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The influence of inspiratory muscle work history and specific inspiratory muscle training upon human limb muscle fatigue

机译:吸气肌肉的工作经历和特定的吸气肌肉训练对人肢体肌肉疲劳的影响

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摘要

The purpose of this study was to assess the influence of the work history of the inspiratory muscles upon the fatigue characteristics of the plantar flexors (PF). We hypothesized that under conditions where the inspiratory muscle metaboreflex has been elicited, PF fatigue would be hastened due to peripheral vasoconstriction. Eight volunteers undertook seven test conditions, two of which followed 4 week of inspiratory muscle training (IMT). The inspiratory metaboreflex was induced by inspiring against a calibrated flow resistor. We measured torque and EMG during isometric PF exercise at 85% of maximal voluntary contraction (MVC) torque. Supramaximal twitches were superimposed upon MVC efforts at 1 min intervals (MVCTI); twitch interpolation assessed the level of central activation. PF was terminated (Tlim) when MVCTI was <50% of baseline MVC. PF Tlim was significantly shorter than control (9.93 ± 1.95 min) in the presence of a leg cuff inflated to 140 mmHg (4.89 ± 1.78 min; P = 0.006), as well as when PF was preceded immediately by fatiguing inspiratory muscle work (6.28 ± 2.24 min; P = 0.009). Resting the inspiratory muscles for 30 min restored the PF Tlim to control. After 4 weeks, IMT, inspiratory muscle work at the same absolute intensity did not influence PF Tlim, but Tlim was significantly shorter at the same relative intensity. The data are the first to provide evidence that the inspiratory muscle metaboreflex accelerates the rate of calf fatigue during PF, and that IMT attenuates this effect.
机译:这项研究的目的是评估吸气肌肉的工作史对the屈(PF)疲劳特性的影响。我们假设,在已经引起吸气肌代谢反射的情况下,由于周围血管收缩会加速PF疲劳。八名志愿者进行了七个测试条件,其中两个在进行了为期4周的吸气肌肉训练(IMT)之后进行。吸气代谢反射是通过向标定的流量电阻器吸气而引起的。我们在等距PF运动期间测量了最大自愿收缩(MVC)扭矩的85%时的扭矩和EMG。超最大抽搐以1分钟间隔(MVCTI)叠加在MVC上;抽搐插值评估了中枢激活水平。当MVCTI小于基线MVC的50%时,PF终止(Tlim)。在腿部充气至140 mmHg(4.89±1.78 min; P = 0.006)的情况下,以及紧接在PF之前使吸气性肌肉疲劳的情况下,PF Tlim明显短于对照组(9.93±1.95 min)。 ±2.24分钟; P = 0.009)。静息吸气肌肉30分钟,使PF Tlim恢复至控制状态。 4周后,在相同的绝对强度下,IMT,吸气肌肉工作不会影响PF Tlim,但在相同的相对强度下,Tlim明显短一些。该数据是第一个提供证据,证明吸气肌肉代谢反射会加速PF期间小腿的疲劳,而IMT会减弱这种作用。

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