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首页> 外文期刊>Lasers in surgery and medicine. >Hyperbaric phototherapy augments blood carbon monoxide removal
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Hyperbaric phototherapy augments blood carbon monoxide removal

机译:高压光疗增强血液碳一氧化去除

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Abstract Background and Objectives Carbon monoxide (CO) poisoning is responsible for nearly 50,000 emergency department visits and 1200 deaths per year. Compared to oxygen, CO has a 250‐fold higher affinity for hemoglobin (Hb), resulting in the displacement of oxygen from Hb and impaired oxygen delivery to tissues. Optimal treatment of CO‐poisoned patients involves the administration of hyperbaric 100% oxygen to remove CO from Hb and to restore oxygen delivery. However, hyperbaric chambers are not widely available and this treatment requires transporting a CO‐poisoned patient to a specialized center, which can result in delayed treatment. Visible light is known to dissociate CO from carboxyhemoglobin (COHb). In a previous study, we showed that a system composed of six photo‐extracorporeal membrane oxygenation (ECMO) devices efficiently removes CO from a large animal with CO poisoning. In this study, we tested the hypothesis that the application of hyperbaric oxygen to the photo‐ECMO device would further increase the rate of CO elimination. Study Design/Material and Methods We developed a hyperbaric photo‐ECMO device and assessed the ability of the device to remove CO from CO‐poisoned human blood. We combined four devices into a “hyperbaric photo‐ECMO system” and compared its ability to remove CO to our previously described photo‐ECMO system, which was composed of six devices ventilated with normobaric oxygen. Results Under normobaric conditions, an increase in oxygen concentration from 21% to 100% significantly increased CO elimination from CO‐poisoned blood after a single pass through the device. Increased oxygen pressure within the photo‐ECMO device was associated with higher exiting blood PO2 levels and increased CO elimination. The system of four hyperbaric photo‐ECMO devices removed CO from 1?L of CO‐poisoned blood as quickly as the original, normobaric photo‐ECMO system composed of six devices. Conclusion This study demonstrates the feasibility and efficacy of using a hyperbaric photo‐ECMO system to increase the rate of CO elimination from CO‐poisoned blood. This technology could provide a simple portable emergency device and facilitate immediate treatment of CO‐poisoned patients at or near the site of injury.
机译:抽象的背景和目标一氧化碳(CO)中毒负责近50000人急诊,每1200人的死亡的一年。更高的亲和力血红蛋白(Hb),导致氧气从Hb和受损的位移氧气交付组织。CO中毒患者包括政府高比重的100%的氧气除去Hb公司和恢复氧气交付。高压氧舱并不普及这种治疗需要运输公司检测中毒病人一个专业中心,这会导致延误治疗。光知道分离CO碳氧血红蛋白(COHb)。显示六个组成的一个系统照片还是体外膜肺氧合(ECMO)设备有效地删除从大公司动物与CO中毒。假设应用程序的测试高压氧照片ECMO应承担的设备进一步提高公司消除的速率。我们开发了一个研究设计/材料和方法高压照片ECMO设备和评估把公司从设备的能力CO中毒人血。成一个“高压照片ECMO系统”相比其删除公司对我们的能力先前描述的照片还是医学界系统由六个设备通风normobaric氧气。条件下,氧浓度的增加从21%到100%显著增加有限公司一个后消除从公司应承担的毒血通过该设备。压力在照片ECMO装置与退出血液警察乙水平较高有关和增加公司消除。高压照片还是医学界设备将公司从1 ?公司的高毒血尽快原normobaric照片ECMO应承担的六个组成的系统设备。使用高压的可行性和有效性照片还是医学界系统增加的速度有限公司消除从CO中毒的血液。技术可以提供一个简单的移动应急设备和方便直接治疗一氧化碳中毒患者处于或接近受伤的网站。

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