Sato Takaaki, Kajiwara Riichi, Takashima Ichiro, Iijima Toshio
Biomedical Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), Ikeda 563-8577, Japan.
School of Science and Technology, Meiji University, Kawasaki 214-8571, Japan.
Brain Res. 2016 Apr 1;1636:107-117. doi: 10.1016/j.brainres.2016.01.054. Epub 2016 Feb 6.
Quantifying similarities and differences between neural response patterns is an important step in understanding neural coding in sensory systems. It is difficult, however, to compare the degree of similarity among transient oscillatory responses. We developed a novel method of wavelet correlation analysis for quantifying similarity between transient oscillatory responses, and tested the method with olfactory cortical responses. In the anterior piriform cortex (aPC), the largest area of the primary olfactory cortex, odors induce inhibitory activities followed by transient oscillatory local field potentials (osci-LFPs). Qualitatively, the resulting time courses of osci-LFPs for identical odors were modestly different. We then compared several methods for quantifying the similarity between osci-LFPs for identical or different odors. Using fast Fourier transform band-pass filters, a conventional method demonstrated high correlations of the 0-2Hz components for both identical and different odors. None of the conventional methods tested demonstrated a clear correlation between osci-LFPs. However, wavelet correlation analysis resolved a stimulus dependency of 2-45Hz osci-LFPs in the aPC output layer, and produced experience-dependent high correlations in the input layer between some of the identical or different odors. These results suggest that redundancy in the neural representation of sensory information may change in the aPC. This wavelet correlation analysis may be useful for quantifying the similarities of transient oscillatory neural responses.
量化神经反应模式之间的异同是理解感觉系统神经编码的重要一步。然而,比较瞬态振荡反应之间的相似程度却很困难。我们开发了一种用于量化瞬态振荡反应之间相似性的小波相关分析新方法,并用嗅觉皮层反应对该方法进行了测试。在初级嗅觉皮层最大的区域——前梨状皮层(aPC)中,气味会诱发抑制性活动,随后是瞬态振荡局部场电位(osci-LFP)。定性地说,相同气味产生的osci-LFP时间进程略有不同。然后,我们比较了几种量化相同或不同气味的osci-LFP之间相似性的方法。使用快速傅里叶变换带通滤波器,一种传统方法显示相同和不同气味的0-2Hz成分都具有高度相关性。所测试的传统方法均未显示出osci-LFP之间有明显的相关性。然而,小波相关分析解决了aPC输出层中2-45Hz osci-LFP的刺激依赖性,并在输入层中产生了一些相同或不同气味之间依赖于经验的高度相关性。这些结果表明,感觉信息神经表征中的冗余可能在aPC中发生变化。这种小波相关分析可能有助于量化瞬态振荡神经反应的相似性。