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The FEAST trial of fluid bolus in African children with severe infection

机译:严重感染中非洲儿童流体推注的盛宴试验

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摘要

We are developing a robust, minimally invasive device for detecting progression toward hemorrhagic shock in trauma patients. To accomplish this, oxygen micro-sensors are being developed that contain a solution of oxygen-sensitive phosphorescent probes within gas permeable tubing attached to optical fibers. These micro-sensors can be inserted into peripheral tissue to accurately measure tissue oxygenation. As the blood volume decreases (hemorrhage), physiological mechanisms progressively restrict blood flow to "non essential" peripheral tissues, redirecting that flow to the essential internal organs. It is hypothesized that the sensors will detect the shutdown of peripheral blood flow well before the decreasing blood volume reaches the threshold where multi-organ failure begins. Proactive treatment with volume expanders or blood, guided by peripheral oxygen measurements, would significantly reduce multi-organ failure and other complications in trauma cases.
机译:我们正在开发一种坚固的微创装置,用于检测创伤患者中出血性休克的进展。 为了实现这一点,正在开发出氧气微传感器,其含有氧敏感磷光探针的透气管内附着到光纤的透气管内的溶液。 这些微传感器可以插入外围组织中以精确测量组织氧合。 随着血液体积减少(出血),生理机制逐渐将血液流入“非必要”外周组织,重定向流向基本内脏器官。 假设传感器在减少血液量达到多器官故障开始的阈值之前,传感器将检测到周围血流的关闭良好。 用含量扩张器或血液的主动治疗,由外周氧测量引导,会显着降低创伤病例中的多器官衰竭和其他并发症。

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    《The Lancet》 |2012年第9816期|共2页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医药、卫生;
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