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首页> 外文期刊>Critical care medicine >Mechanical Ventilation Redistributes Blood to Poorly Ventilated Areas in Experimental Lung Injury*
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Mechanical Ventilation Redistributes Blood to Poorly Ventilated Areas in Experimental Lung Injury*

机译:机械通风将血液重新分配到实验性肺损伤中的通风良好区域*

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摘要

Supplemental Digital Content is available in the text. Objectives: Determine the intra-tidal regional gas and blood volume distributions at different levels of atelectasis in experimental lung injury. Test the hypotheses that pulmonary aeration and blood volume matching is reduced during inspiration in the setting of minimal tidal recruitment/derecruitment and that this mismatching is an important determinant of hypoxemia. Design: Preclinical study. Setting: Research laboratory. Subjects: Seven anesthetized pigs 28.7 kg ( sd , 2.1 kg). Interventions: All animals received a saline-lavage surfactant depletion lung injury model. Positive end-expiratory pressure was varied between 0 and 20 cm H_(2)O to induce different levels of atelectasis. Measurements and Main Results: Dynamic dual-energy CT images of a juxtadiaphragmatic slice were obtained, gas and blood volume fractions within three gravitational regions calculated and normalized to lung tissue mass (normalized gas volume and normalized blood volume, respectively). Ventilatory conditions were grouped based upon the fractional atelectatic mass in expiration (< 20%, 20–40%, and ≥ 40%). Tidal recruitment/derecruitment with fractional atelectatic mass in expiration greater than or equal to 40% was less than 7% of lung mass. In this group, inspiration-related increase in normalized gas volume was greater in the nondependent (818 μL/g [95% CI, 729–908 μL/g]) than the dependent region (149 μL/g [120–178 μL/g]). Normalized blood volume decreased in inspiration in the nondependent region (29 μL/g [12–46 μL/g]) and increased in the dependent region (39 μL/g [30–48 μL/g]). Inspiration-related changes in normalized gas volume and normalized blood volume were negatively correlated in fractional atelectatic mass in expiration greater than or equal to 40% and 20–40% groups ( r ~(2)= 0.56 and 0.40), but not in fractional atelectatic mass in expiration less than 20% group ( r ~(2)= 0.01). Both the increase in normalized blood volume in the dependent region and fractional atelectatic mass in expiration negatively correlated with Pa o _(2)/F io _(2)ratio ( ρ = –0.77 and –0.93, respectively). Conclusions: In experimental atelectasis with minimal tidal recruitment/derecruitment, mechanical inspiratory breaths redistributed blood volume away from well-ventilated areas, worsening Pa o _(2)/F io _(2).
机译:文本中提供了补充数字内容。目的:在实验肺损伤中确定不同水平的潮汐区域气体和血量分布。在最小潮汐募集/危险性/ DANCRECULINENT的环境中,测试肺通气和血液体积匹配的假设,并且这种不匹配是缺氧血症的重要决定因素。设计:临床前研究。环境:研究实验室。主题:七只麻醉猪28.7千克(SD,2.1千克)。干预措施:所有动物都接受盐水灌洗表面活性剂耗竭肺损伤模型。正端呼气的压力在0到20cm H_(2)O之间变化,以诱导不同水平的Atelectasis。测量和主要结果:在计算和标准化的三重重力区域内获得了Juxtadphragragmatic切片的动态双能量CT图像,其三种重力区域(分别归一化气体体积和标准化血容量)。基于呼气量的分数大规模物质(<20%,20-40%和≥40%)进行通气状况。潮汐募集/延期患者的呼气分数大于或等于40%少于肺质量的7%。在该组中,在非依赖性(818μL/ g [95%CI,729-908μl/ g])中,归一化气体体积的较大升高的升高比依赖区(149μl/ g [120-178μl/ G])。在非依赖区(29μl/ g [12-46μl/ g]中的灵感中的归一化血容量下降并在依赖区(39μl/ g [30-48μl/ g])增加。归一化气体体积和归一化血容量的启发相关的变化在呼气到期大于或等于40%和20-40%基团(R〜(2)= 0.56和0.40),但不在分数中呈负相关呼气量小于20%基团(R〜(2)= 0.01)。依赖区域中的归一化血容量的增加和分数与分馏的分数与Pa O _(2)/ f IO _(2)比分别与Pa O _(2)/ f IO _(分别)的屈服相关(分别为-0.93)。结论:在具有最小潮汐募集/危险性/ Derecuitment的实验性图中,机械吸气呼吸从通风良好的区域重新分布血液量,恶化PA o _(2)/ f IO_(2)。

著录项

  • 来源
    《Critical care medicine》 |2020年第3期|共9页
  • 作者单位

    Centre for Human and Applied Physiological Sciences Faculty of Life Sciences and Medicine King’s;

    Nuffield Division of Anaesthetics Nuffield Department of Clinical Neurosciences University of;

    Nuffield Division of Anaesthetics Nuffield Department of Clinical Neurosciences University of;

    Hedenstierna Laboratory Department of Medical Sciences Uppsala University;

    Hedenstierna Laboratory Department of Surgical Sciences Uppsala University;

    Centre for Human and Applied Physiological Sciences Faculty of Life Sciences and Medicine King’s;

    Centre for Human and Applied Physiological Sciences Faculty of Life Sciences and Medicine King’s;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 护理学;
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