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A laminar flow unit for the care of critically ill newborn infants

INTRODUCTION: Medical and nursing care of newborns is predicated on the delicate control and balance of several vital parameters. Closed incubators and open radiant warmers are the most widely used devices for the care of neonates in intensive care; however, several well-known limitations of these d...

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Autores principales: Perez, Jose MR, Golombek, Sergio G, Fajardo, Carlos, Sola, Augusto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3804569/
https://www.ncbi.nlm.nih.gov/pubmed/24204178
http://dx.doi.org/10.2147/MDER.S51270
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author Perez, Jose MR
Golombek, Sergio G
Fajardo, Carlos
Sola, Augusto
author_facet Perez, Jose MR
Golombek, Sergio G
Fajardo, Carlos
Sola, Augusto
author_sort Perez, Jose MR
collection PubMed
description INTRODUCTION: Medical and nursing care of newborns is predicated on the delicate control and balance of several vital parameters. Closed incubators and open radiant warmers are the most widely used devices for the care of neonates in intensive care; however, several well-known limitations of these devises have not been resolved. The use of laminar flow is widely used in many fields of medicine, and may have applications in neonatal care. OBJECTIVE: To describe the neonatal laminar flow unit, a new equipment we designed for care of ill newborns. METHODS: The idea, design, and development of this device was completed in Sao Paulo, Brazil. The unit is an open mobile bed designed with the objective of maintaining the advantages of the incubator and radiant warmer, while overcoming some of their inherent shortcomings; these shortcomings include noise, magnetic fields and acrylic barriers in incubators, and lack of isolation and water loss through skin in radiant warmers. The unit has a pump that aspirates environmental air which is warmed by electrical resistance and decontaminated with High Efficiency Particulate Air Filter (HEPA) filters (laminar flow). The flow is directed by an air flow directioner. The unit has an embedded humidifier to increase humidity in the infant’s microenvironment and a servo control mechanism for regulation of skin temperature. RESULTS: The laminar flow unit is open and facilitates access of care providers and family, which is not the case in incubators. It provides warming by convection at an air velocity of 0.45 m/s, much faster than an incubator (0.1 m/s). The system provides isolation 1000 class (less than 1,000 particles higher than 0.3 micron per cubic feet at all times). This is much more protection than an incubator provides and more than radiant warmers, which have no isolation whatsoever. Additionally, it provides humidification of the newborn’s microenvironment (about 60% relative humidity), which is impossible with a radiant warmer, which produces high water body loss. It has no mechanical barriers like acrylic walls, its magnetic field is lower than an incubator (0.25 μt versus 1.2 μt), and the noise is minimal compared to incubators. The unit is also able to provide controlled total body hypothermia, which is not possible with either of the other two units. CONCLUSION: The laminar flow unit for neonatal care is a novel device which we recently developed. The introduction of laminar flow technology represents a real innovation in the neonatal field. We have described the various components of the unit and the potential advantages for management of ill neonates. This will hopefully lead to improved clinical outcomes and more effective neonatal management and safety.
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spelling pubmed-38045692013-11-07 A laminar flow unit for the care of critically ill newborn infants Perez, Jose MR Golombek, Sergio G Fajardo, Carlos Sola, Augusto Med Devices (Auckl) Original Research INTRODUCTION: Medical and nursing care of newborns is predicated on the delicate control and balance of several vital parameters. Closed incubators and open radiant warmers are the most widely used devices for the care of neonates in intensive care; however, several well-known limitations of these devises have not been resolved. The use of laminar flow is widely used in many fields of medicine, and may have applications in neonatal care. OBJECTIVE: To describe the neonatal laminar flow unit, a new equipment we designed for care of ill newborns. METHODS: The idea, design, and development of this device was completed in Sao Paulo, Brazil. The unit is an open mobile bed designed with the objective of maintaining the advantages of the incubator and radiant warmer, while overcoming some of their inherent shortcomings; these shortcomings include noise, magnetic fields and acrylic barriers in incubators, and lack of isolation and water loss through skin in radiant warmers. The unit has a pump that aspirates environmental air which is warmed by electrical resistance and decontaminated with High Efficiency Particulate Air Filter (HEPA) filters (laminar flow). The flow is directed by an air flow directioner. The unit has an embedded humidifier to increase humidity in the infant’s microenvironment and a servo control mechanism for regulation of skin temperature. RESULTS: The laminar flow unit is open and facilitates access of care providers and family, which is not the case in incubators. It provides warming by convection at an air velocity of 0.45 m/s, much faster than an incubator (0.1 m/s). The system provides isolation 1000 class (less than 1,000 particles higher than 0.3 micron per cubic feet at all times). This is much more protection than an incubator provides and more than radiant warmers, which have no isolation whatsoever. Additionally, it provides humidification of the newborn’s microenvironment (about 60% relative humidity), which is impossible with a radiant warmer, which produces high water body loss. It has no mechanical barriers like acrylic walls, its magnetic field is lower than an incubator (0.25 μt versus 1.2 μt), and the noise is minimal compared to incubators. The unit is also able to provide controlled total body hypothermia, which is not possible with either of the other two units. CONCLUSION: The laminar flow unit for neonatal care is a novel device which we recently developed. The introduction of laminar flow technology represents a real innovation in the neonatal field. We have described the various components of the unit and the potential advantages for management of ill neonates. This will hopefully lead to improved clinical outcomes and more effective neonatal management and safety. Dove Medical Press 2013-10-17 /pmc/articles/PMC3804569/ /pubmed/24204178 http://dx.doi.org/10.2147/MDER.S51270 Text en © 2013 Perez et al. This work is published by Dove Medical Press Limited, and licensed under Creative Commons Attribution – Non Commercial (unported, v3.0) License The full terms of the License are available at http://creativecommons.org/licenses/by-nc/3.0/. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Original Research
Perez, Jose MR
Golombek, Sergio G
Fajardo, Carlos
Sola, Augusto
A laminar flow unit for the care of critically ill newborn infants
title A laminar flow unit for the care of critically ill newborn infants
title_full A laminar flow unit for the care of critically ill newborn infants
title_fullStr A laminar flow unit for the care of critically ill newborn infants
title_full_unstemmed A laminar flow unit for the care of critically ill newborn infants
title_short A laminar flow unit for the care of critically ill newborn infants
title_sort laminar flow unit for the care of critically ill newborn infants
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3804569/
https://www.ncbi.nlm.nih.gov/pubmed/24204178
http://dx.doi.org/10.2147/MDER.S51270
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