Lopata M, La Fata J, Evanich M J, Lourenço R V
Am Rev Respir Dis. 1977 Jan;115(1):73-81. doi: 10.1164/arrd.1977.115.1.73.
To evaluate mouth occlusion pressure as an index of neural drive to the respiratory muscles that is independent of lung mechanics, the occlusion pressure response to rebreathing was studied in 7 normal subjects under control conditions and during flow-resistive loading. Inspiratory, expiratory, and combined inspiratory-expiratory flow resistances of 5 and 17 cm H2O per liter per sec were studied in 7 normal subjects. Pressure at the mouth was measured 150 msec after the onset of inspiration against the occluded airway. In all subjects, the ventilatory response to CO2 rebreathing was consistenly decreased by the 3 types of resistive loads, and this decrease was often greater with the higher load. In contrast, the occlusion pressure response was usually increased with inspiratory and inspiratory-expiratory resistance, indicating increased inspiratory muscle output due to these loads. With expiratory resistance, the occlusion pressure response was decreased in most of the subjects, suggesting a decrease in muscular output with expiratory loading. The inspiratory muscle pressure response to resistive loading could have been mediated by neural reflex and/or intrinsic muscle mechanisms. Occlusion pressure, therefore, appears to reflect over-all inspiratory neuromuscular output of the respiratory system during CO2 rebreathing, even with the addition of flow-resistive loads. Measures of mouth occlusion pressure provide a distinct advantage over ventilatory parameters in studies of respiratory control mechanisms during mechanical loading.
为了评估口腔闭塞压作为一种独立于肺力学的呼吸肌神经驱动指标,我们对7名正常受试者在对照条件下以及在流阻负荷期间对再呼吸的闭塞压反应进行了研究。对7名正常受试者研究了每秒每升5和17厘米水柱的吸气、呼气以及吸气 - 呼气联合流阻。在吸气开始后150毫秒测量闭塞气道时口腔处的压力。在所有受试者中,三种类型的阻力负荷均持续降低了对二氧化碳再呼吸的通气反应,且较高负荷时这种降低往往更大。相比之下,闭塞压反应通常在吸气和吸气 - 呼气阻力时增加,表明由于这些负荷吸气肌输出增加。在呼气阻力时,大多数受试者的闭塞压反应降低,提示呼气负荷时肌肉输出减少。吸气肌对阻力负荷的压力反应可能由神经反射和/或内在肌肉机制介导。因此,即使增加了流阻负荷,闭塞压似乎仍能反映二氧化碳再呼吸期间呼吸系统整体的吸气神经肌肉输出。在机械负荷期间呼吸控制机制的研究中,口腔闭塞压测量相对于通气参数具有明显优势。