[1] |
Hedstrom AB, Gove NE, Mayock DE, et al. Performance of the Silverman Andersen Respiratory Severity Score in predicting PCO(2) and respiratory support in newborns: a prospective cohort study[J]. J Perinatol, 2018, 38(5): 505-511.
doi: 10.1038/s41372-018-0049-3
pmid: 29426853
|
[2] |
Niknafs P, Faghani A, Afjeh SA, et al. Management of neonatal respiratory distress syndrome employing ACoRN respiratory sequence protocol versus early nasal continuous positive airway pressure protocol[J]. Iran J Pediatr, 2014, 24(1): 57-63.
pmid: 25793046
|
[3] |
El Shahed AI, Dargaville PA, Ohlsson A, et al. Surfactant for meconium aspiration syndrome in term and late preterm infants[J]. Cochrane Database Syst Rev, 2014(12): Cd002054.
|
[4] |
Razak A, Faden M. Neonatal lung ultrasonography to evaluate need for surfactant or mechanical ventilation: a systematic review and meta-analysis[J]. Arch Dis Child Fetal Neonatal Ed, 2020, 105(2): 164-171.
|
[5] |
De Martino L, Yousef N, Ben-Ammar R, et al. Lung ultrasound score predicts surfactant need in extremely preterm neonates[J]. Pediatrics, 2018, 142(3): e20180463.
|
[6] |
Pang H, Zhang B, Shi J, et al. Diagnostic value of lung ultrasound in evaluating the severity of neonatal respiratory distress syndrome[J]. Eur J Radiol, 2019, 116: 186-191.
doi: S0720-048X(19)30164-0
pmid: 31153563
|
[7] |
Rodriguez-Fanjul J, Jordan I, Balaguer M, et al. Early surfactant replacement guided by lung ultrasound in preterm newborns with RDS: the ULTRASURF randomised controlled trial[J]. Eur J Pediatr, 2020, 179(12): 1913-1920.
|
[8] |
Bossuyt PM, Reitsma JB, Bruns DE, et al. The STARD statement for reporting studies of diagnostic accuracy: explanation and elaboration. The Standards for Reporting of Diagnostic Accuracy Group[J]. Croat Med J, 2003, 44(5): 639-650.
pmid: 14515429
|
[9] |
Sweet DG, Carnielli V, Greisen G, et al. European Consensus Guidelines on the Management of Respiratory Distress Syndrome - 2019 Update[J]. Neonatology, 2019, 115(4): 432-450.
|
[10] |
El Shahed AI, Dargaville P, Ohlsson A, et al. Surfactant for meconium aspiration syndrome in full term/near term infants[J]. Cochrane Database Syst Rev, 2007(3): Cd002054.
|
[11] |
吴洁, 韩亚梅, 张娟丽, 等. 新生儿危重评分对出生第1天近足月及足月新生儿呼吸疾病的预测价值[J]. 临床儿科杂志, 2019, 37(5): 345-350.
|
[12] |
Brat R, Yousef N, Klifa R, et al. Lung ultrasonography score to evaluate oxygenation and surfactant need in neonates treated with continuous positive airway pressure[J]. JAMA Pediatr, 2015, 169(8): e151797.
|
[13] |
Liu J, Copetti R, Sorantin E, et al. Protocol and guidelines for point-of-care lung ultrasound in diagnosing neonatal pulmonary diseases based on international expert consensus[J]. J Vis Exp. 2019(145). doi: 10.3791/58990.
|
[14] |
中华医学会儿科学分会围产医学专业委员会, 中国医师协会新生儿科医师分会超声专业委员会, 中国医药教育协会超声医学专业委员会重症超声学组, 等. 新生儿肺脏疾病超声诊断指南[J]. 中华实用儿科临床杂志, 2018, 33(14): 1057-1064..
