Yakunina Natalia, Tae Woo Suk, Lee Kang Uk, Kim Sam Soo, Nam Eui-Cheol
Department of Otolaryngology, Kangwon National University, School of Medicine, Chuncheon, Republic of Korea ; Neuroscience Research Institute, Kangwon National University, School of Medicine, Chuncheon, Republic of Korea.
PLoS One. 2013 Jun 18;8(6):e66424. doi: 10.1371/journal.pone.0066424. Print 2013.
Although auditory processing has been widely studied with conventional parametric methods, there have been a limited number of independent component analysis (ICA) applications in this area. The purpose of this study was to examine spatiotemporal behavior of brain networks in response to passive auditory stimulation using ICA. Continuous broadband noise was presented binaurally to 19 subjects with normal hearing. ICA was performed to segregate spatial networks, which were subsequently classified according to their temporal relation to the stimulus using power spectrum analysis. Classification of separated networks resulted in 3 stimulus-activated, 9 stimulus-deactivated, 2 stimulus-neutral (stimulus-dependent but not correlated with the stimulation timing), and 2 stimulus-unrelated (fluctuations that did not follow the stimulus cycles) components. As a result of such classification, spatiotemporal subdivisions were observed in a number of cortical structures, namely auditory, cingulate, and sensorimotor cortices, where parts of the same cortical network responded to the stimulus with different temporal patterns. The majority of the classified networks seemed to comprise subparts of the known resting-state networks (RSNs); however, they displayed different temporal behavior in response to the auditory stimulus, indicating stimulus-dependent temporal segregation of RSNs. Only one of nine deactivated networks coincided with the "classic" default-mode network, suggesting the existence of a stimulus-dependent default-mode network, different from that commonly accepted.
尽管听觉处理已经通过传统的参数方法得到了广泛研究,但在这一领域中独立成分分析(ICA)的应用却为数不多。本研究的目的是使用ICA来检查大脑网络在被动听觉刺激下的时空行为。向19名听力正常的受试者双耳呈现连续宽带噪声。进行ICA以分离空间网络,随后使用功率谱分析根据它们与刺激的时间关系对其进行分类。对分离出的网络进行分类后,得到了3个刺激激活、9个刺激失活、2个刺激中性(与刺激相关但与刺激时间无关)和2个刺激无关(不跟随刺激周期波动)的成分。由于这种分类,在一些皮质结构中观察到了时空细分,即听觉、扣带回和感觉运动皮质,其中同一皮质网络的部分对刺激以不同的时间模式做出反应。大多数分类网络似乎包含已知静息态网络(RSN)的子部分;然而,它们在对听觉刺激的反应中表现出不同的时间行为,表明RSN存在刺激依赖性的时间分离。九个失活网络中只有一个与“经典”默认模式网络重合,这表明存在一种与通常所接受的不同的刺激依赖性默认模式网络。