- ICH GCP
- Rejestr badań klinicznych w USA
- Badanie kliniczne NCT00433212
Nasal Intermittent Positive Pressure Ventilation in Premature Infants (NIPPV) (NIPPV)
Efficacy and Safety of NIPPV to Increase Survival Without Bronchopulmonary Dysplasia in Extremely Low Birth Weight Infants
The machines and oxygen used to help very premature babies breathe can have side-effects, such as bronchopulmonary dysplasia (BPD). Infants with BPD get more complications (a higher death rate, a longer time in intensive care and on assisted ventilation, more hospital readmissions in the first year of life, and more learning problems) than infants who do not develop BPD. Doctors try to remove the tube in the wind-pipe that links the baby to the breathing machine as soon as possible. However, small babies get tired, and still require help to breathe. One of the standard and common techniques to help them breathe without a tube in the wind-pipe is to use simple pressure support, nasal continuous positive airway pressure or nCPAP. This supports breathing a little, but it is often not enough to prevent the need to go back on the breathing machine.
Nasal intermittent positive pressure ventilation (NIPPV) is similar to nCPAP, but also gives some breaths, or extra support, to babies through a small tube in the nose. NIPPV is safe and effective, and already in use as an alternate "standard" therapy.
The main research question: After being weaned from the breathing machine, is NIPPV better than nCPAP in preventing BPD in premature babies weighing 999 grams or less at birth?
Przegląd badań
Status
Interwencja / Leczenie
Szczegółowy opis
The immature lung of extremely low birth weight (ELBW, < 1000 g) infants is easily damaged by the placement of an endotracheal tube to deliver mechanical ventilation and oxygen. This and the total time of mechanical ventilation contributes to bronchopulmonary dysplasia (BPD). Infants with BPD have an increased risk of later death or neuro-impairment. With the increasing survival of ELBW infants in the NICU, there has been a proportionate increase in the number of infants surviving with BPD.
Following invasive ventilation via an endotracheal tube (ETT), extubation to nasal Continuous Positive Airway Pressure (nCPAP)ventilation is the standard approach. Currently, 40% of infants who are extubated and given nCPAP support fail, and require re-intubation. Previous work suggests that a less invasive respiratory support such as Nasal Intermittent Positive Pressure Ventilation (NIPPV), without an endotracheal tube is less injurious to the lung. NIPPV may thereby reduce the duration of invasive ventilator support, and aid successful early extubation. We hypothesize that the use of NIPPV leads to a higher rate of survival without BPD than standard therapy with nCPAP.
This randomized clinical trial is appropriately powered to compare NIPPV with nCPAP to detect effects on clinically relevant long-term outcomes, such as death and BPD at 36 weeks. This is a multi-national, randomized, open clinical trial of two different standard methods of providing non-invasive respiratory support to 1000 extremely preterm infants weighing less than 1000 grams at birth.
Typ studiów
Zapisy (Rzeczywisty)
Faza
- Faza 3
Kontakty i lokalizacje
Lokalizacje studiów
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Feldkirch, Austria, 6800
- LKH Feldkirch
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Rocourt, Belgia, B-4000
- CHC St. Vincent
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Groningen, Holandia, 9700 RB
- University Medical Center Groningen/Beatrix Children's Hosp
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Zwolle, Holandia, 8000 GK
- Princess Amalia Dept of Pediatrics, Isala Clinics
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Dublin, Irlandia
- National Maternity Hospital
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Dublin, Irlandia
- Coombe Women's Hospital
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Cork
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Wilton, Cork, Irlandia
- Cork University Maternity Hospital
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Manitoba
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Winnipeg, Manitoba, Kanada
- Winnipeg Health Sciences Centre
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Winnipeg, Manitoba, Kanada, R3E 0L8
- St. Boniface General Hospital/University of Manitoba
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Nova Scotia
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Halifax, Nova Scotia, Kanada
- IWK Health Centre
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Ontario
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Hamilton, Ontario, Kanada, L8S 4J9
- McMaster University
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Ottawa, Ontario, Kanada, K1H 8L1
- Children's Hospital of Eastern Ontario
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Ottawa, Ontario, Kanada, K1H 8L6
- The Ottawa Hospital General Campus
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Toronto, Ontario, Kanada
- Hospital for Sick Children
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Saskatchewan
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Saskatoon, Saskatchewan, Kanada
