Page 24 - JSOM Winter 2024
P. 24

application to control hemorrhage in a swine model. Shock. 2016;46(3   porcine class II hemorrhage. J Trauma Acute Care Surg. 2018;85
             Suppl 1):160–166. doi:10.1097/SHK.0000000000000651  (4):717–724. doi:10.1097/TA.0000000000002013.
          22.  Schechtman DW, Kauvar DS, De Guzman R, et al. Abdominal   36.  Compression Works  Ltd. AAJT-S – Instructions for use. Com-
             aortic and junctional tourniquet versus zone III resuscitative en-  pression Works Ltd. [Online] Compression Works Ltd. Accessed
             dovascular balloon occlusion of the aorta in a swine junctional   February 10, 2023.  https://compressionworks.com/images/IFUs/
             hemorrhage model. J Trauma Acute Care Surg. 2020;88(2):292–  AAJTS-Instructions-for-Use_English.pdf
             297. doi:10.1097/TA.0000000000002553.           37.  Rago AP, Duggan MJ, Beagle J, et al. Self-expanding foam for
          23.  Rall JM, Redman TT, Ross EM, Morrison JJ, Maddry JK. Com-  prehospital treatment of intra-abdominal hemorrhage: 28-day
             parison of zone 3  resuscitative endovascular balloon occlusion   survival and safety. J Trauma Acute Care Surg. 2014;77(3 Suppl
             of  the  aorta  and  the  abdominal  aortic  and  junctional  tourni-  2):S127–S133. doi:10.1097/TA.0000000000000380.
             quet in a model of junctional hemorrhage in swine. J Surg Res.   38.  Rago AP, Duggan MJ, Hannett P, et al. Chronic safety assessment of
             2018;226:31–39. doi:10.1016/j.jss.2017.12.039      hemostatic self-expanding foam: 90-day survival study and intra-
          24.  Stigall K, Blough PE, Rall JM, Kauvar DS. Conversion of the ab-  muscular biocompatibility. J Trauma Acute Care Surg. 2015;79(4
             dominal aortic and junctional tourniquet (AAJT) to infrarenal re-  Suppl 2):S78–S84. doi:10.1097/TA.0000000000000571
             suscitative endovascular balloon occlusion of the aorta ( REBOA)   39.  Mesar  T, Martin D, Lawless R, et al. Human dose confirma-
             is practical in a swine hemorrhage model.  J Spec Oper Med.   tion  for  self-expanding  intra-abdominal  foam:  a  translational,
             2021;21(1):30–36. doi:10.55460/V5UD-1SVF           adaptive, multicenter trial in recently deceased human subjects.
          25.  Brännström A, Dahlquist A, Gustavsson J, Arborelius UP, Gün-  J Trauma Acute Care Surg. 2015;79(1):39–46; discussion 46–47.
             ther M. Transition from abdominal aortic and junctional tourni-  doi:10.1097/TA.0000000000000696
             quet to zone 3 resuscitative endovascular balloon occlusion of the   40.  Peev MP, Rago A, Hwabejire JO, et al. Self-expanding foam for
             aorta is feasible with hemodynamic support after porcine class   prehospital  treatment  of  severe  intra-abdominal  hemorrhage:
             IV hemorrhage. J Trauma Acute Care Surg. 2019;87(4):849–855.   dose finding study. J Trauma Acute Care Surg. 2014;76(3):619–
             doi:10.1097/TA.0000000000002426                    623; discussion 623–624. doi:10.1097/TA.0000000000000126
          26.  Smith TN, Beaven A, Handford C, Sellon E, Parker PJ. Abdomi-  41.  Donaldson RI, Zimmermann EM, Fisher TC, et al. Thermorev-
             nal Aortic Junctional Tourniquet – Stabilized (AAJTS) can be ap-  ersible reverse-phase-shift foam for treatment of noncompressible
             plied both successfully and rapidly by combat medical technicians   torso hemorrhage. J Surg Res. 2021;259:175–181. doi:10.1016/j.
