脑栓塞检测算法综述

Ab Waheed Lone , Ahmet Elbir , Nizamettin Aydin
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引用次数: 0

摘要

越来越多的生物医学数据吸引了许多研究人员的兴趣,他们希望了解并分析从数据中提取的模式。中风被认为是全球死亡的主要原因之一。关于中风的病因和其他生理影响,已经开展了大量工作。脑栓塞被认为是中风的主要来源之一。在本文中,我们讨论了多普勒超声波的物理原理,回顾了脑栓塞检测算法和一些用于了解栓塞发展的行为、大小和组成的动物模型。从基于傅里叶变换、小波变换的栓子检测到利用多普勒信号谱训练的神经网络架构,我们对基于信号处理的脑栓塞检测工作进行了全面回顾,并提供了对栓子检测相关术语的一些基本理解。结合人类与一些动物的自然动脉结构关系,我们重点介绍了一些用于了解栓子形成过程本质的动物模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive review on cerebral emboli detection algorithms

The increasing availability of biomedical data has attracted the interest of many researchers to understand and perform analysis on extracted patterns from data. Stroke is considered as one of the main causes of deaths worldwide. A considerable amount of work has been performed related to the cause of stroke and other physiological effects. Cerebral emboli is considered as one of the main sources of stroke. Algorithms from one of the traditional subjects called signal processing have been used in cerebral emboli detection and lot of researchers have performed emboli detection and classification using Fourier transform based algorithms and different filtering approaches.

In this paper, we discuss the physics of Doppler ultrasound and perform review of cerebral emboli detection algorithms and some animal models used in understanding the behaviour, size, and composition of emboli development. Ranging from Fourier transform, wavelet transform based emboli detection to neural network architectures trained with Doppler signal spectra, we performed comprehensive review of signal processing based cerebral emboli detection works and provide some basic understanding of related terms in emboli detection. With natural arterial structural relation between humans and some animals, we highlight some of the animal models used for understanding the nature of emboli development process.

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