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Its measurement is useful for diagnosis and for monitoring critically ill patients [1].
PetCO2 is a helpful noninvasive adjunct for monitoring critically ill patients and for guiding therapy.
In sub-Saharan Africa, vital signs are a feasible option for monitoring critically ill patients.
The advantages and disadvantages of the use of this method of monitoring critically ill patients are well established [ 1].
Capnometry and capnography have gained a crucial role in monitoring critically ill patients in the pre-hospital setting [ 1- 5].
Anti-Xa factor titration is useful in monitoring critically ill patients, especially those with low cardiac output.
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Introduction: Continuous electroencephalography (cEEG) allows real-time monitoring critically-ill patients neurophysiology and to detect non-clinical seizures in comatose patients, delayed cerebral ischemia after subarachnoid haemorrhage, and guide therapies for status epilepticus.
Many prognostic scoring systems have been developed for monitoring critically-ill patients.
With this technology it is possible to diagnose, treat and monitor critically ill patients rapidly and easily.
Procalcitonin, PMN-elastase and Neopterin can be used as diagnostic and prognostic parameters to monitor critically ill patients and to control therapeutic interventions.
Since arterial and central venous catheters are often already used to monitor critically ill patients, these techniques are not additionally invasive.
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