首页> 外文会议>Mediterranean Conference on Control Automation >Laser Doppler flowmetry in healthy rats: impact of isoflurane anesthetic on signal complexity
【24h】

Laser Doppler flowmetry in healthy rats: impact of isoflurane anesthetic on signal complexity

机译:健康大鼠激光多普勒流动性:异氟烷麻醉对信号复杂性的影响

获取原文

摘要

Laser Doppler flowmetry (LDF) technique is an optical tool used in clinical investigations to monitor microvascular blood flow. Recent preliminary works have shown that LDF signals recorded in young healthy human subjects are weakly multifractal. Such an information is important as it could lead to a better knowledge of the underlying optical processes giving rise to the signals. In the present work, our goal is to analyze the behavior of LDF signals in anesthesia conditions. For this purpose, we herein study the possible modifications brought by isoflurane, an anesthetic commonly used in clinical practice, on the complexity of LDF signals. In order to conduct our work, twenty LDF signals from anesthetized healthy rats are processed. Anesthesia is performed by using doses of isoflurane varying between 1.5% and 3%, which leads to very light and very deep anesthesia, respectively. The signal processing approach is carried out with two different methods, a parametric generalized quadratic variation based estimation method and a Hurst rescaled range analysis. The results show that extreme doses of isoflurane lead to no distinguishable modification on the characterization of LDF signals based on the two above approaches. These findings infer that, if isoflurane changes the microvascular tissue optical properties, these modifications have no influence on LDF signals complexity measured by the two signal processing approaches used herein.
机译:激光多普勒流动性(LDF)技术是一种用于临床研究的光学工具,以监测微血管血流。最近的初步作品表明,在年轻健康的人类受试者中记录的LDF信号是弱多方的。这样的信息很重要,因为它可能导致更好地了解产生信号的底层光学过程。在目前的工作中,我们的目标是分析麻醉条件下LDF信号的行为。为此目的,我们在本文中研究了异氟烷,一种临床实践中常用的麻醉剂的可能修饰在LDF信号的复杂性。为了进行我们的工作,处理来自麻醉健康大鼠的20个LDF信号。通过使用异氟醚的剂量不同的异氟醚和3%的剂量进行麻醉,这分别导致非常轻的和非常深的麻醉。信号处理方法用两种不同的方法进行,是参数的广义二次变化的基于估计方法和赫斯特重构范围分析。结果表明,基于上述两个方法对LDF信号的表征没有可区分的异氟烷的极端剂量。这些发现推断,如果异氟烷改变微血管组织光学性质,这些修改对通过本文所用的两个信号处理方法测量的LDF信号复杂性没有影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号