|
[15] |
Xi G, Dai J, Wang X, et al. Ultrasound performed shortly after birth can predict the respiratory support needs of late preterm and term infants: A diagnostic accuracy study[J]. Pediatr Pulmonol, 2021, 56(7): 2155-2163.
|
[16] |
Lichtenstein DA, Mezière GA. Relevance of lung ultrasound in the diagnosis of acute respiratory failure: the BLUE protocol[J]. Chest, 2008, 134(1): 117-125.
doi: 10.1378/chest.07-2800
pmid: 18403664
|
[17] |
Pivetta E, Goffi A, Lupia E, et al. Lung ultrasound-implemented diagnosis of acute decompensated heart failure in the ED: A SIMEU Multicenter Study[J]. Chest, 2015, 148(1): 202-210.
doi: S0012-3692(15)50036-6
pmid: 25654562
|
[18] |
Volpicelli G, Mussa A, Garofalo G, et al. Bedside lung ultrasound in the assessment of alveolar-interstitial syndrome[J]. Am J Emerg Med, 2006, 24(6): 689-696.
doi: 10.1016/j.ajem.2006.02.013
pmid: 16984837
|
[19] |
Jambrik Z, Monti S, Coppola V, et al. Usefulness of ultrasound lung comets as a nonradiologic sign of extravascular lung water[J]. Am J Cardiol, 2004, 93(10): 1265-1270.
doi: 10.1016/j.amjcard.2004.02.012
pmid: 15135701
|
[20] |
Torino C, Tripepi R, Loutradis C, et al. Can the assessment of ultrasound lung water in haemodialysis patients be simplified?[J]. Nephrol Dial Transplant, 2021, 36(12): 2321-2326.
|
[21] |
Wang J, Wei H, Chen H, et al. Application of ultras onography in neonatal lung disease: an updated review[J]. Front Pediatr, 2022, 10: 1020437.
|
[22] |
Henderson AC, Sá RC, Theilmann RJ, et al. The gravitational distribution of ventilation-perfusion ratio is more uniform in prone than supine posture in the normal human lung[J]. J Appl Physiol (1985), 2013, 115(3): 313-324.
|
[23] |
Prisk GK, Yamada K, Henderson AC, et al. Pulmonary perfusion in the prone and supine postures in the normal human lung[J]. J Appl Physiol (1985), 2007, 103(3): 883-894.
|
[24] |
Louis D, Belen K, Farooqui M, et al. Prone versus supine position for lung ultrasound in neonates with respiratory distress[J]. Am J Perinatol, 2021, 38(2): 176-181.
|
[25] |
Martinka D, Barrett J, Mei-Dan E, et al. Respiratory morbidity in late preterm twin infants[J]. Arch Gynecol Obstet, 2019, 300(2): 337-345.
doi: 10.1007/s00404-019-05191-z
pmid: 31093740
|
[26] |
De Luca R, Boulvain M, Irion O, et al. Incidence of early neonatal mortality and morbidity after late-preterm and term cesarean delivery[J]. Pediatrics, 2009, 123(6): e1064-e1071.
|
[27] |
Clark RH. The epidemiology of respiratory failure in neonates born at an estimated gestational age of 34 weeks or more[J]. J Perinatol, 2005, 25(4): 251-257.
doi: 10.1038/sj.jp.7211242
pmid: 15605071
|
[28] |
De Luca D, van Kaam AH, Tingay DG, et al. The Montreux definition of neonatal ARDS: biological and clinical background behind the description of a new entity[J]. Lancet Respir Med, 2017, 5(8): 657-666.
doi: 10.1016/S2213-2600(17)30214-X
pmid: 28687343
|
[29] |
Luo J, Chen J, Li Q, et al. Differences in clinical characteristics and therapy of neonatal acute respiratory distress syndrome (ARDS) and respiratory distress syndrome (RDS): a retrospective analysis of 925 cases[J]. Med Sci Monit, 2019, 25: 4992-4998.
|