Comparison of central venous pressure and esophageal pressure for measurement of work of breathing, effort and lung mechanics in spontaneously breathing patients (2017)
- Authors:
- USP affiliated authors: BISELLI, PAOLO JOSÉ CESARE - HU ; NOBREGA, RAQUEL SIQUEIRA - HU
- Unidade: HU
- Subjects: PRESSÃO VENOSA CENTRAL; RESPIRAÇÃO; ESÔFAGO; PRESSÃO SANGUÍNEA
- Agências de fomento:
- Language: Inglês
- Imprenta:
- Publisher: American Thoracic Society
- Publisher place: New York
- Date published: 2017
- Source:
- Título do periódico: American Journal of Respiratory and Critical Care Medicine
- ISSN: 1073-449X
- Volume/Número/Paginação/Ano: v. 195, p. A3704, 2017
- Conference titles: American Thoracic Society 2017 International Conference
-
ABNT
BISELLI, Paolo José Cesare e NÓBREGA, Raquel Siqueira. Comparison of central venous pressure and esophageal pressure for measurement of work of breathing, effort and lung mechanics in spontaneously breathing patients. American Journal of Respiratory and Critical Care Medicine. New York: American Thoracic Society. . Acesso em: 18 abr. 2024. , 2017 -
APA
Biselli, P. J. C., & Nóbrega, R. S. (2017). Comparison of central venous pressure and esophageal pressure for measurement of work of breathing, effort and lung mechanics in spontaneously breathing patients. American Journal of Respiratory and Critical Care Medicine. New York: American Thoracic Society. -
NLM
Biselli PJC, Nóbrega RS. Comparison of central venous pressure and esophageal pressure for measurement of work of breathing, effort and lung mechanics in spontaneously breathing patients. American Journal of Respiratory and Critical Care Medicine. 2017 ; 195 A3704.[citado 2024 abr. 18 ] -
Vancouver
Biselli PJC, Nóbrega RS. Comparison of central venous pressure and esophageal pressure for measurement of work of breathing, effort and lung mechanics in spontaneously breathing patients. American Journal of Respiratory and Critical Care Medicine. 2017 ; 195 A3704.[citado 2024 abr. 18 ] - A new method for measuring oxygen consumption (vo2): avoiding the need for flow and oxygen signals synchronization
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