             (CMTs).  BMJ Mil Health. 2023;169(6):493–498. doi:10.1136/  jss.2020.11.039
             bmjmilitary-2021-001881                         42.  Rosenthal RE, Smith J,  Walls RM, et al. Stab wounds to the
          27.  Balian F, Garner AA, Weatherall A, Lee A. First experience with   abdomen: failure of blunt probing to predict peritoneal pene-
             the abdominal aortic and junctional tourniquet in prehospital   tration.  Ann Emerg Med. 1987;16(2):172–174. doi:10.1016/
             traumatic cardiac arrest. Resuscitation. 2020;156:210–214. doi:   s0196-0644(87)80010-0
             10.1016/j.resuscitation.2020.09.018             43.  McCracken BM, Ward KR, Tiba MH. A review of two emerging
          28.  Croushorn J: MARCH – Treatment of Non-Compressible Torso   technologies for pre-hospital treatment of non-compressible ab-
             Hemorrhage with Truncal Tourniquet Intervention. Presented at:   dominal hemorrhage. Transfusion. 2022;62(Suppl 1):S313–S322.
             Combat Medic Conference; July 5–6, 2023; Blaubeuren, Germany.  doi:10.1111/trf.16961
          29.  De  Keulenaer  BL,  De  Waele  JJ,  Powell  B,  Malbrain  MLNG.   44.  Kasotakis G, Duggan M, Li Y, et al. Optimal pressure of abdom-
             What is normal intra-abdominal pressure and how is it affected   inal gas insufflation for bleeding control in a severe swine splenic
             by positioning, body mass and positive end-expiratory pres-  injury model. J Surg Res. 2013;184(2):931–936. doi:10.1016/j.
             sure?  Intensive Care Med. 2009;35(6):969–976. doi:10.1007/  jss.2013.03.016
             s00134-009-1445-0                               45.  Ahmadi-noorbakhsh S, Azizi S, Dalir-Naghadeh B, Maham M.
          30.  Yol S, Kartal A, Tavli S, Tatkan Y. Is urinary bladder pressure   Hyperpressure intraperitoneal fluid administration for control
             a sensitive indicator of intra-abdominal pressure?  Endoscopy.   of bleeding after liver injury. J Surg Res. 2012;176(2):559–566.
             1998;30(9):778–780. doi:10.1055/s-2007-1001421     doi:10.1016/j.jss.2011.10.002
          31.  Iberti TJ, Kelly KM, Gentili DR, Hirsch S, Benjamin E. A sim-  46.  Schilling MK, Redaelli C, Krähenbühl L, Signer C, Büchler MW.
             ple technique to accurately determine intra-abdominal pres-  Splanchnic microcirculatory  changes during CO2 laparoscopy.
             sure.  Crit Care Med. 1987;15(12):1140–1142. doi:10.1097/   J Am Coll Surg. 1997;184(4):378-382. Erratum in: J Am Coll
             00003246-198712000-00014                           Surg. 1997;185(4):423. Accessed November 6, 2024. https://pub
          32.  Vivier E, Metton O, Piriou V, et al. Effects of increased intra-   med.ncbi.nlm.nih.gov/9100683/
             abdominal pressure on central circulation. Br J Anaesth. 2006;96   47.  Friedlander MH, Simon RJ, Ivatury R, DiRaimo R, Machiedo GW.
             (6):701–707. doi:10.1093/bja/ael071                Effect of hemorrhage on superior mesenteric artery flow during
          33.  Markou N, Grigorakos L, Myrianthefs P, et al.  Venous  pres-  increased intra-abdominal pressures. J Trauma. 1998;45(3):433–
             sure  measurements  in  the  superior  and  inferior  vena  cava:  the   489. doi:10.1097/00005373-199809000-00002
             influence of intra-abdominal pressure.  Hepatogastroenterology.   48.  Peev MP, Rago A, Hwabejire JO, et al. Self-expanding foam for
             2004;51(55):51–55. Accessed November 6, 2024. https://pubmed   prehospital  treatment  of  severe  intra-abdominal  hemorrhage:
             .ncbi.nlm.nih.gov/15011830/                        dose finding study. J Trauma Acute Care Surg. 2014;76(3):619–
          34.  Kheirabadi BS, Dubick MA. Safe duration of abdominal aortic   624. doi:10.1097/TA.0000000000000126
             and junctional tourniquet application. J Trauma Acute Care Surg.   49.  Backer DD. Abdominal compartment syndrome. Crit Care. 1999;
             2019;87(3):740–741. doi:10.1097/TA.0000000000002231.  3. doi:10.1186/cc373
          35.  Brännström A, Rocksén D, Hartman J, et al. Abdominal aortic
             and junctional tourniquet release after 240 minutes is surviv-  PMID: 39621010; DOI: 10.55460/O28C-W9ZO
             able and associated with small intestine and liver ischemia after
















          22  |  JSOM   Volume 24, Edition 4 / Winter 2024
   19   20   21   22   23   24   25   26   27   28   29