van Lunteren E, Prabhakar N R, Cherniack N S, Haxhiu M A, Dick T E
Department of Medicine, Case Western Reserve University, Cleveland, OH.
Respir Physiol. 1988 Jun;72(3):303-14. doi: 10.1016/0034-5687(88)90089-8.
To test the hypothesis that expiratory muscle activity is reduced during augmented breaths, electromyographic activity (EMG) of the triangularis sterni (TS) was recorded from eight pentobarbital anesthetized cats. Augmented breaths significantly increased tidal volume and peak diaphragm EMG, and prolonged inspiratory time and the first phase of expiration. However, the duration of the second phase of expiration was unchanged. Peak TS EMG was reduced during sighs in all animals, from 25 +/- 5 to 12 +/- 2 arbitrary units (P less than 0.005). Furthermore, the onset of TS activity during expiration was significantly delayed during augmented breaths (P less than 0.002), whereas the duration of expiratory firing tended to decrease but not significantly. Electrical activity was recorded from eight motor units of the TS in five cats. During resting breathing the motor units had a mean relative expiratory onset time of 46 +/- 4% of expiration, and a mean firing frequency of 19 +/- 2 impulses/sec. Two motor units became quiescent during augmented breaths. Of the remaining six motor units, three minimally shortened their duration of activity (by less than 15%) while three substantially abbreviated their period of firing (by 50% or more). In addition, all TS motor units reduced their mean firing frequency (P less than 0.05) and number of impulses per breath (P less than 0.002) during sighs. We conclude that expiratory activity of the triangularis sterni muscle is reduced during augmented breaths, due to a combination of motor unit derecruitment and a slowing of motor unit firing frequency.
为了验证在增强呼吸时呼气肌活动会降低这一假设,从八只戊巴比妥麻醉的猫身上记录了胸骨三角肌(TS)的肌电图活动(EMG)。增强呼吸显著增加了潮气量和膈肌EMG峰值,延长了吸气时间和呼气的第一阶段。然而,呼气第二阶段的持续时间没有变化。在所有动物的叹气过程中,TS EMG峰值均降低,从25±5降至12±2任意单位(P<0.005)。此外,在增强呼吸时,呼气期间TS活动的起始明显延迟(P<0.002),而呼气放电的持续时间则有减少趋势但不显著。在五只猫中记录了TS的八个运动单位的电活动。在静息呼吸期间,运动单位的平均相对呼气起始时间为呼气的46±4%,平均放电频率为19±2次/秒。在增强呼吸时,两个运动单位静止。在其余六个运动单位中,三个单位的活动持续时间略有缩短(缩短不到15%),而三个单位的放电期大幅缩短(缩短50%或更多)。此外,在叹气期间,所有TS运动单位的平均放电频率(P<0.05)和每呼吸冲动次数(P<0.002)均降低。我们得出结论,在增强呼吸时,胸骨三角肌的呼气活动降低,这是运动单位失募集和运动单位放电频率减慢共同作用的结果。