fabian® +nCPAP Evolution ventilator

Adaptable ventilatory support for your most vulnerable patients

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Treat respiratory insufficiency with personalised support from the fabian +nCPAP ventilator.* Whether your neonatal, infant, or paediatric patient requires non-invasive ventilation with the Infant Flow® LP (designed to lower work of breathing) or conventional ventilation, they receive pressure monitoring and delivery, and pressure stability.

Help your patients and your care team breathe easier

The fabian +nCPAP evolution ventilator builds on the non-invasive ventilation offered on the fabian Therapy evolution ventilator with conventional modes of ventilation and additional technologies such as PRICO and Volume Guarantee. Lightweight and compact, the user interface allows for adjustment of settings and modes.

Volume Guarantee mode

Set tidal volume for your patient, and the fabian will maintain a consistent tidal volume by managing inspiratory pressure based on the patient's compliance and resistance.

Predictive Intelligent Control of Oxygenation (PRICO)*

Helps keep and/or maintain patients within the prescribed SpO2 target ranges by automating FiO2 adjustment. In 4 clinical trials, PRICO was found to be significantly more effective than manual control in maintaining SpO2 within the target range.1-4 Two of these studies also reported that PRICO may reduce the nursing workload as compared to manual FiO2 control in the NICU.2, 4

* Optional

  • For infants and children weighing up to 30 kg
  • Volume Guarantee
  • Automatic leak compensation
  • Electromagnetic exhalation valve for set pressure
  • Manual and automatic alarm management
  • Built-in battery backup for 2.5 hours of patient use
  • Disposable and reusable hot wire anemometer-equipped neonatal and pediatric flow sensors
  • Neonatal sensors with a low dead space of 0.9 ml
* This device is not available for sale in the U.S. and has not been approved by the U.S. Food and Drug Administration (FDA).

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1 Dani C, Pratesi S, Luzzati M, Petrolini C, Montano S, Remaschi G, Coviello C. Cerebral and splanchnic oxygenation during automated control of inspired oxygen (FiO2) in preterm infants. Pediatr Pulmonol. 2021 Jul;56(7):2067-2072. doi: 10.1002/ppul.25379. Epub 2021 Mar 26. PMID: 33773084.
2 Dijkman KP, Mohns T, Dieleman JP, van Pul C, Goos TG, Reiss IK, Andriessen P, Niemarkt HJ. Predictive Intelligent Control of Oxygenation (PRICO) in preterm infants on high flow nasal cannula support: a randomised cross-over study. Arch Dis Child Fetal Neonatal Ed. 2021 Nov;106(6):621-626. doi: 10.1136/archdischild-2020-320728. Epub 2021 May 10. PMID: 33972265.
3 Dijkman KP, Goos TG, Dieleman JP, Mohns T, van Pul C, Andriessen P, Kroon AA, Reiss IK, Niemarkt HJ. Predictive Intelligent Control of Oxygenation in Preterm Infants: A Two-Center Feasibility Study. Neonatology. 2023;120(2):235-241. doi: 10.1159/000527539. Epub 2022 Dec 8. PMID: 36481622.
4 Wilinska M, Bachman T, Szczapa T, Wroblewska-Seniuk K, Chojnacka K, Loniewska B, Olszanska K, Rzepecka Weglarz B, Janusz K, Piwowarczyk P, Onland W, Hutten GJ, van Leuteren RW, van Kaam AH. Performance and safety of the PRICO closed-loop oxygen saturation targeting system in neonates: pragmatic multicentre cross-over study (TarOx Study). BMJ Paediatr Open. 2024 Jul 16;8(1):e002583. doi: 10.1136/bmjpo-2024-002583. PMID: 39019542; PMCID: PMC11253729.