首页> 外文会议>6th world congress of biomechanics (WCB 2010) >Development and Phantom Test of a Minimized Water-Jet Ultrasound Indentation System for Arthroscopic Measurement of Articular Cartilage Integrity
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Development and Phantom Test of a Minimized Water-Jet Ultrasound Indentation System for Arthroscopic Measurement of Articular Cartilage Integrity

机译:用于关节软骨完整性的关节镜检查的最小化水射流超声压痕系统的开发和虚拟测试

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摘要

The detection of early degeneration of the articular cartilage is an important step to stop, delay or even reverse this otherwise irreversible process when detected in its advanced or late stage. A water-jet ultrasound indentation system has been previously developed in our group for assessing the articular cartilage integrity. This study aims to further design a minimized water-jet ultrasound indentation probe intended for the arthroscopic measurement of the articular cartilage status. The probe was constructed by installing a 10 MHz ultrasound transducer (Φ= 3 mm) at the tip of a plastic rod (Φ = 12 mm) with an axial hole for generating the water jet (Φ = 2 mm). Preliminary test was performed on 28 phantoms with various stiffness values. A stiffness coefficient was calculated by a linear fitting of the force/deformation curve obtained from the indentation system. Results showed that the stiffness coefficient measured from the current system (0.625 ± 0.488 N/mm) agreed well with that from a rigid-contact mechanical indentation test (0.730 ± 0.631 N/mm) with a high correlation (r2 = 0.98, p < 0.001). Therefore, it was concluded that the performance of this water-jet indentation system was comparable to the conventional indentation. The incorporation of ultrasound in the minimized indentation system can further assess the morphologic and acoustic properties, thus enabling a compound characterization of the articular cartilage integrity under arthroscopic control.
机译:检测关节软骨的早期变性是阻止,延迟甚至逆转这种在早期或晚期发现的否则不可逆过程的重要步骤。我们小组之前已经开发了一种水射流超声压痕系统,用于评估关节软骨的完整性。这项研究的目的是进一步设计用于关节镜测量关节软骨状态的最小化水射流超声压痕探头。通过在塑料棒(Φ= 12 mm)的尖端安装一个10 MHz超声换能器(Φ= 3 mm)来构造探头,该塑料棒的轴向孔用于产生水射流(Φ= 2 mm)。对具有不同刚度值的28个模型进行了初步测试。通过线性拟合从压痕系统获得的力/变形曲线来计算刚度系数。结果表明,当前系统测得的刚度系数(0.625±0.488 N / mm)与刚性接触机械压痕测试(0.730±0.631 N / mm)的相关性很好(r2 = 0.98,p < 0.001)。因此,得出的结论是,该水刀压痕系统的性能与常规压痕相当。在最小化的压痕系统中并入超声可以进一步评估形态和声学特性,从而在关节镜控制下实现关节软骨完整性的复合表征。

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