Suppr超能文献

自动化无创评估大鼠血流和氧合与全身生理监测相结合。

Automated noninvasive evaluation of blood flow and oxygenation in rats integrated with systemic physiological monitoring.

机构信息

From the Damage Control Resuscitation (I.P.T.F., D.B., C.W., K.H., M.A.D.), U.S. Army Institute of Surgical Research, JBSA Fort Sam Houston, Texas.

出版信息

J Trauma Acute Care Surg. 2019 Jul;87(1S Suppl 1):S110-S118. doi: 10.1097/TA.0000000000002199.

Abstract

BACKGROUND

Many studies evaluating blood flow and oxygen partial pressure (PO2) do not directly measure both parameters, are confined to few locations/microvessels, and depend on investigator's selection of measuring sites. Moreover, clinically/physiologically relevant systemic parameters are not simultaneously recorded. We implemented an automated system for prolonged blood flow/PO2 acquisition in large areas while collecting relevant systemic information.

METHODS

In anesthetized animals, cardiorespiratory parameters were continuously recorded. Other data were collected at baseline and hourly after 4 hours of hemorrhagic shock. A cremaster muscle was spread over a pedestal fixed to a motorized stage. One 2-dimensional tissue scan allowed 16 noninvasive PO2 measurements using oxygen-dependent phosphorescence quenching and fiber optics. Blood flow was estimated using laser speckle contrast imaging in the same areas used for PO2 measurements. At each timepoint, blood was sampled for extensive biochemistry/coagulation profile.

RESULTS

The system was used successfully by different operators. A set of flow/PO2 measurements was completed in less than 90 seconds. Muscle flow and PO2 correlated with some but not several systemic parameters, emphasizing the importance of performing both local and systemic evaluations.

CONCLUSION

System advantages include integration between local and over 40 systemic parameters, unbiased data collection/analysis, improved performance/sampled area, easy expansion, implementation and maintenance, no customized programming, and simplified training. Combining this system with trauma/prolonged HS models will enhance our ability to investigate tissue stability and select better resuscitation strategies to improve outcomes and survival.

LEVEL OF EVIDENCE

Diagnostic test, level V.

摘要

背景

许多评估血流和氧分压(PO2)的研究并未直接测量这两个参数,仅局限于少数位置/微血管,并且依赖于研究者对测量部位的选择。此外,临床/生理相关的系统参数并未同时记录。我们开发了一种自动化系统,用于在长时间内获取大面积的血流/PO2 数据,同时收集相关的系统信息。

方法

在麻醉动物中,连续记录心肺参数。在失血性休克 4 小时后,每小时记录一次基线和后续数据。将提睾肌铺展在固定于电动载物台上的基座上。一次二维组织扫描可使用氧依赖性磷光猝灭和光纤进行 16 次非侵入性的 PO2 测量。使用激光散斑对比成像在相同的 PO2 测量区域估计血流。在每个时间点,都抽取血液进行广泛的生化/凝血谱分析。

结果

不同操作者都成功使用了该系统。一组血流/PO2 测量在不到 90 秒的时间内完成。肌肉血流和 PO2 与一些但不是全部系统参数相关,强调了进行局部和系统评估的重要性。

结论

该系统的优势包括局部和 40 多个系统参数之间的集成、无偏的数据收集/分析、提高性能/采样面积、易于扩展、实施和维护、无需定制编程以及简化培训。将该系统与创伤/长时间失血性休克模型结合使用,将增强我们研究组织稳定性和选择更好复苏策略的能力,从而改善预后和生存率。

证据水平

诊断性试验,5 级。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验