Department of Nutrition and Health Sciences, 110 Ruth Leverton Hall, University of Nebraska-Lincoln, Lincoln, NE, 68583-0806, USA.
Eur J Appl Physiol. 2010 Jan;108(2):337-45. doi: 10.1007/s00421-009-1239-7. Epub 2009 Oct 8.
The purposes of this investigation were twofold: (1) to determine if the model used for estimating the physical working capacity at the fatigue threshold (PWC(FT)) from electromyographic (EMG) amplitude data could be applied to the frequency domain of the signal to derive a new fatigue threshold for cycle ergometry called the mean power frequency fatigue threshold (MPF(FT)), and (2) to compare the power outputs associated with the PWC(FT), MPF(FT), ventilatory threshold (VT), and respiratory compensation point (RCP). Sixteen men [mean (SD) age = 23.4 (3.2) years] performed incremental cycle ergometer rides to exhaustion with bipolar surface EMG signals recorded from the vastus lateralis. There were significant (p < 0.05) mean differences for PWC(FT) [mean (SD) = 168 (36) W] versus MPF(FT) [208 (37) W] and VT [152 (33) W] versus RCP [205 (84) W], but no mean differences for PWC(FT) versus VT or MPF(FT) versus RCP. The mean difference between PWC(FT) and MPF(FT) may be due to the effects of specific metabolites that independently influence the time and frequency domains of the EMG signal. These findings indicated that the PWC(FT) model could be applied to the frequency domain of the EMG signal to estimate MPF(FT). Furthermore, the current findings suggested that the PWC(FT) may demarcate the moderate from heavy exercise domains, while the MPF(FT) demarcates heavy from severe exercise intensities.
(1) 确定是否可以将用于从肌电图 (EMG) 幅度数据估算疲劳阈值下体力工作能力 (PWC(FT)) 的模型应用于信号的频域,以得出新的用于测功计的疲劳阈值,称为平均功率频率疲劳阈值 (MPF(FT));(2) 比较与 PWC(FT)、MPF(FT)、通气阈 (VT) 和呼吸补偿点 (RCP) 相关的功率输出。16 名男性[平均 (标准差) 年龄=23.4 (3.2) 岁]进行递增式测功计骑行直至力竭,同时记录来自股外侧肌的双极表面 EMG 信号。PWC(FT)[平均 (标准差)=168 (36) W]与 MPF(FT)[208 (37) W]以及 VT[152 (33) W]与 RCP[205 (84) W]之间存在显著的均值差异 (p < 0.05),但 PWC(FT)与 VT 或 MPF(FT)与 RCP 之间没有均值差异。PWC(FT)与 MPF(FT)之间的均值差异可能归因于独立影响 EMG 信号的时间和频率域的特定代谢物的影响。这些发现表明,PWC(FT)模型可以应用于 EMG 信号的频域来估算 MPF(FT)。此外,目前的研究结果表明,PWC(FT)可以区分中等和剧烈运动强度,而 MPF(FT)可以区分剧烈和严重运动强度。