The patients affected by severe chronic respiratory failure can develop hypercapnic decompensation leading to coma and death in a few hours. At present, the main treatment is noninvasive or invasive ventilation. The noninvasive invasive ventilation requires a minimum of consciousness to insure spontaneous ventilation. In case of noninvasive ventilation impossibility, invasive mechanical ventilation is proposed to patients, which is an aggressive therapy. Regularly, the patients undergo this aggressive therapy without having expressed their opinion. Indeed, a great majority of these patients with severe respiratory insufficiency did not anticipate directives in case of respiratory decompensation (acceptation of aggressive treatments). Efficiency of these aggressive therapies is still uncertain but certainly alters quality of life (discomfort, loss of autonomy…). After complete, clear, loyal and adapted information, a majority of patient do not wish to go on these aggressive therapies. At the time of the decompensation, the patients are incapable to express an opinion because of the hypercapnic narcosis. An extracorporeal CO2 remover device, such as the DECAP CO2, would quickly decrease the hypercapnia what would allow the patient to improve his state of consciousness and so to find the conditions of spontaneous ventilation required for the noninvasive ventilation. The DECAP CO2 device can be used to stop quickly the hypercapnic narcosis and to collect the wills of the patient on the choice of possible aggressive therapies. It is in this last condition that we wish to estimate the DECAP CO2 device.
After validation of the inclusion and exclusion criteria, the patients include in this clinical trial will be randomized between the two arms of the study: * Noninvasive ventilation alone * Noninvasive ventilation associated with the DECAP CO2 device
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Enrollment
32
Hypercapnia
Time frame: H24
Blood gases
Time frame: H0
Duration of judgment disability
Time frame: H72
Duration of blood pH normalization
Time frame: H72
Duration of hypercapnia
Time frame: H72
Glasgow
Time frame: H0
SAPSII scores(Simplified Acute Physiology Score II)
Time frame: H24
Duration of noninvasive ventilation
Time frame: H72
Duration of hospitalization
Time frame: H72
Mortality
Time frame: H72
MMSE (Mini Mental State Examination)
Time frame: H0
ACE ( Aid To Capacity Evaluation)scores
Time frame: H0
SOFA scores(Sepsis-related Organ )
Time frame: H24
Blood gases
Time frame: H1
Blood gases
Time frame: H2
Blood gases
Time frame: H3
Blood gases
Time frame: H4
Blood gases
Time frame: H6
Blood gases
Time frame: H12
Blood gases
Time frame: H18
Blood Gases
Time frame: H24
Blood gases
Time frame: H32
Blood gases
Time frame: H40
Blood gases
Time frame: H48
Blood gases
Time frame: H56
Blood gases
Time frame: H64
Blood gases
Time frame: H72
Glasgow
Time frame: H4
Glasgow
Time frame: H8
Glasgow
Time frame: H24
Glasgow
Time frame: H36
Glasgow
Time frame: H48
MMSE (Mini Mental State Examination)
Time frame: H4
MMSE (Mini Mental State Examination)
Time frame: H8
MMSE (Mini Mental State Examination)
Time frame: H24
MMSE (Mini Mental State Examination)
Time frame: H36
MMSE (Mini Mental State Examination)
Time frame: H48
ACE ( Aid To Capacity Evaluation)scores
Time frame: H4
ACE ( Aid To Capacity Evaluation)scores
Time frame: H8
ACE ( Aid To Capacity Evaluation)scores
Time frame: H24
ACE ( Aid To Capacity Evaluation)scores
Time frame: H36
ACE ( Aid To Capacity Evaluation)scores
Time frame: H48
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