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May 28, 2014American Journal of Respiratory and Critical Care Medicine228 citations

Reading Pulmonary Vascular Pressure Tracings. How to Handle the Problems of Zero Leveling and Respiratory Swings

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GKGábor KovácsAAAlexander AvianMPMichael Pienn

Key Points

  • This research aims to address issues related to pulmonary vascular pressure measurement accuracy and recommend optimal procedures for zero leveling and respiratory swings.
  • Review of physiological and anatomical data regarding pulmonary vascular pressures.
  • Assessment of zero leveling procedures at three transthoracic planes: midchest frontal, fourth intercostal transverse, and midsagittal.
  • Analysis of the impact of respiratory swings and recommendations for averaging pressures over multiple cycles.
  • End-expiratory reading at functional residual capacity minimizes the influence of lung recoil on pressure readings.
  • Hyperventilation significantly alters end-expiratory lung volume and increases intrathoracic pressure, raising pulmonary vascular pressures.
  • Averaging pulmonary vascular pressures across multiple cycles is often preferred for consistency, except in dynamic hyperinflation states.

Abstract

The accuracy of pulmonary vascular pressure measurements is of great diagnostic and prognostic relevance. However, there is variability of zero leveling procedures, and the current recommendation of end-expiratory reading may not always be adequate. A review of physiological and anatomical data, supported by recent imaging, leads to the practical recommendation of zero leveling at the cross-section of three transthoracic planes, which are, respectively midchest frontal, transverse through the fourth intercostal space, and midsagittal. As for the inevitable respiratory pressure swings, end-expiratory reading at functional residual capacity allows for minimal influence of elastic lung recoil on pulmonary pressure reading. However, hyperventilation is associated with changes in end-expiratory lung volume and increased intrathoracic pressure, eventually exacerbated by expiratory muscle contraction and dynamic hyperinflation, all increasing pulmonary vascular pressures. This problem is amplified in patients with obstructed airways. With the exception of dynamic hyperinflation states, it is reasonable to assume that negative inspiratory and positive expiratory intrathoracic pressures cancel each other out, so averaging pulmonary vascular pressures over several respiratory cycles is most often preferable. This recommendation may be generalized for the purpose of consistency and makes sense, as pulmonary blood flow measurements are not corrected for phasic inspiratory and expiratory changes in clinical practice.

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Cite This Study

Kovács et al. (2014) studied this question.

synapsesocial.com/papers/6a0d294ad7cdc72b86656767https://doi.org/10.1164/rccm.201402-0269pp
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