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一种用于评估髋关节状况的非侵入式声学和振动分析技术。

A non-invasive acoustic and vibration analysis technique for evaluation of hip joint conditions.

机构信息

University of Tennessee, Center for Musculoskeletal Research, Department of Mechanical, Aerospace, and Biomedical Engineering, 301 Perkins Hall, Knoxville, TN 37996, USA.

出版信息

J Biomech. 2010 Feb 10;43(3):426-32. doi: 10.1016/j.jbiomech.2009.10.005.

Abstract

The performance evaluation of THA outcome is difficult and surgeons often use invasive methods to investigate effectiveness. A non-invasive acoustic and vibration analysis technique has recently been developed for more-in-depth evaluation of in vivo hip conditions. Gait kinematics, corresponding vibration and sound measurement of five THA subjects were analyzed post-operatively using video-fluoroscopy, sound and accelerometer measurements while walking on a treadmill. The sound sensor and a pair of tri-axial accelerometers, externally attached to the pelvic and femoral bone prominences, detected frequencies that are propagated through the femoral head and acetabular cup interactions. A data acquisition system was used to amplify the signal and filter out noise generated by undesired frequencies. In vivo kinematics and femoral head sliding quantified using video fluoroscopy were correlated to the sound and acceleration measurements. Distinct variations between the different subjects were identified. A correlation of sound and acceleration impulses with separation has been achieved. Although, in vivo sounds are quite variable in nature and all correlated well with the visual images. This is the first study to document and correlate visual and audible effects of THA under in-vivo conditions. This study has shown that the development of the acoustic and vibration technique provides a practical method and generates new possibilities for a better understanding of THA performance.

摘要

THA 术后效果的评估较为困难,外科医生通常采用有创方法来调查疗效。最近,一种非侵入性的声学和振动分析技术已经被开发出来,用于更深入地评估体内髋关节状况。对 5 名接受 THA 的患者在跑步机上行走时,使用视频透视、声音和加速度计测量,对术后的运动学、相应的振动和声音测量进行了分析。声音传感器和一对三轴加速度计附着在骨盆和股骨突起上,检测通过股骨头和髋臼杯相互作用传播的频率。数据采集系统用于放大信号并滤除由不希望的频率产生的噪声。使用视频透视量化的体内运动学和股骨头滑动与声音和加速度测量相关联。确定了不同受试者之间的明显差异。已经实现了声音和加速度脉冲与分离的相关性。尽管体内声音本质上变化很大,但所有声音都与视觉图像很好地相关。这是第一项记录和相关联的 THA 在体内条件下的视觉和听觉效果的研究。这项研究表明,声学和振动技术的发展提供了一种实用的方法,并为更好地理解 THA 性能提供了新的可能性。

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