Nakazono Y, Miyamoto Y
Jpn J Physiol. 1985;35(1):33-43. doi: 10.2170/jjphysiol.35.33.
Dynamic characteristics of ventilation, cardiac output, and gas exchange in response to passive limb movements were studied in four healthy men in an upright position. Passive exercise was performed on a motor-driven bicycle ergometer, of which pedaling rate was varied from control (30 rpm) to stimulus (90 rpm) level in a stepwise fashion. Stroke volume (SV), heart rate (HR), and cardiac output (Q) were determined continuously during the exercise by using an automated impedance cardiograph. Minute ventilation (VE), respiratory frequency (f), tidal volume (VT), oxygen consumption (VO2), carbon dioxide output (VCO2), end-tidal pressure of oxygen and carbon dioxide (PETO2 and PETCO2), and the gas exchange ratio (R) were also determined at each breath. When the pedaling rate was increased, Q and VE rose in excess of metabolic need with a half response time of about 10 sec, and remained elevated for the duration of the stimulus. VO2 and VCO2 rose transiently, then recovered to the initial control level after a few min. PETCO2 remained at the control level for about one min, then decreased by 1 Torr. PETO2 and R rose transiently. These results suggest that hyperpnea during passive exercise is not induced by chemical stimuli to known chemoreceptors, but is due to reflexes mediated either by moving limbs or the right heart.
对四名直立位健康男性在被动肢体运动时的通气、心输出量及气体交换的动态特征进行了研究。被动运动在电动自行车测力计上进行,蹬踏速率从对照(30转/分钟)逐步变化至刺激(90转/分钟)水平。在运动过程中,使用自动阻抗心动图仪连续测定每搏输出量(SV)、心率(HR)和心输出量(Q)。还在每次呼吸时测定分钟通气量(VE)、呼吸频率(f)、潮气量(VT)、耗氧量(VO2)、二氧化碳排出量(VCO2)、呼气末氧分压和二氧化碳分压(PETO2和PETCO2)以及气体交换率(R)。当蹬踏速率增加时,Q和VE超过代谢需求而升高,半反应时间约为10秒,并在刺激持续期间保持升高。VO2和VCO2短暂升高,然后在几分钟后恢复到初始对照水平。PETCO2在对照水平保持约1分钟,然后下降1托。PETO2和R短暂升高。这些结果表明,被动运动期间的呼吸急促不是由已知化学感受器的化学刺激引起的,而是由肢体运动或右心介导的反射所致。