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微创先进血流动力学监测方法:原理、设备及其在围术期血流动力学优化中的作用。

Less invasive methods of advanced hemodynamic monitoring: principles, devices, and their role in the perioperative hemodynamic optimization.

机构信息

Senior clinical fellow in cardiac anaesthesia, St George's Healthcare NHS Trust, London, UK.

出版信息

Perioper Med (Lond). 2013 Sep 17;2(1):19. doi: 10.1186/2047-0525-2-19.

Abstract

The monitoring of the cardiac output (CO) and other hemodynamic parameters, traditionally performed with the thermodilution method via a pulmonary artery catheter (PAC), is now increasingly done with the aid of less invasive and much easier to use devices. When used within the context of a hemodynamic optimization protocol, they can positively influence the outcome in both surgical and non-surgical patient populations. While these monitoring tools have simplified the hemodynamic calculations, they are subject to limitations and can lead to erroneous results if not used properly. In this article we will review the commercially available minimally invasive CO monitoring devices, explore their technical characteristics and describe the limitations that should be taken into consideration when clinical decisions are made.

摘要

心输出量(CO)和其他血流动力学参数的监测,传统上通过肺动脉导管(PAC)进行热稀释法测量,现在越来越多地借助于创伤更小、使用更方便的设备进行。当这些设备在血流动力学优化方案的背景下使用时,它们可以对手术和非手术患者群体的结局产生积极影响。尽管这些监测工具简化了血流动力学计算,但如果使用不当,它们会受到限制,并可能导致错误的结果。在本文中,我们将回顾市售的微创 CO 监测设备,探讨它们的技术特点,并描述在做出临床决策时应考虑的局限性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/409f/3964331/1e9db06e2baa/2047-0525-2-19-1.jpg

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