首页> 美国卫生研究院文献>The Journal of Physiology >A dynamic analysis of the ventilatory response to carbon dioxide inhalation in man.
【2h】

A dynamic analysis of the ventilatory response to carbon dioxide inhalation in man.

机译:人体对二氧化碳吸入的通气反应的动态分析。

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

1. The dynamics of the ventilatory response to carbon dioxide inhalation were studied in ten healthy young men using four different inspired fractions of carbon dioxide (FI, CO2) in air (0.015, 0.030, 0.045 and 0.060) successively increasing and decreasing stepwise. 2. Seven such different progressions were performed for each subject and each of seven different durations of the steps (t) ranging between 0.1 (i.e. one ventilatory cycle) and 10 min ('steady-state' conditions). The overall duration of one test (T) was taken as the sum of the seven successive FI, CO2 steps (t) plus one step, t, of air breathing. Thus, the values of T ranged between 0.8 (i.e. eight ventilatory cycles) and 80 min. Three subjects were tested twice. 3. We measured, as a function of T, the magnitude of the loops formed by the curves PA, CO2-VE and the value of the highest ventilatory response (VE max) to each progression. For all ten subjects, both functions had two maxima, one for T values of 2.6 or 8.0 min and one for T values of 24 or 40 min, and one minimum at T equal to 12 min. 4. The same measurements were made on tidal volume-response curves (PA, CO2-VT) and ventilatory frequency-response curves (PA, CO2-f) and yielded the same results except for the ventilatory frequency-response curves, for which we only found a statistically insignificant single maximum for T values of 24 or 40 min. 5. The locations of the maxima in loop magnitude and VE max were similar in duplicate tests in three subjects, whereas the quantitative values of these variables showed wide differences. 6. We compared our results with what is expected from the current linear dynamic model of ventilatory control submitted to the same forcing function: the first maximum in the loop magnitude is predicted by the model, but the second is not. The model shows no peak in the evolution of VE max. 7. We conclude that controlled system dynamics, which are the only ones included in dynamic models of ventilatory control, cannot by themselves account for our observations, and that one should take into consideration the dynamics of the controlling neuronal network.
机译:1.在十名健康的年轻人中研究了通气对二氧化碳吸入的反应动力学,使用空气中的四种不同的二氧化碳分数(FI,CO2)(0.015、0.030、0.045和0.060)逐步增加和减少。 2.对每个受试者进行了七个这样的不同进程,并且步骤(t)的七个不同持续时间分别在0.1(即一个通气周期)和10分钟(“稳态”条件)之间进行。一项测试的总持续时间(T)是连续七个FI,CO2步骤(t)加上一级呼吸t的总和。因此,T的值在0.8(即八个通气周期)和80分钟之间。对三个受试者进行了两次测试。 3.我们测量了由曲线PA,CO2-VE形成的环路的大小以及每个进程的最高通气反应值(VE max),作为T的函数。对于所有十个受试者,两个函数都有两个最大值,一个对于T值为2.6或8.0分钟,一个对于T值为24或40分钟,一个在T等于12分钟时最小。 4.对潮气量响应曲线(PA,CO2-VT)和通气频率响应曲线(PA,CO2-f)进行了相同的测量,除通气频率响应曲线外,得出的结果相同。仅发现24或40分钟的T值在统计上微不足道的单个最大值。 5.在三个对象的重复测试中,循环幅度最大值和VE max的最大值位置相似,而这些变量的定量值差异很大。 6.我们将结果与当前通风控制的线性动态模型(已提交给相同的强制函数)所期望的结果进行了比较:环路幅度中的第一个最大值由模型预测,而第二个则不是。该模型在VE max的演变中未显示峰值。 7.我们得出的结论是,受控的系统动力学是通风控制的动力学模型中唯一包含的变量,它们本身不能解释我们的观察结果,因此应该考虑控制神经元网络的动力学。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号