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用于潜在医学和运动应用的肌肉组织特征化中剪切波弹性成像与测力计测试的比较。

Comparison of Shear Wave Elastography and Dynamometer Test in Muscle Tissue Characterization for Potential Medical and Sport Application.

作者信息

Soldos Peter, Besenyi Zsuzsanna, Hideghéty Katalin, Pávics László, Hegedűs Ádám, Rácz Levente, Kopper Bence

机构信息

Faculty of Kinesiology, University of Physical Education, Budapest, Hungary.

Department of Nuclear Medicine, Faculty of Medicine, University of Szeged, Szeged, Hungary.

出版信息

Pathol Oncol Res. 2021 Jun 29;27:1609798. doi: 10.3389/pore.2021.1609798. eCollection 2021.

Abstract

Skeletal muscle status and its dynamic follow up are of particular importance in the management of several diseases where weight and muscle mass loss and, consequently, immobilization occurs, as in cancer and its treatment, as well as in neurodegenerative disorders. But immobilization is not the direct result of body and muscle mass loss, but rather the loss of the maximal tension capabilities of the skeletal muscle. Therefore, the development of a non-invasive and real-time method which can measure muscle tension capabilities in immobile patients is highly anticipated. Our aim was to introduce and evaluate a special ultrasound measurement technique to estimate a maximal muscle tension characteristic which can be used in medicine and also in sports diagnostics. Therefore, we determined the relationship between the results of shear wave elastography measurements and the dynamometric data of individuals. The measurements were concluded on the m. vastus lateralis. Twelve healthy elite athletes took part in our preliminary proof of principle study-five endurance (S) and seven strength (F) athletes showing unambiguously different muscle composition features, nine healthy subjects (H) without prior sports background, and four cancer patients in treatment for a stage 3 brain tumor (T). Results showed a high correlation between the maximal dynamometric isometric torque (Mmax) and mean elasticity value () for the non-athletes [(H + T), ( = 0.795)] and for the athletes [(S + F), ( = 0.79)]. For the athletes (S + F), the rate of tension development at contraction (RTDk) and correlation was also determined ( = 0.84, < 0.05). Our measurements showed significantly greater values for the strength athletes with fast muscle fiber dominance than endurance athletes with slow muscle fiber dominance ( < 0.05). Our findings suggest that shear wave ultrasound elastography is a promising method for estimating maximal muscle tension and, also, the human skeletal muscle fiber ratio. These results warrant further investigations with a larger number of individuals, both in medicine and in sports science.

摘要

骨骼肌状态及其动态跟踪在多种疾病的管理中尤为重要,这些疾病会出现体重和肌肉量减少,进而导致活动受限,如癌症及其治疗过程,以及神经退行性疾病。但活动受限并非身体和肌肉量减少的直接结果,而是骨骼肌最大张力能力的丧失。因此,人们迫切期待开发一种能够测量非活动患者肌肉张力能力的非侵入性实时方法。我们的目的是引入并评估一种特殊的超声测量技术,以估计可用于医学及运动诊断的最大肌肉张力特征。因此,我们确定了剪切波弹性成像测量结果与个体测力数据之间的关系。测量在股外侧肌上进行。12名健康的精英运动员参与了我们初步的原理验证研究——5名耐力型(S)和7名力量型(F)运动员,他们表现出明显不同的肌肉组成特征,9名无运动背景的健康受试者(H),以及4名正在接受3期脑肿瘤治疗的癌症患者(T)。结果显示,非运动员组[(H + T),(相关系数 = 0.795)]和运动员组[(S + F),(相关系数 = 0.79)]的最大等长测力扭矩(Mmax)与平均弹性值之间存在高度相关性。对于运动员组(S + F),还确定了收缩时张力发展速率(RTDk)与(相关系数)的关系(相关系数 = 0.84,P < 0.05)。我们的测量结果显示,以快肌纤维为主的力量型运动员的(弹性值)显著高于以慢肌纤维为主的耐力型运动员(P < 0.05)。我们的研究结果表明,剪切波超声弹性成像对于估计最大肌肉张力以及人体骨骼肌纤维比例是一种很有前景的方法。这些结果值得在医学和运动科学领域对更多个体进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7581/8275576/ebf246b2a1fb/pore-27-1609798-g001.jpg

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