This study evaluates the effect of positive end-expiratory pressure on the position, length and function of the diaphragm. During the first part of the study, physiological measurements of the diaphragm will be performed while participants receive non-invasive ventilation at different PEEP levels. During the second part of the study, MRI measurements of the diaphragm will be performed during a change in PEEP level.
In almost all mechanically ventilated patients, positive end-expiratory pressure (PEEP) is used. Its function is to prevent alveolar collapse and to maintain oxygenation. However, it has recently been found that PEEP may contribute to diaphragm weakness, which is an important problem in the intensive care unit (ICU). This study showed that mechanical ventilation with PEEP resulted in a caudal displacement of the diaphragm, since PEEP increases the end-expiratory volume. Furthermore, their study in rats showed that this displacement resulted in a reduced fiber length and sarcomere length on the short term. After rats were ventilated with PEEP for 18 hours, it was found that adaptation of the diaphragm occurred; i.e. the number of sarcomeres were decreased. It is hypothesized that this adaptation may also occur in mechanically ventilated patients. This could lead to problems in weaning a patient off the ventilator, as PEEP is abruptly removed during a spontaneous breathing trial (SBT). This leads to a reduction in end-expiratory volume which would mean that the newly-adapted diaphragm fibers are being stretched. These stretched muscle fibers are not working at their optimal length of the force-length relation, thereby contributing to diaphragm weakness.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
22
During second part of the study (MRI)
During second part of the study (MRI)
During second part of the study (MRI)
VU Medical Center
Amsterdam, North Holland, Netherlands
Changes in diaphragm's position
Changes in the position of the diaphragm during different PEEP levels, as measured with both ultrasound and MRI
Time frame: 2 hours
Changes in diaphragm's shape and length
Changes of the diaphragm's shape and length during different PEEP levels, as measured with MRI
Time frame: 2 hours
Changes in diaphragm's efficiency
Changes in the neuro-mechanical efficiency of the diaphragm (ratio between pressure and electrical muscle activity) during different PEEP levels, as measured with a nasogastric catheter
Time frame: 2 hours
Change in twitch transdiaphragmatic pressures
Twitch transdiaphragmatic pressures during different PEEP levels, as measured with magnetic stimulation of the phrenic nerves.
Time frame: 2 hours
Difference between MRI and ultrasound
The difference between diaphragm parameters obtained by ultrasound and parameters obtained by MRI
Time frame: 2 hours
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