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指节弹响声产生的数学模型。

A Mathematical Model for the Sounds Produced by Knuckle Cracking.

机构信息

Department of Chemical Engineering, Stanford University, CA-94305, California, USA.

Hydrodynamics Laboratory (LadHyX), CNRS UMR 7646, E´ cole Polytechnique, 91128, Palaiseau, France.

出版信息

Sci Rep. 2018 Mar 29;8(1):4600. doi: 10.1038/s41598-018-22664-4.

Abstract

The articular release of the metacarpophalangeal joint produces a typical cracking sound, resulting in what is commonly referred to as the cracking of knuckles. Despite over sixty years of research, the source of the knuckle cracking sound continues to be debated due to inconclusive experimental evidence as a result of limitations in the temporal resolution of non-invasive physiological imaging techniques. To support the available experimental data and shed light onto the source of the cracking sound, we have developed a mathematical model of the events leading to the generation of the sound. The model resolves the dynamics of a collapsing cavitation bubble in the synovial fluid inside a metacarpophalangeal joint during an articular release. The acoustic signature from the resulting bubble dynamics is shown to be consistent in both magnitude and dominant frequency with experimental measurements in the literature and with our own experiments, thus lending support for cavitation bubble collapse as the source of the cracking sound. Finally, the model also shows that only a partial collapse of the bubble is needed to replicate the experimentally observed acoustic spectra, thus allowing for bubbles to persist following the generation of sound as has been reported in recent experiments.

摘要

掌指关节的关节释放会产生典型的爆裂声,导致通常所说的指关节噼啪作响。尽管已经进行了六十多年的研究,但由于非侵入性生理成像技术的时间分辨率存在限制,导致实验证据不确定,因此指关节爆裂声的来源仍存在争议。为了支持现有的实验数据,并阐明爆裂声的来源,我们已经开发了一个导致产生声音的事件的数学模型。该模型解决了在掌指关节关节释放过程中,滑液中塌缩空化泡的动力学问题。结果表明,所产生的气泡动力学的声信号在幅度和主频上都与文献中的实验测量值以及我们自己的实验结果一致,从而支持空化气泡塌缩是爆裂声的来源。最后,该模型还表明,仅需部分塌缩气泡即可复制实验观察到的声谱,从而允许气泡在产生声音后继续存在,正如最近的实验所报道的那样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/977c/5876406/3de82857dc5c/41598_2018_22664_Fig1_HTML.jpg

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