Regional lung perfusion estimated by electrical impedance tomography in a piglet model of lung collapse.
نویسندگان
چکیده
The assessment of the regional match between alveolar ventilation and perfusion in critically ill patients requires simultaneous measurements of both parameters. Ideally, assessment of lung perfusion should be performed in real-time with an imaging technology that provides, through fast acquisition of sequential images, information about the regional dynamics or regional kinetics of an appropriate tracer. We present a novel electrical impedance tomography (EIT)-based method that quantitatively estimates regional lung perfusion based on first-pass kinetics of a bolus of hypertonic saline contrast. Pulmonary blood flow was measured in six piglets during control and unilateral or bilateral lung collapse conditions. The first-pass kinetics method showed good agreement with the estimates obtained by single-photon-emission computerized tomography (SPECT). The mean difference (SPECT minus EIT) between fractional blood flow to lung areas suffering atelectasis was -0.6%, with a SD of 2.9%. This method outperformed the estimates of lung perfusion based on impedance pulsatility. In conclusion, we describe a novel method based on EIT for estimating regional lung perfusion at the bedside. In both healthy and injured lung conditions, the distribution of pulmonary blood flow as assessed by EIT agreed well with the one obtained by SPECT. The method proposed in this study has the potential to contribute to a better understanding of the behavior of regional perfusion under different lung and therapeutic conditions.
منابع مشابه
Regional Lung Perfusion estimated by Electrical Impedance 1 Tomography in a piglet model of lung collapse 2 3
42 43 The assessment of the regional match between alveolar ventilation and perfusion in 44 critically ill patients requires simultaneous measurements of both parameters. Ideally, 45 assessment of lung perfusion should be performed in real-time with an imaging 46 technology which provides, through fast acquisition of sequential images, information 47 about the regional dynamics or regional kine...
متن کاملComment on Borges et al. "regional lung perfusion estimated by electrical impedance tomography in a piglet model of lung collapse".
TO THE EDITOR: The paper by Borges et al. (1) presents an excellent experimental study comparing two approaches for the evaluation of regional pulmonary perfusion by electrical impedance tomography (EIT) with single photon emission computerized tomography (SPECT) as well established reference method. The negative results on the pulsatility approach confirm the skepticism addressed by recently p...
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BACKGROUND The way in which hyperoxia affects pulmonary ventilation and perfusion is not fully understood. We investigated how an increase in oxygen partial pressure in healthy young volunteers affects pulmonary ventilation and perfusion measured by thoracic electrical impedance tomography (EIT). METHODS Twelve semi-supine healthy male volunteers aged 21-36 years were studied while breathing ...
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OBJECTIVES Aiming to improve the anatomical resolution of electrical impedance tomography images, we developed a fuzzy model based on electrical impedance tomography's high temporal resolution and on the functional pulmonary signals of perfusion and ventilation. INTRODUCTION Electrical impedance tomography images carry information about both ventilation and perfusion. However, these images ar...
متن کاملPulmonary ventilation and perfusion assessed by electrical impedance tomography Experimental studies in pigs
Pulmonary ventilation and perfusion and ventilation/perfusion (V/Q) matching determine gas exchange in every lung unit in the healthy state and in the pathologically altered lung. Mismatch of V and Q lead to hypoxaemia and hypercapnia and monitoring of V/Q relations are thus important in critical illness. This thesis focuses on electrical impedance tomography (EIT) to monitor pulmonary perfusio...
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عنوان ژورنال:
- Journal of applied physiology
دوره 112 1 شماره
صفحات -
تاریخ انتشار 2012