Biomedical Signal Processing and Interpretation group, Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute of Science and Technology (BIST), Barcelona, Spain.
Biomedical Research Networking Centre in Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Barcelona, Spain.
Sci Rep. 2018 Nov 16;8(1):16921. doi: 10.1038/s41598-018-35024-z.
The current gold standard assessment of human inspiratory muscle function involves using invasive measures of transdiaphragmatic pressure (P) or crural diaphragm electromyography (oesEMG). Mechanomyography is a non-invasive measure of muscle vibration associated with muscle contraction. Surface electromyogram and mechanomyogram, recorded transcutaneously using sensors placed over the lower intercostal spaces (sEMG and sMMG respectively), have been proposed to provide non-invasive indices of inspiratory muscle activation, but have not been directly compared to gold standard P and oesEMG measures during voluntary respiratory manoeuvres. To validate the non-invasive techniques, the relationships between P and sMMG, and between oesEMG and sEMG were measured simultaneously in 12 healthy subjects during an incremental inspiratory threshold loading protocol. Myographic signals were analysed using fixed sample entropy (fSampEn), which is less influenced by cardiac artefacts than conventional root mean square. Strong correlations were observed between: mean P and mean fSampEn |sMMG| (left, 0.76; right, 0.81), the time-integrals of the P and fSampEn |sMMG| (left, 0.78; right, 0.83), and mean fSampEn oesEMG and mean fSampEn sEMG (left, 0.84; right, 0.83). These findings suggest that sMMG and sEMG could provide useful non-invasive alternatives to P and oesEMG for the assessment of inspiratory muscle function in health and disease.
目前评估人体吸气肌功能的金标准包括使用经膈压(Pdi)或膈神经肌电图(oesEMG)的侵入性测量方法。肌电图描记术是一种与肌肉收缩相关的肌肉振动的非侵入性测量方法。经皮放置在肋间下区域的传感器记录的表面肌电图和肌电图描记术(分别为 sEMG 和 sMMG),已被提出作为吸气肌激活的非侵入性指标,但尚未在自愿呼吸运动期间直接与 Pdi 和 oesEMG 金标准测量值进行比较。为了验证非侵入性技术,在 12 名健康受试者进行递增吸气阈负荷方案期间,同时测量了 Pdi 和 sMMG 之间以及 oesEMG 和 sEMG 之间的关系。肌电图信号使用固定样本熵(fSampEn)进行分析,与传统的均方根相比,fSampEn 受心脏伪影的影响较小。观察到以下方面的强相关性:平均 Pdi 和平均 fSampEn |sMMG|(左侧,0.76;右侧,0.81),Pdi 和 fSampEn |sMMG|的时间积分(左侧,0.78;右侧,0.83),以及平均 fSampEn oesEMG 和平均 fSampEn sEMG(左侧,0.84;右侧,0.83)。这些发现表明,sMMG 和 sEMG 可以为健康和疾病中吸气肌功能的评估提供有用的非侵入性替代方法,替代 Pdi 和 oesEMG。