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1.
J Clin Monit Comput ; 32(3): 493-502, 2018 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-28653135

RESUMEN

Adherence to low tidal volume (VT) ventilation and selected positive end-expiratory pressures are low during mechanical ventilation for treatment of the acute respiratory distress syndrome. Using a pig model of severe lung injury, we tested the feasibility and physiological responses to a novel fully closed-loop mechanical ventilation algorithm based on the "open lung" concept. Lung injury was induced by surfactant washout in pigs (n = 8). Animals were ventilated following the principles of the "open lung approach" (OLA) using a fully closed-loop physiological feedback algorithm for mechanical ventilation. Standard gas exchange, respiratory- and hemodynamic parameters were measured. Electrical impedance tomography was used to quantify regional ventilation distribution during mechanical ventilation. Automatized mechanical ventilation provided strict adherence to low VT-ventilation for 6 h in severely lung injured pigs. Using the "open lung" approach, tidal volume delivery required low lung distending pressures, increased recruitment and ventilation of dorsal lung regions and improved arterial blood oxygenation. Physiological feedback closed-loop mechanical ventilation according to the principles of the open lung concept is feasible and provides low tidal volume ventilation without human intervention. Of importance, the "open lung approach"-ventilation improved gas exchange and reduced lung driving pressures by opening atelectasis and shifting of ventilation to dorsal lung regions.


Asunto(s)
Lesión Pulmonar/terapia , Respiración con Presión Positiva/métodos , Respiración Artificial/métodos , Animales , Sistemas de Computación , Impedancia Eléctrica , Pulmón , Monitoreo Fisiológico/métodos , Intercambio Gaseoso Pulmonar , Respiración , Tensoactivos , Porcinos , Volumen de Ventilación Pulmonar , Tomografía/métodos
2.
Crit Care ; 18(3): R128, 2014 Jun 23.
Artículo en Inglés | MEDLINE | ID: mdl-24957974

RESUMEN

INTRODUCTION: Automatic ventilation for patients with respiratory failure aims at reducing mortality and can minimize the workload of clinical staff, offer standardized continuous care, and ultimately save the overall cost of therapy. We therefore developed a prototype for closed-loop ventilation using acute respiratory distress syndrome network (ARDSNet) protocol, called autoARDSNet. METHODS: A protocol-driven ventilation using goal-oriented structural programming was implemented and used for 4 hours in seven pigs with lavage-induced acute respiratory distress syndrome (ARDS). Oxygenation, plateau pressure and pH goals were controlled during the automatic ventilation therapy using autoARDSNet. Monitoring included standard respiratory, arterial blood gas analysis and electrical impedance tomography (EIT) images. After 2-hour automatic ventilation, a disconnection of the animal from the ventilator was carried out for 10 seconds, simulating a frequent clinical scenario for routine clinical care or intra-hospital transport. RESULTS: This pilot study of seven pigs showed stable and robust response for oxygenation, plateau pressure and pH value using the automated system. A 10-second disconnection at the patient-ventilator interface caused impaired oxygenation and severe acidosis. However, the automated protocol-driven ventilation was able to solve these problems. Additionally, regional ventilation was monitored by EIT for the evaluation of ventilation in real-time at bedside with one prominent case of pneumothorax. CONCLUSIONS: We implemented an automatic ventilation therapy using ARDSNet protocol with seven pigs. All positive outcomes were obtained by the closed-loop ventilation therapy, which can offer a continuous standard protocol-driven algorithm to ARDS subjects.


Asunto(s)
Monitoreo Fisiológico/métodos , Respiración con Presión Positiva/métodos , Síndrome de Dificultad Respiratoria/terapia , Tomografía/métodos , Animales , Dióxido de Carbono/sangre , Impedancia Eléctrica , Femenino , Concentración de Iones de Hidrógeno , Masculino , Oxígeno/sangre , Proyectos Piloto , Ventilación Pulmonar , Síndrome de Dificultad Respiratoria/fisiopatología , Porcinos , Volumen de Ventilación Pulmonar
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