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下一代脉搏血氧仪。聚焦于Masimo的信号提取技术。

Next-generation pulse oximetry. Focusing on Masimo's signal extraction technology.

出版信息

Health Devices. 2000 Oct;29(10):349-70.

Abstract

Pulse oximeters are used to determine trends in patients' blood oxygen saturation and to warn of dangerous saturation levels. But conventional pulse oximetry has some inherent limitations. For example, it has difficulty monitoring patients who are moving or who have poor perfusion; it is also subject to interference from certain visible and infrared light sources. Over the past several years, a number of companies have developed advanced signal-processing techniques that allow pulse oximeters to overcome many of these limitations. We refer to such new technologies as next-generation pulse oximetry. In this Evaluation, we focus on the first next-generation technology to have reached the market: Masimo Corporation's Signal Extraction Technology (SET). We designed our study of Masimo SET to address the main question that needs to be asked of any next-generation technology: How well does it compare to conventional pulse oximetry? Specifically, how well does it perform when a patient is moving or being moved, when a patient is poorly perfused, or when certain types of light strike the sensor while it is attached to or detached from the patient? We also examined one type of sensor used with this product, comparing it to conventional tape-on sensors for comfort and durability. Several other next-generation pulse-oximeter products have become available since we began this study. We are currently evaluating these products and will publish our findings in the near future. A list of the products, including a brief description of each, is included in this article. Pulse oximeters are used to determine trends in patients' blood oxygen saturation and to warn against dangerous saturation levels. These monitors are often vital in helping to ensure patient safety, especially for critically ill patients, pediatric patients, and neonates. But conventional pulse oximetry has some inherent limitations--most significantly, it has difficulty monitoring patients who are moving or who have poor perfusion. Although gradual improvements have been made to the technology, only recently has it advanced to the point where it has really begun to overcome these limitations. A number of manufacturers have developed advanced signal-processing algorithms that allow pulse oximeters to "read through" motion and conditions of poor perfusion. The first of these "next-generation" pulse-oximeter technologies that reached the market was Masimo Corporation's Signal Extraction Technology (SET). We tested that product in this Evaluation. In this Overview, we'll tell you about conventional pulse oximetry and its shortfalls, next-generation technology and how it's designed to improve on the old methods, and how we approached our Evaluation of Masimo SET.

摘要

脉搏血氧仪用于确定患者血氧饱和度的变化趋势,并对危险的饱和度水平发出警报。但传统的脉搏血氧测定法存在一些固有局限性。例如,它在监测活动的患者或灌注不良的患者时存在困难;它还容易受到某些可见光和红外光源的干扰。在过去几年中,一些公司开发了先进的信号处理技术,使脉搏血氧仪能够克服这些局限性中的许多问题。我们将这种新技术称为下一代脉搏血氧测定法。在本评估中,我们重点关注已进入市场的第一代下一代技术:Masimo公司的信号提取技术(SET)。我们设计了对Masimo SET的研究,以解决对任何下一代技术都需要提出的主要问题:它与传统脉搏血氧测定法相比如何?具体而言,当患者在活动或被移动时、当患者灌注不良时,或者当传感器连接到患者或从患者身上取下时,有某些类型的光线照射到传感器时,它的表现如何?我们还检查了与该产品一起使用的一种传感器类型,将其与传统的粘贴式传感器在舒适度和耐用性方面进行了比较。自从我们开始这项研究以来,其他几种下一代脉搏血氧仪产品也已上市。我们目前正在评估这些产品,并将在不久的将来公布我们的研究结果。本文中包含了这些产品的列表,包括对每种产品的简要描述。脉搏血氧仪用于确定患者血氧饱和度的变化趋势,并对危险的饱和度水平发出警报。这些监测仪在帮助确保患者安全方面通常至关重要,尤其是对于重症患者、儿科患者和新生儿。但传统的脉搏血氧测定法存在一些固有局限性——最显著的是,它在监测活动的患者或灌注不良的患者时存在困难。尽管该技术已逐步改进,但直到最近才发展到真正开始克服这些局限性的程度。一些制造商已经开发出先进的信号处理算法,使脉搏血氧仪能够“透过”运动和灌注不良的情况进行读取。这些“下一代”脉搏血氧仪技术中第一个进入市场的是Masimo公司的信号提取技术(SET)。我们在本评估中对该产品进行了测试。在本概述中,我们将向您介绍传统脉搏血氧测定法及其不足之处、下一代技术以及它旨在如何改进旧方法,以及我们对Masimo SET进行评估的方法。

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