Harrison Adrian P
Department of Veterinary Clinical & Animal Sciences, Faculty of Health & Medical Sciences, Copenhagen University, Frederiksberg C, Denmark.
Clin Physiol Funct Imaging. 2018 Mar;38(2):312-325. doi: 10.1111/cpf.12417. Epub 2017 Mar 2.
Acoustic myography (AMG) enables a detailed and accurate measurement of those muscles involved in a particular movement and is independent of electrical signals between the nerve and muscle, measuring solely muscle contractions, unlike surface electromyography (sEMG). With modern amplifiers and digital sound recording systems, measurements during physical activity both inside and outside a laboratory setting are now possible and accurate. Muscle sound gives a representation of the work of each muscle group during a complex movement, and under certain forms of movement even reveals both concentric and eccentric activity, something that sEMG is incapable of. Recent findings suggest that AMG has a number of advantages over sEMG, being simple to use, accurate and repeatable as well as being intuitive to interpret. The AMG signal comprises three physiological parameters, namely efficiency/coordination (E-score), spatial summation (S-score) and temporal summation (T-score). It is concluded that modern AMG units have the potential to accurately assess patients with neuromuscular and musculoskeletal complaints in hospital clinics, home monitoring situations as well as sports settings.
肌声描记术(AMG)能够对参与特定运动的肌肉进行详细而准确的测量,它独立于神经与肌肉之间的电信号,仅测量肌肉收缩,这与表面肌电图(sEMG)不同。借助现代放大器和数字录音系统,现在可以在实验室环境内外的体育活动期间进行准确的测量。肌肉声音能够呈现复杂运动中每个肌肉群的工作情况,在某些运动形式下甚至能揭示向心和离心活动,而这是sEMG无法做到的。最近的研究结果表明,AMG相对于sEMG具有许多优势,它使用简单、准确、可重复,并且易于解释。AMG信号包含三个生理参数,即效率/协调性(E值)、空间总和(S值)和时间总和(T值)。得出的结论是,现代AMG设备有潜力在医院诊所、家庭监测环境以及体育场所中准确评估患有神经肌肉和肌肉骨骼疾病的患者。