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Journal Abstract Search


134 related items for PubMed ID: 21841507

  • 1. Base deficit from the first peripheral venous sample: a surrogate for arterial base deficit in the trauma bay.
    Arnold TD, Miller M, van Wessem KP, Evans JA, Balogh ZJ.
    J Trauma; 2011 Oct; 71(4):793-7; discussion 797. PubMed ID: 21841507
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  • 2. Venous and arterial base deficits: do these agree in occult shock and in the elderly? A Bland-Altman analysis.
    Zakrison T, McFarlan A, Wu YY, Keshet I, Nathens A.
    J Trauma Acute Care Surg; 2013 Mar; 74(3):936-9. PubMed ID: 23425762
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  • 4. A comparison of central venous and arterial base deficit as a predictor of survival in acute trauma.
    Schmelzer TM, Perron AD, Thomason MH, Sing RF.
    Am J Emerg Med; 2008 Feb; 26(2):119-23. PubMed ID: 18272088
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  • 5. Can venous base excess replace arterial base excess as a marker of early shock and a predictor of survival in trauma?
    Wijaya R, Ng JH, Ong L, Wong AS.
    Singapore Med J; 2016 Feb; 57(2):73-6. PubMed ID: 26892937
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  • 7. Do early ionized calcium levels really matter in trauma patients?
    Cherry RA, Bradburn E, Carney DE, Shaffer ML, Gabbay RA, Cooney RN.
    J Trauma; 2006 Oct; 61(4):774-9. PubMed ID: 17033540
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  • 8. Are arterial and venous samples clinically equivalent for the estimation of pH, serum bicarbonate and potassium concentration in critically ill patients?
    Herrington WG, Nye HJ, Hammersley MS, Watkinson PJ.
    Diabet Med; 2012 Jan; 29(1):32-5. PubMed ID: 21781155
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  • 10. Serum bicarbonate may replace the arterial base deficit in the trauma intensive care unit.
    FitzSullivan E, Salim A, Demetriades D, Asensio J, Martin MJ.
    Am J Surg; 2005 Dec; 190(6):941-6. PubMed ID: 16307950
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  • 11. Agreement between bicarbonate measured on arterial and venous blood gases.
    Kelly AM, McAlpine R, Kyle E.
    Emerg Med Australas; 2004 Dec; 16(5-6):407-9. PubMed ID: 15537402
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  • 12. Point-of-care bedside gas analyzer: limited use of venous pCO2 in emergency patients.
    Ibrahim I, Ooi SB, Yiong Huak C, Sethi S.
    J Emerg Med; 2011 Aug; 41(2):117-23. PubMed ID: 18930370
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  • 13. Base deficit-based predictive modeling of outcome in trauma patients admitted to intensive care units in Dutch trauma centers.
    Kroezen F, Bijlsma TS, Liem MS, Meeuwis JD, Leenen LP.
    J Trauma; 2007 Oct; 63(4):908-13. PubMed ID: 18090025
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  • 17. Early coagulopathy in trauma patients: an on-scene and hospital admission study.
    Floccard B, Rugeri L, Faure A, Saint Denis M, Boyle EM, Peguet O, Levrat A, Guillaume C, Marcotte G, Vulliez A, Hautin E, David JS, Négrier C, Allaouchiche B.
    Injury; 2012 Jan; 43(1):26-32. PubMed ID: 21112053
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  • 18. Central venous oxygen saturation, arterial base deficit, and lactate concentration in trauma patients.
    Bannon MP, O'Neill CM, Martin M, Ilstrup DM, Fish NM, Barrett J.
    Am Surg; 1995 Aug; 61(8):738-45. PubMed ID: 7618819
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  • 19. Diagnostic and predictive values of thirst, angiotensin II, and vasopressin during trauma resuscitation.
    Gerhardt RT, Shaffer BM, Dixon P, Pfaff JA, Liker J, Ward J, Mueller GM.
    Prehosp Emerg Care; 2010 Aug; 14(3):317-23. PubMed ID: 20507219
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  • 20. Acute lower extremity compartment syndrome (ALECS) screening protocol in critically ill trauma patients.
    Kosir R, Moore FA, Selby JH, Cocanour CS, Kozar RA, Gonzalez EA, Todd SR.
    J Trauma; 2007 Aug; 63(2):268-75. PubMed ID: 17693823
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