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PUBMED FOR HANDHELDS

Journal Abstract Search


141 related items for PubMed ID: 31714472

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  • 2. Effects of mechanical chest compression device with a load-distributing band on post-resuscitation injuries identified by post-mortem computed tomography.
    Koga Y, Fujita M, Yagi T, Nakahara T, Miyauchi T, Kaneda K, Kawamura Y, Oda Y, Tsuruta R.
    Resuscitation; 2015 Nov; 96():226-31. PubMed ID: 26335044
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  • 4. Use of an automated, load-distributing band chest compression device for out-of-hospital cardiac arrest resuscitation.
    Ong ME, Ornato JP, Edwards DP, Dhindsa HS, Best AM, Ines CS, Hickey S, Clark B, Williams DC, Powell RG, Overton JL, Peberdy MA.
    JAMA; 2006 Jun 14; 295(22):2629-37. PubMed ID: 16772626
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  • 7. Comparison of different resuscitation methods with regard to injury patterns in cardiac arrest survivors based on computer tomography.
    Viniol S, Thomas RP, Gombert S, König AM, Betz S, Mahnken AH.
    Eur J Radiol; 2020 Oct 14; 131():109244. PubMed ID: 32905956
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  • 9. Skeletal chest injuries secondary to cardiopulmonary resuscitation.
    Hoke RS, Chamberlain D.
    Resuscitation; 2004 Dec 14; 63(3):327-38. PubMed ID: 15582769
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  • 10. Chest injury following cardiopulmonary resuscitation: a prospective computed tomography evaluation.
    Kim MJ, Park YS, Kim SW, Yoon YS, Lee KR, Lim TH, Lim H, Park HY, Park JM, Chung SP.
    Resuscitation; 2013 Mar 14; 84(3):361-4. PubMed ID: 22819881
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  • 11. Chest compression-associated injuries in cardiac arrest patients treated with manual chest compressions versus automated chest compression devices (LUCAS II) - a forensic autopsy-based comparison.
    Ondruschka B, Baier C, Bayer R, Hammer N, Dreßler J, Bernhard M.
    Forensic Sci Med Pathol; 2018 Dec 14; 14(4):515-525. PubMed ID: 30203237
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  • 12. Improved neurologically intact survival with the use of an automated, load-distributing band chest compression device for cardiac arrest presenting to the emergency department.
    Hock Ong ME, Fook-Chong S, Annathurai A, Ang SH, Tiah L, Yong KL, Koh ZX, Yap S, Sultana P.
    Crit Care; 2012 Aug 03; 16(4):R144. PubMed ID: 22863360
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  • 13. Rib fractures and other injuries after cardiopulmonary resuscitation for non-traumatic cardiac arrest: a systematic review and meta-analysis.
    Van Wijck SFM, Prins JTH, Verhofstad MHJ, Wijffels MME, Van Lieshout EMM.
    Eur J Trauma Emerg Surg; 2024 Aug 03; 50(4):1331-1346. PubMed ID: 38206442
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  • 14. Multidetector CT findings of skeletal chest injuries secondary to cardiopulmonary resuscitation.
    Kim EY, Yang HJ, Sung YM, Cho SH, Kim JH, Kim HS, Choi HY.
    Resuscitation; 2011 Oct 03; 82(10):1285-8. PubMed ID: 21705131
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  • 17. CPR-related thoracic injuries: comparison of CPR guidelines between 2010 and 2015.
    Yusufoğlu K, Erdoğan MÖ, Tayfur İ, Afacan MA, Çolak Ş.
    Turk J Med Sci; 2018 Feb 23; 48(1):24-27. PubMed ID: 29479940
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  • 18. Serious complications from active compression-decompression cardiopulmonary resuscitation.
    Rabl W, Baubin M, Broinger G, Scheithauer R.
    Int J Legal Med; 1996 Feb 23; 109(2):84-9. PubMed ID: 8912053
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  • 19. Pulmonary fat embolism in non-survivors after cardiopulmonary resuscitation.
    Ihnát Rudinská L, Delongová P, Vaculová J, Farkašová Iannaccone S, Tulinský L, Ihnát P.
    Forensic Sci Int; 2024 Apr 23; 357():112002. PubMed ID: 38518569
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  • 20. Frequency of rib and sternum fractures associated with out-of-hospital cardiopulmonary resuscitation is underestimated by conventional chest X-ray.
    Lederer W, Mair D, Rabl W, Baubin M.
    Resuscitation; 2004 Feb 23; 60(2):157-62. PubMed ID: 15036733
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