WalshBK, CrotwellDN, RestrepoRD. Capnography/Capnometry during mechanical ventilation: 2011. Respir Care, 2011; 56(4):503–509.
2.
NeumarRW, OttoCW, LinkMS, KronickSL, ShusterM, CallawayCW, et al. 2010 American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care. Part 8.1: Adjuncts for Airway Control and Ventilation. Circulation, 2010; 122(18 Suppl 3):S729–S767.
3.
Suarez-SipmannF, BohmSH, TusmanG. Volumetric capnography: the time has come. Curr Opin Crit Care, 2014; 20(3):333–339.
4.
MaslowA, StearnsG, BertA, FengW, PriceD, SchwartzC, et al. Monitoring end-tidal carbon dioxide during weaning from cardiopulmonary bypass in patients without significant lung disease. Anesth Analg, 2001; 92(2):306–313.
5.
AhrensT, SchallomL, BettorfK, EllnerS, et al. End-tidal carbon dioxide measurements as a prognostic indicator of outcome in cardiac arrest. Am J Crit Care, 2001; 10(6):391–398.
6.
ThompsonJE, JaffeMB. Capnographic waveforms in the mechanically ventilated patient. Respir Care, 2005; 50(1):100–108; discussion 108-109.
7.
MoreiraMM, TerziRG, CortellazziL, FalcãoAL, MorenoHJr, MartinsLC, CoelhoOR. Volumetric capnography: in the diagnostic work-up of chronic thromboembolic disease. Vasc Health Risk Manag, 2010; 6:317–319.
8.
MoreiraMM, TerziRG, PaschoalIA, MartinsLC, OliveiraEP, FalcãoAL. [Thrombolysis in massive pulmonary embolism based on the volumetric capnography]. Arq Bras Cardiol, 2010; 95(4):e97–e99. Article in multiple languages.
9.
VeronezL, PereiraMC, da SilvaSM, BarcauiLA, De CapitaniEM, MoreiraMM, PaschoalIA. Volumetric capnography for the evaluation of chronic airways diseases. Int J Chron Obstruct Pulmon Dis, 2014; 9:983–989.
10.
RibeiroMA, SilvaMT, RibeiroJD, MoreiraMM, AlmeidaCC, Almeida-JuniorAA, et al. Volumetric capnography as a tool to detect early peripheric lung obstruction in cystic fibrosis patients. J Pediatr (Rio J), 2012; 88(6):509–517.
11.
AlmeidaCC, Almeida-JúniorAA, RibeiroMA, Nolasco-SilvaMT, RibeiroJD. Volumetric capnography to detect ventilation inhomogeneity in children and adolescents with controlled persistent asthma. J Pediatr (Rio J), 2011; 87(2):163–168.
12.
VerschurenF, HeinonenE, ClauseD, RoeselerJ, ThysF, MeertP, et al. Volumetric capnography as a bedside monitoring of thrombolysis in major pulmonary embolism. Intensive Care Med, 2004; 30(11):2129–2132.
13.
HardmanJG, AitkenheadAR. Estimating alveolar dead space from the arterial to end-tidal CO2 gradient: a modeling analysis. Anesth Analg, 2003; 97(6):1846–1851.
14.
VeronezL, MoreiraMM, SoaresST, PereiraMC, RibeiroMA, RibeiroJD, et al. Volumetric capnography for the evaluation of pulmonary disease in adult patients with cystic fibrosis and noncystic fibrosis bronchiectasis. Lung, 2010; 188(3):263–268.
15.
KalletRH, JasmerRM, PittetJF. Alveolar dead-space response to activated protein C in acute respiratory distress syndrome. Respir Care, 2010; 55(5):617–622.
16.
CharronC, RepesseX, BouferracheK, BodsonL, CastroS, PageB, et al. PaCO2 and alveolar dead space are more relevant than PaO2/FIO2 ratio in monitoring the respiratory response to prone position in ARDS patients: a physiological study. Crit Care, 2011; 15(4):R175.
17.
FengmeiG, JinC, SongqiaoL, CongshanY, YiY. Dead space fraction changes during PEEP titration following lung recruitment in patients with ARDS. Respir Care, 2012; 57(10):1578–1585.
18.
PereiraDJ, MoreiraMM, PaschoalIA, MartinsLC, MetzeK, Moreno JuniorH. Near-fatal pulmonary embolism in an experimental model: hemodynamic, gasometric and capnographic variables. Rev Bras Cir Cardiovasc, 2011; 26(3):462–468.
19.
KerrAA. Dead space ventilation in normal children and children with obstructive airways diease. Thorax, 1976; 31(1):63–69.
20.
WratneyAT, CheifetzIM. Extubation criteria in infants and children. Respir Care Clin N Am, 2006; 12(3):469–481.
21.
KalletRH, ZhuoH, LiuKD, CalfeeCS, MatthayMA. The association between physiologic dead-space fraction and mortality in subjects with ARDS enrolled in a prospective multi-center clinical trial. Respir Care, 2014; 59(11):1611–1618.
22.
Almeida-JuniorAA, da SilvaMT, AlmeidaCC, RibeiroJD. Relationship between physiologic deadspace/tidal volume ratio and gas exchange in infants with acute bronchiolitis on invasive mechanical ventilation. Pediatr Crit Care Med, 2007; 8(4):372–377.
23.
ArnoldJH, BowerLK, ThompsonJE. Respiratory deadspace measurements in neonates with congenital diaphragmatic hernia. Crit Care Med, 1995; 23(2):371–375.
24.
GhamraZW, ArroligaAC. Volumetric capnography in acute respiratory distress syndrome: is the era of day-to-day monitoring finally here?. Respir Care, 2005; 50(4):457–458.
25.
McSwainSD, HamelDS, SmithPB, GentileMA, SrinivasanS, MelionesJN, CheifetzIM. End-tidal and arterial carbon dioxide measurements correlate across all levels of physiologic dead space. Respir Care, 2010; 55(3):288–293.
26.
BhallaAK, RubinS, NewthCJ, RossP, MorzovR, Soto-CamposG, KhemaniR. Monitoring dead space in mechanically ventilated children: volumetric capnography versus time-based capnography. Respir Care, 2015:60(11):1548–1555.