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1 s and civilian trauma victims with traumatic exsanguination.
2 a now do so as a result of causes other than exsanguination.
3 later period, as did the rate of deaths from exsanguination (9% to 1%), multiple organ failure (12% t
4       Seven of 19 affected male mice died of exsanguination after tail snipping, and two affected mic
5 s appear to be in reducing early deaths from exsanguination and late deaths from multiple organ failu
6 ar to those of today, rapidly preventing any exsanguination and the breakdown of osmoregulation of th
7 emostasis and fewer experienced death due to exsanguination by 24 hours.
8 the 1980s in dog outcome models of prolonged exsanguination cardiac arrest has culminated in brain an
9 ation (EPR) of trauma victims who experience exsanguination cardiac arrest may allow survival from ot
10                      Suspended animation for exsanguination cardiac arrest of trauma victims would ha
11  have developed and used novel dog models of exsanguination cardiac arrest to explore suspended anima
12 mprise a novel approach for resuscitation of exsanguination cardiac arrest victims.
13 ats showing no neurologic injury, despite an exsanguination cardiac arrest, followed by 20 mins of EP
14 f cold saline immediately after the start of exsanguination cardiac arrest-which rarely can be resusc
15 y) cannot be resuscitated, such as traumatic exsanguination cardiac arrest.
16 tion) induced immediately after the start of exsanguination cardiac arrest.
17 decreased to 40 mm Hg during 60 minutes with exsanguination from the 30th to the 60th minute to a mea
18 P] of approximately 40 mm Hg) was induced by exsanguination into a reservoir.
19 etabolic effects of SAAP with HBOC-201 in an exsanguination model of cardiac arrest.
20                                        After exsanguination of the rats 2, 4, 6, 12, 24, or 72 hours
21 in mean arterial pressure induced by partial exsanguination or blood transfusion.
22                          After sacrifice via exsanguination, the following serum levels were determin
23                                    Following exsanguination under anaesthesia, fetal hearts were moun
24               The animals were sacrificed by exsanguination under general anesthesia and then perfuse
25                                              Exsanguination, which was the predominant cause of death
26 ontraumatic (e.g., ruptured aortic aneurysm) exsanguination, without severe brain trauma, by enabling

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