EXPLORE A LITERATURA

Individual Positive End-expiratory Pressure Settings Optimize Intraoperative Mechanical Ventilation and Reduce Postoperative Atelectasis.

Link: https://www.ncbi.nlm.nih.gov/pubmed/30260897

By:

Pereira SM1, Tucci MR, Morais CCA, Simões CM, Tonelotto BFF, Pompeo MS, Kay FU, Pelosi P, Vieira JE, Amato MBP.

The EIT-based global inhomogeneity index is highly correlated with regional lung opening in patients with acute respiratory distress syndrome. BMC Res Notes 7: 82, 2014.

Link: https://www.ncbi.nlm.nih.gov/pubmed/24502320

By:

Zhao Z, Pulletz S, Frerichs I, Müller-Lisse U, Möller K.

Imbalances in regional lung ventilation: a validation study on electrical impedance tomography. Am J Respir Crit Care Med 169: 791–800, 2004.

Link: https://www.ncbi.nlm.nih.gov/pubmed/14693669

By:

Victorino JA, Borges JB, Okamoto VN, Matos GFJ, Tucci MR, Caramez MPR, Tanaka H, Sipmann FS, Santos DCB, Barbas CSV, Carvalho CRR, Amato MBP.

Dynamics of regional lung aeration determined by electrical impedance tomography in patients with acute respiratory distress syndrome. MultidiscipRespirMed 7: 44, 2012.

Link: https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3528404/

By:

Pulletz S, Kott M, Elke G, Schadler D, Vogt B, Weiler N, Frerichs I.

Positive end-expiratory pressure titration at bedside using electrical impedance tomography in post-operative cardiac surgery patients. Acta anaesthesiologica Scandinavica 59: 723–732, 2015.

Link: https://www.ncbi.nlm.nih.gov/pubmed/25867049

By:

Karsten J, Grusnick C, Paarmann H, Heringlake M, Heinze H.

Regional pulmonary pressure volume curves in mechanically ventilated patients with acute respiratory failure measured by electrical impedance tomography. Acta anaesthesiologica Scandinavica 50: 331–339, 2006.

Link: https://www.ncbi.nlm.nih.gov/pubmed/16480467

By:

Hinz J, Moerer O, Neumann P, Dudykevych T, Frerichs I, Hellige G, Quintel M.

Chest electrical impedance tomography examination, data analysis, terminology, clinical use and recommendations: consensus statement of the TRanslational EIT developmeNt stuDy group. Thorax 72: 83–93, 2017.

Link: http://thorax.bmj.com/content/early/2016/09/05/thoraxjnl-2016-208357

By:

Frerichs I, Amato MBP, van Kaam AH, Tingay DG, Zhao Z, Grychtol B, Bodenstein M, Gagnon H, Bohm SH, Teschner E, Stenqvist O, Mauri T, Torsani V, Camporota L, Schibler A, Wolf GK, Gommers D, Leonhardt S, Adler A, TREND study group.

Electrical impedance tomography. CurrOpinCrit Care 15: 18–24, 2009.

Link: https://www.ncbi.nlm.nih.gov/pubmed/19186406

By:

Costa ELV, Lima RG, Amato MBP.

Bedside estimation of recruitable alveolar collapse and hyperdistension by electrical impedance tomography. Intensive Care Med 35: 1132–1137, 2009.

Link: https://www.ncbi.nlm.nih.gov/pubmed/19255741

By:

Costa ELV, Borges JB, Melo A, Suarez-Sipmann F, Toufen C, Bohm SH, Amato MBP.

Regional lung perfusion estimated by electrical impedance tomography in a piglet model of lung collapse. Journal of Applied Physiology 112: 225–236, 2012.

Link: https://www.ncbi.nlm.nih.gov/pubmed/21960654

By:

Borges JB, Suarez-Sipmann F, Bohm SH, Tusman G, Melo A, Maripuu E, Sandström M, Park M, Costa ELV, Hedenstierna G, Amato M.

Detection of “best” positive end-expiratory pressure derived from electrical impedance tomography parameters during a decremental positive end-expiratory pressure trial. Crit Care 18: R95, 2014.

Link: https://www.ncbi.nlm.nih.gov/pubmed/24887391

By:

Blankman P, Hasan D, Erik G, Gommers D.

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“Estamos empolgados em fornecer a solução Enlight 1800 para oferecer suporte à ventilação segura e eficaz. O Enlight 1800 oferece visibilidade, precisão e individualização à beira do leito para beneficiar profissionais de saúde e pacientes.”

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