Younes M, Sanii R
Department of Medicine, University of Manitoba, Winnipeg, Canada.
J Appl Physiol (1985). 1989 Aug;67(2):699-706. doi: 10.1152/jappl.1989.67.2.699.
Inspiratory prolongation is an integral component of the response to added inspiratory resistance. To ascertain whether this response depends on the relation between inspiratory flow (V) and the pressure perturbation, we compared the responses when this relationship was made progressively less distinct by creating phase shifts between V and the resulting negative mouth pressure (Pm). This was done with an apparatus that altered Pm in proportion to V (J. Appl. Physiol. 62:2491-2499, 1987). V was passed through low-pass electronic filters of different frequency responses before serving as the command signal to the apparatus. In six normal subjects the average neural inspiratory duration (TI) response (delta TI) was sharply (P less than 0.01) reduced (0.32 +/- 0.07 to 0.12 +/- 0.07 s) when the filter's frequency response decreased from 7.5 to 3.0 Hz. The TI response was essentially flat between tube resistance (i.e., no lag, delta TI = 0.36 +/- 0.11 s) and the 7.5-Hz filter, and there was no further change in TI response with filters having a frequency response less than 3.0 Hz, with all TI responses in this range being not significant. Subjects could not consciously perceive a difference between various filter settings. We conclude that the TI response is critically influenced by the phase of the negative pressure wave relative to TI. Furthermore the TI responses are not deliberate, although consciousness is required for their elicitation.
吸气延长是对增加的吸气阻力作出反应的一个组成部分。为了确定这种反应是否取决于吸气流量(V)与压力扰动之间的关系,我们通过在V与由此产生的口腔负压(Pm)之间产生相移,使这种关系逐渐变得不那么明显,从而比较了相应的反应。这是通过一种装置来完成的,该装置使Pm与V成比例变化(《应用生理学杂志》62:2491 - 2499,1987)。在作为该装置的指令信号之前,V先通过具有不同频率响应的低通电子滤波器。在6名正常受试者中,当滤波器的频率响应从7.5赫兹降至3.0赫兹时,平均神经吸气持续时间(TI)反应(δTI)急剧(P < 0.01)降低(从0.32 ± 0.07秒降至0.12 ± 0.07秒)。在气管阻力(即无滞后,δTI = 0.36 ± 0.11秒)与7.5赫兹滤波器之间,TI反应基本平稳,并且对于频率响应小于3.0赫兹的滤波器,TI反应没有进一步变化,此范围内的所有TI反应均无统计学意义。受试者无法有意识地察觉到不同滤波器设置之间的差异。我们得出结论,TI反应受到负压波相对于TI的相位的严重影响。此外,TI反应并非刻意为之,尽管引发这些反应需要意识参与。