布

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摘要

This paper investigates in vitro the hypothesis that the frequency profile of ultrasound reflections may be used to characterise degradation and osteoarthritic progression in articular cartilage, irrespective of the effects of transducer orientation. To this end, ultrasound echoes were taken in the time domain from the articular surface and osteochondral junction of normal, collagen meshwork-disrupted, proteoglycan-depleted and osteoarthritic samples, converted to the frequency domain by Fast Fourier Transform and analysed. Our results show the significant effects of specific enzymatic degradation programmes on the ultrasound frequency profile of reflections from the cartilage surface and osteochondral junction, and their manifestation in the tissue surrounding a focal osteoarthritic defect. Collagen meshwork disruption was most apparent in the profile of reflections from the articular surface, while proteoglycan depletion was most clearly observed in the reflections from the osteochondral junction. The reflected signals from the osteochondral junction may further contain information about the subchondral bone. From these results it is proposed that the analysis of specific frequencies of reflected ultrasound signals has the potential to differentiate normal from degraded articular cartilage-on-bone, when the angle of incidence can be controlled within a ±1.2 degrees limit. This encourages further research into the effects of progressive artificial degradation of the cartilage matrix and subchondral bone on the spectral profile to quantify the relationship between the frequency profile and the level of specific degradation in naturally degraded joints.
机译:本文在体外研究了以下假设:超声换能器的频率分布可用于表征关节软骨的退化和骨关节炎的进展,而与换能器取向的影响无关。为此,从正常,胶原网破裂,蛋白聚糖耗尽和骨关节炎的样本的关节表面和软骨连接处的时域中获取超声回波,通过快速傅里叶变换转换为频域并进行分析。我们的结果表明特定酶降解程序对软骨表面和骨软骨交界处反射的超声频率分布及其在局灶性骨关节炎缺损周围组织中的表现的显着影响。胶原网的破坏在关节表面反射的轮廓中最明显,而蛋白聚糖的消耗在骨软骨交界处的反射中最清楚地观察到。来自骨软骨交界处的反射信号可能进一步包含有关软骨下骨骼的信息。根据这些结果,当入射角可以控制在±1.2度范围内时,分析反射超声信号的特定频率有可能区分正常的和骨退化的软骨。这鼓励进一步研究软骨基质和软骨下骨的渐进性人工降解对频谱图的影响,以量化频率图和自然退化关节中特定降解水平之间的关系。

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