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PUBMED FOR HANDHELDS

Journal Abstract Search


668 related items for PubMed ID: 18849796

  • 1. Heart-rate complexity for prediction of prehospital lifesaving interventions in trauma patients.
    Cancio LC, Batchinsky AI, Salinas J, Kuusela T, Convertino VA, Wade CE, Holcomb JB.
    J Trauma; 2008 Oct; 65(4):813-9. PubMed ID: 18849796
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  • 2. Is heart period variability associated with the administration of lifesaving interventions in individual prehospital trauma patients with normal standard vital signs?
    Rickards CA, Ryan KL, Ludwig DA, Convertino VA.
    Crit Care Med; 2010 Aug; 38(8):1666-73. PubMed ID: 20562705
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  • 4. Utility of vital signs, heart rate variability and complexity, and machine learning for identifying the need for lifesaving interventions in trauma patients.
    Liu NT, Holcomb JB, Wade CE, Darrah MI, Salinas J.
    Shock; 2014 Aug; 42(2):108-14. PubMed ID: 24727872
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  • 6. Rapid prediction of trauma patient survival by analysis of heart rate complexity: impact of reducing data set size.
    Batchinsky AI, Salinas J, Kuusela T, Necsoiu C, Jones J, Cancio LC.
    Shock; 2009 Dec; 32(6):565-71. PubMed ID: 19487984
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  • 8. Heart rate variability as a triage tool in patients with trauma during prehospital helicopter transport.
    King DR, Ogilvie MP, Pereira BM, Chang Y, Manning RJ, Conner JA, Schulman CI, McKenney MG, Proctor KG.
    J Trauma; 2009 Sep; 67(3):436-40. PubMed ID: 19741382
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  • 9. Novel prehospital monitor with injury acuity alarm to identify trauma patients who require lifesaving intervention.
    Van Haren RM, Thorson CM, Valle EJ, Busko AM, Jouria JM, Livingstone AS, Namias N, Schulman CI, Proctor KG.
    J Trauma Acute Care Surg; 2014 Mar; 76(3):743-9. PubMed ID: 24553543
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  • 10. Improving the prediction of mortality and the need for life-saving interventions in trauma patients using standard vital signs with heart-rate variability and complexity.
    Liu NT, Holcomb JB, Wade CE, Salinas J.
    Shock; 2015 Jun; 43(6):549-55. PubMed ID: 25692260
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  • 11. Manual vital signs reliably predict need for life-saving interventions in trauma patients.
    Holcomb JB, Salinas J, McManus JM, Miller CC, Cooke WH, Convertino VA.
    J Trauma; 2005 Oct; 59(4):821-8; discussion 828-9. PubMed ID: 16374268
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  • 12. [Pediatric prehospital trauma care. A retrospective comparison of air and ground transportation].
    Schmidt U, Geerling J, Fühler M, Hubrich V, Richter M, Krettek C.
    Unfallchirurg; 2002 Nov; 105(11):1000-6. PubMed ID: 12402126
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  • 13. The predictive value of field versus arrival Glasgow Coma Scale score and TRISS calculations in moderate-to-severe traumatic brain injury.
    Davis DP, Serrano JA, Vilke GM, Sise MJ, Kennedy F, Eastman AB, Velky T, Hoyt DB.
    J Trauma; 2006 May; 60(5):985-90. PubMed ID: 16688059
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  • 15. Sample entropy predicts lifesaving interventions in trauma patients with normal vital signs.
    Naraghi L, Mejaddam AY, Birkhan OA, Chang Y, Cropano CM, Mesar T, Larentzakis A, Peev M, Sideris AC, Van der Wilden GM, Imam AM, Hwabejire JO, Velmahos GC, Fagenholz PJ, Yeh D, de Moya MA, King DR.
    J Crit Care; 2015 Aug; 30(4):705-10. PubMed ID: 25858820
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  • 19. The National Trauma Triage Protocol: can this tool predict which patients with trauma will benefit from helicopter transport?
    Brown JB, Forsythe RM, Stassen NA, Gestring ML.
    J Trauma Acute Care Surg; 2012 Aug; 73(2):319-25. PubMed ID: 22846934
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  • 20. New measures of heart-rate complexity: effect of chest trauma and hemorrhage.
    Batchinsky AI, Skinner JE, Necsoiu C, Jordan BS, Weiss D, Cancio LC.
    J Trauma; 2010 May; 68(5):1178-85. PubMed ID: 20173662
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