Grupo de Estudos em Aptidão Aeróbia, Escola de Educação Física e Esporte, Universidade de São Paulo, São Paulo, SP, Brasil.
Grupo de Pesquisa em Desempenho Humano, Universidade Tecnológica Federal do Paraná, Curitiba, PR, Brasil.
Braz J Med Biol Res. 2024 Mar 4;57:e13102. doi: 10.1590/1414-431X2024e13102. eCollection 2024.
The present study investigated the reliability and sensitivity of a wearable near-infrared spectroscopy (wNIRS) device in moderate and heavy exercise intensity domains. On three separate days, eleven males performed an incremental test to exhaustion, and in the following visits, four submaximal constant-load bouts (i.e., test and retest) were performed in the moderate-intensity domain (100 and 130 W) and heavy-intensity domain (160 and 190 W). The local tissue oxygen saturation index (SmO2) and pulmonary oxygen uptake (V̇O2) were measured continuously. The absolute SmO2 and V̇O2 values and the change (Δ) from the 3rd to 6th min of exercise were calculated. There was good reliability for SmO2 measurements, as indicated by the high intraclass correlation coefficient analysis (ICC ≥0.84 for all) and low coefficient of variation between the two trials (CV ≤4.1% for all). Steady-state responses were observed for SmO2 and V̇O2 from the 3rd to the 6th min in the two moderate-intensity bouts (P>0.05), whereas SmO2 decreased and V̇O2 increased from the 3rd to the 6th min in the two heavy-intensity bouts (P<0.05). Together, these findings suggested that the SmO2 measured with a wNIRS device is reliable and sensitive to track local metabolic changes provoked by slight increments in exercise intensity.
本研究旨在探讨穿戴近红外光谱(wNIRS)设备在中等和高强度运动强度范围内的可靠性和敏感性。11 名男性在三天的时间里分别进行了递增至力竭的测试,随后在接下来的访问中,在中等强度域(100 和 130 W)和高强度域(160 和 190 W)进行了四次亚最大恒负荷运动(即测试和复测)。连续测量局部组织氧饱和度指数(SmO2)和肺氧摄取量(V̇O2)。计算绝对 SmO2 和 V̇O2 值以及运动第 3 至 6 分钟的变化量(Δ)。SmO2 测量具有很好的可靠性,因为组内相关系数分析(ICC 均≥0.84)较高,两次试验之间的变异系数(CV 均≤4.1%)较低。在两个中等强度运动中,从第 3 分钟到第 6 分钟,SmO2 和 V̇O2 观察到稳定的反应(P>0.05),而在两个高强度运动中,从第 3 分钟到第 6 分钟,SmO2 降低而 V̇O2 增加(P<0.05)。综上所述,这些发现表明,wNIRS 设备测量的 SmO2 可靠且敏感,可追踪运动强度略有增加引起的局部代谢变化。