Felix Leonardo Bonato, Moraes José Elvano, Miranda de Sá Antonio Mauricio Ferreira Leite, Yehia Hani Camille, Moraes Márcio Flávio Dutra
Departamento de Engenharia Eletrônica, Universidade Federal de Minas Gerais, Minas Gerais, Brazil.
J Neurosci Methods. 2005 Jun 15;144(2):249-55. doi: 10.1016/j.jneumeth.2004.11.014. Epub 2005 Jan 7.
Local field potentials (LFP) are bioelectric signals recorded from the brain that reflect neural activity in a high temporal resolution. Separating background activity from that evoked by specific somato-sensory input is a matter of great clinical relevance in neurology. The coherence function is a spectral coefficient that can be used as a detector of periodic responses in noisy environments. Auditory steady-state responses to amplitude-modulated tones generate periodic responses in neural networks that may be accessed by means of coherence between the stimulation signal and the LFP recorded from the auditory pathway. Such signal processing methodology was applied in this work to evaluate in vivo, anaesthetized Wistar rats, activation of neural networks due to single carrier sound stimulation frequencies, as well as to evaluate the effect of different modulating tones in the evoked responses. Our results show that an inappropriate choice of sound stimuli modulating frequencies can compromise coherence analysis, e.g. misleading conclusions due to mathematical artefact of signal processing. Two modulating frequency correction protocols were used: nearest integer and nearest prime number. The nearest prime number correction was successful in avoiding spectral leakage in the coherence analysis of steady-state auditory response, as predicted by Monte Carlo simulations.
局部场电位(LFP)是从大脑记录的生物电信号,能以高时间分辨率反映神经活动。在神经病学中,将背景活动与特定体感输入诱发的活动区分开来具有重大临床意义。相干函数是一种频谱系数,可在噪声环境中用作周期性反应的检测器。对调幅音的听觉稳态反应在神经网络中产生周期性反应,可通过刺激信号与从听觉通路记录的LFP之间的相干性来获取。本研究采用这种信号处理方法,在体内对麻醉的Wistar大鼠进行评估,以研究单载波声音刺激频率引起的神经网络激活情况,以及评估不同调制音对诱发反应的影响。我们的结果表明,声音刺激调制频率选择不当会影响相干分析,例如由于信号处理的数学伪像导致得出误导性结论。使用了两种调制频率校正方案:最接近整数和最接近质数。如蒙特卡罗模拟所预测的,最接近质数校正成功避免了稳态听觉反应相干分析中的频谱泄漏。