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使用小波变换对成熟过程中的皮层电活动进行时频分析。

Time-frequency analysis of the electrocortical activity during maturation using wavelet transform.

作者信息

Akay M, Akay Y M, Cheng P, Szeto H H

机构信息

Department of Biomedical Engineering, Rutgers University, Piscataway, NJ 08855.

出版信息

Biol Cybern. 1994;71(2):169-76. doi: 10.1007/BF00197320.

Abstract

In this study, we introduce the wavelet transform (WT) as a method for characterizing the maturational changes in electrocortical activity in 24 fetal lambs ranging from 110-144 days gestation (term 145 days). The WT, based on multiresolution signal decomposition, is free of assumptions regarding the characteristics of the signal. The approximation of the electrocortical activity at resolutions varying from 2j+1 to 2j can be extracted by decomposing the signal on a wavelet orthonormal basis of L2(R). We performed multiresolution decomposition for four sets of parameters D2j, where -1 < j < -4. The four series WT represent the detail signal band-widths: (1) 16-32 Hz, (2) 8-16 Hz, (3) 4-8 Hz, (4) 2-4 Hz. The data were divided into three groups according to gestational age: 110-122 days (early), 123-135 days (middle), and 136-144 days (late). In the early group, the power was highest in the fourth signal bandwidth, with relatively low power in the other bands. Increase in gestational age was characterized by increased power in all four bandwidths. Comparison of the cumulative distribution function of the power in the four wavelet bands confirmed the presence of two statistically different patterns in all three age groups. These two patterns correspond to the visually identified patterns of HVSA (high-voltage slow activity) and LVFA (low-voltage fast activity). The earliest development change occurred in HVSA, with progressive increase in power in the 2-8 Hz band. Later changes occurred in LVFA, with a significant increase in power in the 16-32 Hz band.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在本研究中,我们引入小波变换(WT)作为一种表征24只胎龄在110 - 144天(足月为145天)的胎羊脑电活动成熟变化的方法。基于多分辨率信号分解的小波变换,无需对信号特征做假设。通过在L2(R)的小波正交基上分解信号,可提取分辨率从2j + 1到2j变化时的脑电活动近似值。我们针对四组参数D2j进行了多分辨率分解,其中 - 1 < j < - 4。这四个小波变换系列代表细节信号带宽:(1)16 - 32赫兹,(2)8 - 16赫兹,(3)4 - 8赫兹,(4)2 - 4赫兹。数据根据胎龄分为三组:110 - 122天(早期)、123 - 135天(中期)和136 - 144天(晚期)。在早期组中,第四信号带宽的功率最高,其他带宽的功率相对较低。胎龄增加的特征是所有四个带宽的功率均增加。对四个小波带功率的累积分布函数进行比较,证实所有三个年龄组中都存在两种统计学上不同的模式。这两种模式对应于视觉识别出的高电压慢活动(HVSA)和低电压快活动(LVFA)模式。最早的发育变化发生在HVSA,2 - 8赫兹频段的功率逐渐增加。后来的变化发生在LVFA,16 - 32赫兹频段的功率显著增加。(摘要截选至250字)

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