Knowledge-based systems were initially developped to automatically adapt pressure support settings during invasive ventilation, and proved to be at least as efficient as experienced clinicians. Non-invasive ventilation has become the standard of care for patients suffering from acute hypercapnic respiratory failure (ARF)and has reduced the need for endotracheal intubation in these patients, thus reducing their hospital mortality. NIV success or failure is closely related to the tolerance of NIV treatment, which is tightly correlated to patient-ventilator synchrony. As severe asynchronies frequently occurs during NIV (namely in more than 40% of patients) and as the occurence of asynchronies is related to the use of high pressure support levels, to the presence of leaks and/or to non optimal expiratory trigger settings, very frequent ventilator settings adaptations should allow reducing patient-ventilator asynchronies but require the presence of an experienced clinician at the bedside during NIV treatment. A computer-driven ventilator settings adaptation has the adavantage of permitting very frequent ventilator settings adaptation whithout requiring the presence of an experienced clinician at the bedside and could possibly improve patient-ventilator interaction. The aim of the present study is to test the faisability of using the Smartcare NIV computer-driven system to automatically adapt ventilator settings during non invasive ventilation delivered because of acute respiratory failure.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
11
Adult Intensive Care and Burn unit, University Hospital of Lausanne
Lausanne, Switzerland
Feasibilty of using the Smartcare-NIV system to deliver non-invasive ventilation in case of acute respiratory failure.
The main aim of the study is to explore the feasibility of using the Smartcare-NIV system to deliver non-invasive ventilation (NIV) in case of acute respiratory failure. Practically, we will describe how the NIV tratment will go on when using the Smartcare system and report how the system automatically adapt the ventilator settings.
Time frame: 45 minute NIV-treatment
Respiratory rate
Time frame: 45 minutes
Minute ventilation
Time frame: 45 minutes
Tidal volumes
Time frame: 45 minutes
Leaks
Time frame: 45 minutes
O2 saturation
Transcutaneous measurement
Time frame: 45 minutes
Alarms generated by the ventilator
Time frame: 45 minutes
Manual ventilator settings modifications required
Time frame: 45 minutes
Patient-ventilator asynchronies
Time frame: 45 minutes
Blood gas analysis
Two blood gas analysis will be done, one at the beginning and one at the end of the 45-minyte NIV treatment.
Time frame: 45 minutes
Patient comfort
Patient comfort will be evaluated usuing a visual analogic scale graduated between 0 and 10.
Time frame: 45 minutes
Percentage of time spent in a predifined comfort zone.
The comfort zone will be defined as respiratory rate between 14 and 29 breaths/minunte and tidal volume between 5 and 10 ml/ kg IBW
Time frame: 45 minutes
Heart rate
Time frame: 45 minutes
Blood pressure
Time frame: 45 minutes
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