Imaging the intramuscular pressure of living muscles with shear waves

IF 5 2区 工程技术 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Journal of The Mechanics and Physics of Solids Pub Date : 2024-08-28 DOI:10.1016/j.jmps.2024.105834
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Abstract

Shear wave elastography (SWE) is an innovative method that allows for the nondestructive and quantitative characterization of muscular mechanical properties. This method finds extensive utility in fields such as sports medicine, sports rehabilitation, and the diagnosis of muscle-related ailments. Existing studies have demonstrated the promise of SWE in probing intramuscular pressure (IMP), a factor intimately tied to muscular physiological functions and the onset of certain diseases. Nonetheless, there remains a lack of a SWE method grounded in an appropriate biomechanical model capable of effectively imaging IMP in vivo. Addressing this issue, we propose a shear wave imaging method relaying on a porohyperelastic model encompassing well-defined parameters for both muscular active behavior and intramuscular pressure. Drawing upon wave motion analysis, we establish a correlation between shear wave velocities and IMP in analytical form. This theoretical solution on one hand help understand the interplay between IMP and muscle active stress and the impact of muscle contraction on IMP. On the other hand, it enables us to develop an elastography method to assess IMP in vivo. We conducted a series of experiments to underscore the applicability of our theory and elastography method. Ex vivo experiments were performed on porcine muscles, while in vivo tests were carried out on human skeletal muscles. The results from the ex vivo tests validate the efficacy of our method. Meanwhile, the in vivo outcomes suggest that our approach holds potential to assess the variation of IMP with muscle fatigue and injuries, inspect intramuscular injections, and diagnose acute and chronic compartment syndrome.

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利用剪切波成像活体肌肉的肌内压力
剪切波弹性成像(SWE)是一种创新方法,可对肌肉的机械特性进行无损和定量表征。这种方法在运动医学、运动康复和肌肉相关疾病诊断等领域具有广泛用途。现有研究表明,SWE 在探测肌肉内压 (IMP) 方面大有可为,而肌肉内压是一个与肌肉生理功能和某些疾病的发病密切相关的因素。然而,目前仍缺乏一种基于适当生物力学模型的 SWE 方法,能够有效地对体内 IMP 进行成像。为了解决这个问题,我们提出了一种剪切波成像方法,该方法基于一个包含肌肉活动行为和肌内压力的明确参数的孔隙超弹性模型。通过波运动分析,我们以分析形式建立了剪切波速度与 IMP 之间的相关性。这一理论解决方案一方面有助于理解 IMP 与肌肉活动应力之间的相互作用,以及肌肉收缩对 IMP 的影响。另一方面,它使我们能够开发一种弹性成像方法来评估体内的 IMP。我们进行了一系列实验,以强调我们的理论和弹性成像方法的适用性。体外实验在猪肌肉上进行,而体内测试则在人体骨骼肌上进行。体外测试结果验证了我们方法的有效性。同时,体内试验结果表明,我们的方法在评估 IMP 随肌肉疲劳和损伤的变化、检查肌肉注射以及诊断急性和慢性隔室综合征方面具有潜力。
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来源期刊
Journal of The Mechanics and Physics of Solids
Journal of The Mechanics and Physics of Solids 物理-材料科学:综合
CiteScore
9.80
自引率
9.40%
发文量
276
审稿时长
52 days
期刊介绍: The aim of Journal of The Mechanics and Physics of Solids is to publish research of the highest quality and of lasting significance on the mechanics of solids. The scope is broad, from fundamental concepts in mechanics to the analysis of novel phenomena and applications. Solids are interpreted broadly to include both hard and soft materials as well as natural and synthetic structures. The approach can be theoretical, experimental or computational.This research activity sits within engineering science and the allied areas of applied mathematics, materials science, bio-mechanics, applied physics, and geophysics. The Journal was founded in 1952 by Rodney Hill, who was its Editor-in-Chief until 1968. The topics of interest to the Journal evolve with developments in the subject but its basic ethos remains the same: to publish research of the highest quality relating to the mechanics of solids. Thus, emphasis is placed on the development of fundamental concepts of mechanics and novel applications of these concepts based on theoretical, experimental or computational approaches, drawing upon the various branches of engineering science and the allied areas within applied mathematics, materials science, structural engineering, applied physics, and geophysics. The main purpose of the Journal is to foster scientific understanding of the processes of deformation and mechanical failure of all solid materials, both technological and natural, and the connections between these processes and their underlying physical mechanisms. In this sense, the content of the Journal should reflect the current state of the discipline in analysis, experimental observation, and numerical simulation. In the interest of achieving this goal, authors are encouraged to consider the significance of their contributions for the field of mechanics and the implications of their results, in addition to describing the details of their work.
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