NTRODUCTION: cardiac surgery can lead to pulmonary complications such as hypoxemia and atelectasis. Noninvasive ventilation has been used to prevent and treat such complications. Electrical impedance tomography has been a useful tool in bedside evaluation of ventilation and pulmonary ventilation. OBJECTIVE: To compare the effects of non-invasive ventilation with oxygen therapy in cardiac post-operative patients. MATERIALS AND METHODS: It will be a randomized controlled clinical trial where patients will be divided into two groups: a group that will perform NIV for 1 hour and the group that will only use oxygen therapy. They will be evaluated through Electrical Impedance Tomography and arterial gasometry analysis just before extubation, soon after extubation, during the intervention and after the intervention for a period of 2 hours after extubation. EXPECTED RESULTS: It is expected that the NIV group will present higher pulmonary ventilation and aeration and better gas exchange than the oxygen therapy group, and that the time of therapeutic effect will be higher in the NIV group.
The proposal basically consists of Validation of the hypothesis: The use of Non-invasive Ventilation in patients in the postoperative cardiac surgery results in greater ventilation, greater aeration, and improved gas exchange when compared to the oxygen therapy group. The use of noninvasive ventilation in the postoperative cardiac surgery has been widely used in clinical practice, but the evidence of the benefits of this technique in this population in relation to some criteria have not yet been elucidated in the scientific literature, such as the effect of NIV in ventilation and pulmonary ventilation, and how long does this effect last.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
26
Non invasive ventilation is a mode of mechanical ventilation that does not require the use of artificial airway.
Alita Paula Lopes de Novaes
Recife, Pernambuco, Brazil
RECRUITINGchange in electrical impedance measures
impedance variation data recorded by impedance electrical tomography
Time frame: data recorded 5 minutes before extubation, 5 minutes after extubation, at the first 5 minutes of therapy, 25 to 30 minutes after beginning of therapy, 55 to 60 minutes after beginning of therapy, and 1,5 hour and 2 hours after beginning of therapy
change in Blood gases analysis - PaO2 (mmHg), PaCO2 (mmHg), PaO2/FiO2
Collected by a Laboratory professional
Time frame: recorded 5 minutes before extubation and 1 hour after extubation
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