Katayama Keisho, Itoh Yuka, Saito Mitsuru, Koike Teruhiko, Ishida Koji
Research Center of Health, Physical Fitness and Sports, Nagoya University, Nagoya, Japan Graduate School of Medicine, Nagoya University, Nagoya, Japan
Graduate School of Medicine, Nagoya University, Nagoya, Japan.
Physiol Rep. 2015 May;3(5). doi: 10.14814/phy2.12421.
The purpose of the present study was to elucidate the effect of increasing expiratory muscle work on sympathetic vasoconstrictor outflow and arterial blood pressure (BP) during dynamic exercise. We hypothesized that expiratory muscle fatigue would elicit increases in sympathetic vasomotor outflow and BP during submaximal exercise. The subjects performed four submaximal exercise tests; two were maximal expiratory pressure (PE max) tests and two were muscle sympathetic nerve activity (MSNA) tests. In each test, the subjects performed two 10-min exercises at 40% peak oxygen uptake using a cycle ergometer in a semirecumbent position [spontaneous breathing for 5 min and voluntary hyperpnoea with and without expiratory resistive breathing for 5 min (breathing frequency: 60 breaths/min, inspiratory and expiratory times were set at 0.5 sec)]. PE max was estimated before and immediately after exercises. MSNA was recorded via microneurography of the right median nerve at the elbow. PE max decreased following exercise with expiratory resistive breathing, while no change was found without resistance. A progressive increase in MSNA burst frequency (BF) appeared during exercise with expiratory resistance (MSNA BF, without resistance: +22 ± 5%, with resistance: +44 ± 8%, P < 0.05), accompanied by an augmentation of BP (mean BP, without resistance: +5 ± 2%, with resistance: +29 ± 5%, P < 0.05). These results suggest that an enhancement of expiratory muscle activity leads to increases in sympathetic vasomotor outflow and BP during dynamic leg exercise.
本研究的目的是阐明在动态运动过程中增加呼气肌工作对交感缩血管神经输出和动脉血压(BP)的影响。我们假设呼气肌疲劳会在次最大运动期间引起交感血管运动神经输出和血压升高。受试者进行了四项次最大运动测试;两项是最大呼气压力(PE max)测试,两项是肌肉交感神经活动(MSNA)测试。在每项测试中,受试者使用半卧位的自行车测力计以40%的峰值摄氧量进行两次10分钟的运动[5分钟自主呼吸,以及5分钟有和没有呼气阻力呼吸的自主过度通气(呼吸频率:60次/分钟,吸气和呼气时间设定为0.5秒)]。在运动前和运动后立即估计PE max。通过对肘部右侧正中神经进行微神经ography记录MSNA。呼气阻力呼吸运动后PE max降低,而无阻力时未发现变化。在有呼气阻力的运动过程中,MSNA爆发频率(BF)逐渐增加(MSNA BF,无阻力:+22±5%,有阻力:+44±8%,P<0.05),同时血压升高(平均血压,无阻力:+5±2%,有阻力:+29±5%,P<0.05)。这些结果表明,在动态腿部运动期间,呼气肌活动增强会导致交感血管运动神经输出和血压升高。