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麻醉中的超声:将科学原理应用于临床实践。

Ultrasound in anesthesia: applying scientific principles to clinical practice.

作者信息

Falyar Christian R

机构信息

Virginia Commonwealth University, School of Nurse Anesthesia, Richmond, USA.

出版信息

AANA J. 2010 Aug;78(4):332-40.

Abstract

The use of ultrasound as an adjunct to invasive anesthesia procedures is becoming commonplace. The U.S. Agency for Health Care Quality and the United Kingdom National Institute for Clinical Excellence have identified the role of ultrasound in improving patient safety. Numerous studies have demonstrated the benefits of ultrasound, yet there have also been articles inferring it may not offer additional benefits to traditional landmark techniques. The major disadvantage often cited is that success is user-dependent, and using ultrasound is a unique skill that requires training and experience to become proficient. Modern ultrasound systems incorporate 2 sound technologies to provide users with specific information about what is being viewed. Brightness mode imaging and pulsed-wave Doppler can be combined to reduce potential complications associated with central venous access and regional anesthesia. Human tissue is also an important factor in ultrasound imaging. The different densities of soft tissues, bone, fluid, and air all interact with sound, creating distinctive images that can aid and potentially hinder accuracy. Comprehension of basic ultrasound principles and how it is affected by tissue will enable anesthetists to better understand what is being seen and reduce the potential for errors.

摘要

超声作为侵入性麻醉操作的辅助手段正变得越来越普遍。美国医疗保健质量局和英国国家临床优化研究所已明确了超声在提高患者安全性方面的作用。众多研究已证明了超声的益处,但也有文章推断它可能不会给传统的体表标志技术带来额外的好处。经常被提及的主要缺点是成功率取决于使用者,而且使用超声是一项独特的技能,需要培训和经验才能熟练掌握。现代超声系统结合了两种声音技术,为用户提供有关所观察内容的特定信息。亮度模式成像和脉冲波多普勒可以结合使用,以减少与中心静脉置管和区域麻醉相关的潜在并发症。人体组织也是超声成像中的一个重要因素。软组织、骨骼、液体和空气的不同密度都会与声音相互作用,产生独特的图像,这些图像可能有助于也可能妨碍准确性。理解基本的超声原理以及它如何受组织影响,将使麻醉医生能够更好地理解所看到的情况,并减少出错的可能性。

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