TY - JOUR
T1 - New modes of mechanical ventilation
T2 - Proportional assist ventilation, neurally adjusted ventilatory assist, and fractal ventilation
AU - Navalesi, Paolo
AU - Costa, Roberta
PY - 2003/2
Y1 - 2003/2
N2 - Increased knowledge of the mechanisms that determine respiratory failure has led to the development of new technologies aimed at improving ventilatory treatment. Proportional assist ventilation and neurally adjusted ventilatory assist have been designed with the goal of improving patient-ventilator interaction by matching the ventilator support with the neural output of the respiratory centers. With proportional assist ventilation, the support is continuously readjusted in proportion to the predicted inspiratory effort. Neurally adjusted ventilatory assist is an experimental mode in which the assistance is delivered in proportion to the electrical activity of the diaphragm, assessed by means of an esophageal electrode. Biologically variable (or fractal) ventilation is a new, volume-targeted, controlled ventilation mode aimed at improving oxygenation; it incorporates the breath-to-breath variability that characterizes a natural breathing pattern.
AB - Increased knowledge of the mechanisms that determine respiratory failure has led to the development of new technologies aimed at improving ventilatory treatment. Proportional assist ventilation and neurally adjusted ventilatory assist have been designed with the goal of improving patient-ventilator interaction by matching the ventilator support with the neural output of the respiratory centers. With proportional assist ventilation, the support is continuously readjusted in proportion to the predicted inspiratory effort. Neurally adjusted ventilatory assist is an experimental mode in which the assistance is delivered in proportion to the electrical activity of the diaphragm, assessed by means of an esophageal electrode. Biologically variable (or fractal) ventilation is a new, volume-targeted, controlled ventilation mode aimed at improving oxygenation; it incorporates the breath-to-breath variability that characterizes a natural breathing pattern.
KW - Alveolar recruitment
KW - Breath-to-breath variability
KW - Mechanical ventilation
KW - Neuromechanical coupling
KW - Patient-ventilator interaction
UR - http://www.scopus.com/inward/record.url?scp=0037309620&partnerID=8YFLogxK
U2 - 10.1097/00075198-200302000-00010
DO - 10.1097/00075198-200302000-00010
M3 - Review article
SN - 1070-5295
VL - 9
SP - 51
EP - 58
JO - Current Opinion in Critical Care
JF - Current Opinion in Critical Care
IS - 1
ER -