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小波分析揭示了大鼠振荡电位的动态变化。

Wavelet analysis reveals dynamics of rat oscillatory potentials.

作者信息

Forte Jason D, Bui Bang V, Vingrys Algis J

机构信息

Department of Optometry & Vision Sciences, The University of Melbourne, Australia.

出版信息

J Neurosci Methods. 2008 Mar 30;169(1):191-200. doi: 10.1016/j.jneumeth.2007.12.007. Epub 2007 Dec 23.

Abstract

We characterised the dynamics in the oscillatory potentials (OPs) of the rat electroretinogram (ERG) using a continuous complex Morlet wavelet transform. Dark-adapted (>12h) full field ERG responses were recorded from five anaesthetized (ketamine:xylazine, 60:5mg/kg) adult Long-Evans rats (10-12weeks). Five responses were obtained for brief LED flashes (1-4ms) in a ganzfeld at exposures ranging from -4.2 to 1.58logcdsm(-2). Signals were recorded across a bandwidth of 0.3-1kHz and digitized at 10kHz. Morlet wavelets with frequencies between 50 and 250Hz were correlated with raw ERG signals at 1ms intervals. The amplitude of the correlation at each time and frequency was given by the modulus of the complex wavelet response. Candidate OPs were identified as local peaks within 10% of the maximum amplitude. As flash exposure increased, the amplitude of the OP response increased, the peak OP occurred earlier, and the peak OP frequency increased. OPs at brighter flashes clustered into two groups, peaking at 50ms in the 70 and 130Hz band for moderate intensities, and peaking at 20ms in the 70Hz band and 50ms in the 120Hz band for the highest intensities (>0logcdsm(-2)). These dynamics agree with physiological, pharmacological and clinical studies that suggest several distinct neural mechanisms contribute to OPs. Wavelet analysis reveals important dynamics in OP data that are not evident with traditional analytical approaches.

摘要

我们使用连续复 Morlet 小波变换对大鼠视网膜电图(ERG)的振荡电位(OPs)动力学进行了表征。从五只麻醉(氯胺酮:赛拉嗪,60:5mg/kg)的成年 Long-Evans 大鼠(10 - 12 周龄)记录暗适应(>12 小时)全视野 ERG 反应。在全视野中,针对短暂 LED 闪光(1 - 4ms),在 -4.2 至 1.58logcdsm(-2) 的曝光范围内获得了五次反应。信号在 0.3 - 1kHz 的带宽内记录,并以 10kHz 进行数字化。频率在 50 至 250Hz 之间的 Morlet 小波以 1ms 的间隔与原始 ERG 信号相关。每个时间和频率处的相关幅度由复小波响应的模量给出。候选 OP 被识别为最大幅度 10% 以内的局部峰值。随着闪光曝光增加,OP 反应的幅度增加,OP 峰值出现得更早,并且 OP 峰值频率增加。较亮闪光下的 OP 聚为两组,中等强度时在 70 和 130Hz 频段于 50ms 达到峰值,最高强度(>0logcdsm(-2))时在 70Hz 频段于 20ms 达到峰值,在 120Hz 频段于 50ms 达到峰值。这些动力学与生理、药理和临床研究一致,这些研究表明几种不同的神经机制对 OP 有贡献。小波分析揭示了 OP 数据中传统分析方法不明显的重要动力学。

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