Eiken O
Department of Environmental Medicine, Karolinska Institutet, Stockholm, Sweden.
Eur J Appl Physiol Occup Physiol. 1988;57(6):772-6. doi: 10.1007/BF01076002.
Ventilatory, cardiovascular and metabolic functions and work performance were studied in men performing incremental-load dynamic leg exercise until exhaustion. Part I: Responses to supine exercise were investigated in 8 subjects during exposure of the lower body to subatmospheric pressure at -6.67 kPa (-50 mm Hg) (Lower Body Negative Pressure, LBNP). Due to curtailment of stroke volume, cardiac output was reduced by LBNP over a wide range of work intensities, including heavy loads: ventilation, oxygen uptake and blood lactate concentrations increased with work load, but at lower rates than in the control condition. Part II: In 9 subjects, work performance was compared in three conditions: supine exercise with and without LBNP, and upright exercise. Performance in supine exercise was enhanced by LBNP, and was further improved in upright exercise. In supine exercise, the LBNP-induced reduction in blood lactate and enhancement of work performance are attributed to a more efficient muscle blood flow resulting from increased local perfusion pressure. This strongly suggests that the primary limitation of work performance was set by the peripheral circulation in working muscles rather than by cardiac performance. A similar mechanism may, in part, explain why work performance in dynamic leg exercise was greater in the upright than in the supine posture. It is also concluded that supine leg exercise during LBNP is a useful model of upright exercise, with regard to the central circulation and the circulation in working muscles.
对进行递增负荷动态腿部运动直至力竭的男性的通气、心血管和代谢功能以及工作能力进行了研究。第一部分:在8名受试者中,研究了下半身暴露于-6.67 kPa(-50 mmHg)的负压(下体负压,LBNP)时对仰卧位运动的反应。由于每搏输出量减少,在包括重负荷在内的广泛工作强度范围内,LBNP都会使心输出量降低;通气、摄氧量和血乳酸浓度随工作负荷增加,但速率低于对照条件。第二部分:在9名受试者中,比较了三种条件下的工作能力:有和没有LBNP的仰卧位运动以及直立位运动。LBNP可增强仰卧位运动的工作能力,而直立位运动时工作能力进一步提高。在仰卧位运动中,LBNP引起的血乳酸降低和工作能力增强归因于局部灌注压力增加导致肌肉血流更有效。这强烈表明,工作能力的主要限制因素是工作肌肉的外周循环而非心脏功能。类似的机制可能部分解释了为什么动态腿部运动时直立位的工作能力大于仰卧位。还得出结论,就中心循环和工作肌肉的循环而言,LBNP期间的仰卧位腿部运动是直立位运动的有用模型。