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  2. Respiratory quotient - Wikipedia

    en.wikipedia.org/wiki/Respiratory_quotient

    The respiratory quotient (RQ or respiratory coefficient) is a dimensionless number used in calculations of basal metabolic rate (BMR) when estimated from carbon dioxide production. It is calculated from the ratio of carbon dioxide produced by the body to oxygen consumed by the body, when the body is in a steady state.

  3. Winters's formula - Wikipedia

    en.wikipedia.org/wiki/Winters's_formula

    One difficulty in evaluation acid-base derangements is the presence of multiple pathologies. A patient may present with a metabolic acidosis process alone, but they may also have a concomitant respiratory acidosis. Winters's formula gives an expected value for the patient's P CO 2; the patient's actual (measured) P CO 2 is then compared to this ...

  4. Lung compliance - Wikipedia

    en.wikipedia.org/wiki/Lung_compliance

    Lung compliance is an important measurement in respiratory physiology. [2] [3] Decreased pulmonary compliance may be associated with fibrosis. Increased pulmonary compliance may be associated with COPD and emphysema due to loss of alveolar and elastic tissue. Pulmonary surfactant increases compliance by decreasing the surface tension of water.

  5. Work of breathing - Wikipedia

    en.wikipedia.org/wiki/Work_of_breathing

    The normal relaxed state of the lung and chest is partially empty. Further exhalation requires muscular work. Inhalation is an active process requiring work. [4] Some of this work is to overcome frictional resistance to flow, and part is used to deform elastic tissues, and is stored as potential energy, which is recovered during the passive process of exhalation, Tidal breathing is breathing ...

  6. ΔP - Wikipedia

    en.wikipedia.org/wiki/ΔP

    In general, compliance is defined by the change in volume (ΔV) versus the associated change in pressure (ΔP), or ΔV/ΔP: = During mechanical ventilation, compliance is influenced by three main physiologic factors:

  7. Alveolar gas equation - Wikipedia

    en.wikipedia.org/wiki/Alveolar_gas_equation

    The alveolar gas equation is the method for calculating partial pressure of alveolar oxygen (p A O 2). The equation is used in assessing if the lungs are properly transferring oxygen into the blood. The alveolar air equation is not widely used in clinical medicine, probably because of the complicated appearance of its classic forms.

  8. Functional residual capacity - Wikipedia

    en.wikipedia.org/wiki/Functional_residual_capacity

    Lung volumes. Functional residual capacity (FRC) is the volume of air present in the lungs at the end of passive expiration. [1] At FRC, the opposing elastic recoil forces of the lungs and chest wall are in equilibrium and there is no exertion by the diaphragm or other respiratory muscles.

  9. Bohr equation - Wikipedia

    en.wikipedia.org/wiki/Bohr_equation

    The Bohr equation helps us find the amount of any expired gas, CO 2, N 2, O 2, etc. In this case we will focus on CO 2. Defining F e as the fraction of CO 2 in the average expired breath, F A as the fraction of CO 2 in the perfused alveolar volume, and F d as the CO 2 makeup of the unperfused (and thus 'dead') region of the lung; V T x F e ...

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