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首页> 外文期刊>Journal of Huazhong University of Science and Technology >The Development and Clinical Application of Acoustical Technique in Hip Joint
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The Development and Clinical Application of Acoustical Technique in Hip Joint

机译:髋关节声学技术的发展与临床应用

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A non-invasive acoustical system was developed for the measurement of transmission properties of acoustic waves in the hip joints. The instrumentation consisted of three sub-systems. An excitation system employed a vibratory force at the sacrum of the test subjects. A transduction system included a pair of identical microphones installed in the tubes of two stethoscopes, which were placed at the greater trochanters on both sides for picking up the acoustical signals transmitted across the hip joints. The data acquisition and analysis system was a portable signal analyzer with a program of dual channel digital filter for measuring the power of acoustical signal in 1/3-oc-tave frequency bands. 27 normal adults, 20 normal pre-school children and 40 normal neonates were randomly selected for testing. Coherence function (CF) and discrepancy (D) was measured during the testing. Results from the three groups showed that there was a high coherence of the signals (CF>0. 9) and a small discrepancy (D<3 dB) between bilateral hips in the frequency range of 200 ― 315 Hz. For normal neonates, there was a wider frequency range of 160 ― 315 Hz in which the acoustical signals maintained a high coherence (CF>0. 93) and a smaller discrepancy (D<2 dB) was observed. This study showed that the development of the acoustical technique provided a practical method with objective parameters. The results obtained in this study can offer a baseline for further investigation of hip disorders particularly those related to structural abnormalities of the hip.
机译:开发了一种非侵入性声学系统,用于测量髋关节中声波的传输特性。仪器由三个子系统组成。激励系统在测试对象的the骨处施加振动力。一个转换系统包括安装在两个听诊器管中的一对相同的麦克风,两个麦克风分别放置在两侧的大转子上,以拾取穿过髋关节的声音信号。数据采集​​和分析系统是一个便携式信号分析仪,带有一个双通道数字滤波器程序,用于测量1 / 3-oc-tave频带中的声信号功率。随机选择27名正常成年人,20名正常学龄前儿童和40名正常新生儿进行测试。在测试过程中测量了相干函数(CF)和差异(D)。这三组的结果表明,在200〜315 Hz的频率范围内,双侧臀部之间的信号具有较高的相干性(CF> 0。9),并且差异较小(D <3 dB)。对于正常的新生儿,在160至315 Hz的较宽频率范围内,声音信号保持较高的相干性(CF> 0。93),并且观察到的差异较小(D <2 dB)。这项研究表明,声学技术的发展为目标参数提供了一种实用的方法。这项研究获得的结果可为进一步研究髋部疾病,尤其是与髋部结构异常有关的疾病提供基线。

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