- Royal University Hospital
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Doha, Katar
- Hamad Medical Corporation
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Singapore, Singapur, 229899
- KK Women's and Children's Hospital
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District of Columbia
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Washington, District of Columbia, Stany Zjednoczone, 20037
- The George Washington University Hospital
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Washington, District of Columbia, Stany Zjednoczone, 20007
- Georgetown University Children's Medical Center
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Massachusetts
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Boston, Massachusetts, Stany Zjednoczone, 02215
- Beth Israel Deaconess Medical Center (BIDMC)
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Boston, Massachusetts, Stany Zjednoczone, 02111
- Tufts University Medical Center
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New Jersey
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Voorhees, New Jersey, Stany Zjednoczone, 08043
- Virtua West Jersey Hospital
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New York
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Brooklyn, New York, Stany Zjednoczone, 11203
- Kings County Hospital
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Brooklyn, New York, Stany Zjednoczone, 11023
- SUNY Downstate Medical Center
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Brooklyn, New York, Stany Zjednoczone, 11355
- New York Hospital Queens
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Jamaica, New York, Stany Zjednoczone, 11432
- Queens Hospital Center
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New York, New York, Stany Zjednoczone, 11212
- Brookdale University Hospital & Medical Center
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Stony Brook, New York, Stany Zjednoczone, 11794-8111
- Stony Brook University Medical Center
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Pennsylvania
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Philadelphia, Pennsylvania, Stany Zjednoczone, 19104
- Children's Hospital of Philadelphia
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Philadelphia, Pennsylvania, Stany Zjednoczone, 19035
- Pennsylvania Hospital/U. of Pennsylvania
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Utah
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Salt Lake City, Utah, Stany Zjednoczone, 84158-1289
- University of Utah
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Stockholm, Szwecja, S-171 76
- Karolinska University Hospital/Astrid Lingrenn's Children's Hospital
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Leicester, Zjednoczone Królestwo, LE1 6TP
- University of Leicester
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London, Zjednoczone Królestwo, W2 1NY
- St. Mary's Hospital
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Northern Ireland
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Belfast, Northern Ireland, Zjednoczone Królestwo, BT12 6BB
- Royal Maternity Hospital
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Kryteria uczestnictwa
Kryteria kwalifikacji
Wiek uprawniający do nauki
Akceptuje zdrowych ochotników
Płeć kwalifikująca się do nauki
Opis
Inclusion Criteria:
- Birth weight <1000 gm
- Gestational age <30 completed weeks
Intention to manage the infant with non-invasive respiratory support (i.e. no endotracheal tube), where either:
- the infant is within the first 7 days of life and has never been intubated or has received less than 24 hours of total cumulative intubated respiratory support;
- the infant is within the first 28 days of life, has been managed with intubated respiratory support for 24 hours or more and is a candidate for extubation followed by non-invasive respiratory support.
Exclusion Criteria:
- Considered non-viable by clinician (decision not to administer effective therapies)
- Life-threatening congenital abnormalities including congenital heart disease (excluding patent ductus arteriosis)
- Infants known to require surgical treatment
- Abnormalities of the upper and lower airways
- Neuromuscular disorders
- Infants who are >28 days old and continue to require mechanical ventilation with an endotracheal tube
Plan studiów
Jak projektuje się badanie?
Szczegóły projektu
- Główny cel: Zapobieganie
- Przydział: Randomizowane
- Model interwencyjny: Przydział równoległy
- Maskowanie: Brak (otwarta etykieta)
Broń i interwencje
Grupa uczestników / Arm |
Interwencja / Leczenie |
|---|---|
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Aktywny komparator: A
Non-invasive respiratory support via nasal intermittent positive pressure ventilation
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Deliver non-invasive respiratory support via ventilator with NIPPV device
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Aktywny komparator: B
Non-invasive respiratory support via nasal Continuous Positive Airway Pressure
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Deliver non-invasive respiratory support via ventilator with nCPAP device
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Co mierzy badanie?
