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Hemorrhage Control of Liver Injury by Short Electrical Pulses

机译:短电脉冲控制肝损伤的出血

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摘要

Trauma is a leading cause of death among young individuals globally and uncontrolled hemorrhage is the leading cause of preventable death. Controlling hemorrhage from a solid organ is often very challenging in military as well as civilian setting. Recent studies demonstrated reversible vasoconstriction and irreversible thrombosis following application of microseconds-long electrical pulses. The current paper describes for the first time reduction in bleeding from the injured liver in rat and rabbit model in-vivo. We applied short (25 and 50 µs) electrical pulses of 1250 V/cm to rats and rabbit liver following induction of standardized penetrating injury and measured the amount of bleeding into the abdominal cavity one hour post injury. We found a 60 and 36 percent reduction in blood volume in rats treated by 25 µs and 50 µs, respectively (P<0.001). Similar results were found for the rabbit model. Finite element simulation revealed that the effect was likely non-thermal. Histological evaluation found local cellular injury with intravascular thrombosis. Further research should be done to fully explore the mechanism of action and the potential use of short electric pulses for hemorrhage control.
机译:创伤是全球年轻人死亡的主要原因,不受控制的出血是可预防死亡的主要原因。在军事和平民环境中,控制实体器官的出血通常非常困难。最近的研究表明,施加微秒长的电脉冲后可逆的血管收缩和血栓形成不可逆。本论文首次描述了大鼠和兔子体内模型的受伤肝脏出血减少。在诱发标准穿透伤后,我们在大鼠和兔肝脏上施加了1250 V / cm的短(25和50 µs)电脉冲,并在伤后一小时测量了腹腔内的出血量。我们发现分别用25 µs和50 µs处理的大鼠的血容量减少了60%和36%(P <0.001)。对于兔子模型也发现了类似的结果。有限元模拟表明,这种影响可能是非热的。组织学评估发现局部细胞损伤伴血管内血栓形成。应该做进一步的研究,以充分探索作用机理以及短电脉冲在控制出血中的潜在用途。

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