Podstawowe miary wyniku
Miara wyniku |
Ramy czasowe |
|---|---|
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Composite of survival to 36 weeks gestational age, free of moderate-severe bronchopulmonary dysplasia
Ramy czasowe: 36 weeks gestational age
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36 weeks gestational age
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Miary wyników drugorzędnych
Miara wyniku |
Ramy czasowe |
|---|---|
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Śmiertelność ze wszystkich przyczyn w 36 tygodniu ciąży
Ramy czasowe: 36 tydzień ciąży
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36 tydzień ciąży
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retinopatia wcześniaków
Ramy czasowe: wypis do domu
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wypis do domu
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All cause mortality before first discharge home
Ramy czasowe: first discharge home
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first discharge home
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ultrasonographic evidence of brain injury
Ramy czasowe: 36 weeks gestional age
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36 weeks gestional age
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necrotizing enterocolitis
Ramy czasowe: 36 weeks gestational age
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36 weeks gestational age
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growth
Ramy czasowe: discharge home
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discharge home
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time to establish full feeds
Ramy czasowe: discharge home
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discharge home
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nosocomial infections
Ramy czasowe: discharge home
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discharge home
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need for re-intubation
Ramy czasowe: 36 weeks gestational age
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36 weeks gestational age
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time on supplemental oxygen
Ramy czasowe: discharge home
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discharge home
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duration of positive pressure respiratory support
Ramy czasowe: discharge home
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discharge home
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comparison of synchronized and non-synchronized NIPPV
Ramy czasowe: discharge home
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discharge home
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bronchopulmonary dysplasia
Ramy czasowe: 36 weeks gestational age
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36 weeks gestational age
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air leak syndromes
Ramy czasowe: 36 weeks gestational age
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36 weeks gestational age
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nasal trauma
Ramy czasowe: discharge home
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discharge home
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Współpracownicy i badacze
Sponsor
Współpracownicy
Śledczy
- Krzesło do nauki: Haresh Kirpalani, MD, MSc, Hamilton Health Sciences Corporation
- Dyrektor Studium: Brigitte Lemyre, MD, Children's Hospital of Eastern Ontario
- Dyrektor Studium: Aaron Chiu, MD, St. Boniface Hospital
- Dyrektor Studium: David Millar, MD, Royal Maternity Hospital, Belfast
- Dyrektor Studium: Robin S Roberts, MTech, Hamilton Health Sciences/McMaster University
- Dyrektor Studium: Bradley Yoder, MD, University of Utah
- Dyrektor Studium: Peter H Dijk, MD, PhD, University Medical Centrum Groningen
Publikacje i pomocne linki
Publikacje ogólne
- Kirpalani H, Millar D, Lemyre B, Yoder BA, Chiu A, Roberts RS; NIPPV Study Group. A trial comparing noninvasive ventilation strategies in preterm infants. N Engl J Med. 2013 Aug 15;369(7):611-20. doi: 10.1056/NEJMoa1214533.
- Bamat NA, Guevara JP, Bryan M, Roberts RS, Yoder BA, Lemyre B, Chiu A, Millar D, Kirpalani H. Variation in Positive End-Expiratory Pressure Levels for Mechanically Ventilated Extremely Low Birth Weight Infants. J Pediatr. 2018 Mar;194:28-33.e5. doi: 10.1016/j.jpeds.2017.10.065. Epub 2017 Dec 22.
- Millar D, Lemyre B, Kirpalani H, Chiu A, Yoder BA, Roberts RS. A comparison of bilevel and ventilator-delivered non-invasive respiratory support. Arch Dis Child Fetal Neonatal Ed. 2016 Jan;101(1):F21-5. doi: 10.1136/archdischild-2014-308123. Epub 2015 Jul 10.
Daty zapisu na studia
Główne daty studiów
Rozpoczęcie studiów
Zakończenie podstawowe (Rzeczywisty)
Ukończenie studiów (Rzeczywisty)
Daty rejestracji na studia
Pierwszy przesłany
Pierwszy przesłany, który spełnia kryteria kontroli jakości
Pierwszy wysłany (Oszacować)
Aktualizacje rekordów badań
Ostatnia wysłana aktualizacja (Oszacować)
Ostatnia przesłana aktualizacja, która spełniała kryteria kontroli jakości
Ostatnia weryfikacja
Więcej informacji
Terminy związane z tym badaniem
Słowa kluczowe
Dodatkowe istotne warunki MeSH
- Choroby Układu Oddechowego
- Zaburzenia oddychania
- Choroby płuc
- Niemowlę, noworodek, choroby
- Powikłania ciąży
- Powikłania porodu położniczego
- Poród położniczy, przedwczesny
- Uraz płuc
- Niemowlę, wcześniak, choroby
- Uraz płuc wywołany respiratorem
- Niewydolność oddechowa
- Przedwczesny poród
- Dysplazja oskrzelowo-płucna
Inne numery identyfikacyjne badania
- NTG-2007-NIPPV
- CIHR MCT-80246
- ISRCTN15233270
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