Engell Alva, Junghöfer Markus, Stein Alwina, Lau Pia, Wunderlich Robert, Wollbrink Andreas, Pantev Christo
Institute for Biomagnetism and Biosignalanalysis, University Hospital Muenster, Muenster, Germany.
Institute for Medical Psychology and Systems Neuroscience, University of Muenster, Muenster, Germany.
PLoS One. 2016 Feb 22;11(2):e0149933. doi: 10.1371/journal.pone.0149933. eCollection 2016.
Reduced neural processing of a tone is observed when it is presented after a sound whose spectral range closely frames the frequency of the tone. This observation might be explained by the mechanism of lateral inhibition (LI) due to inhibitory interneurons in the auditory system. So far, several characteristics of bottom up influences on LI have been identified, while the influence of top-down processes such as directed attention on LI has not been investigated. Hence, the study at hand aims at investigating the modulatory effects of focused attention on LI in the human auditory cortex. In the magnetoencephalograph, we present two types of masking sounds (white noise vs. withe noise passing through a notch filter centered at a specific frequency), followed by a test tone with a frequency corresponding to the center-frequency of the notch filter. Simultaneously, subjects were presented with visual input on a screen. To modulate the focus of attention, subjects were instructed to concentrate either on the auditory input or the visual stimuli. More specific, on one half of the trials, subjects were instructed to detect small deviations in loudness in the masking sounds while on the other half of the trials subjects were asked to detect target stimuli on the screen. The results revealed a reduction in neural activation due to LI, which was larger during auditory compared to visual focused attention. Attentional modulations of LI were observed in two post-N1m time intervals. These findings underline the robustness of reduced neural activation due to LI in the auditory cortex and point towards the important role of attention on the modulation of this mechanism in more evaluative processing stages.
当一个音调在频谱范围紧密围绕该音调频率的声音之后呈现时,会观察到其神经处理过程减弱。这一观察结果可能由听觉系统中抑制性中间神经元导致的侧向抑制(LI)机制来解释。到目前为止,已经确定了自下而上对LI影响的几个特征,而诸如定向注意等自上而下过程对LI的影响尚未得到研究。因此,手头的这项研究旨在探究集中注意对人类听觉皮层中LI的调节作用。在脑磁图中,我们呈现两种类型的掩蔽声音(白噪声与通过以特定频率为中心的陷波滤波器的白噪声),随后是一个频率与陷波滤波器中心频率相对应的测试音调。同时,在屏幕上向受试者呈现视觉输入。为了调节注意焦点,受试者被指示要么专注于听觉输入,要么专注于视觉刺激。更具体地说,在一半的试验中,受试者被指示检测掩蔽声音中响度的微小偏差,而在另一半试验中,受试者被要求检测屏幕上的目标刺激。结果显示,由于LI导致的神经激活减少,与视觉集中注意相比,在听觉集中注意期间这种减少更大。在N1m之后的两个时间间隔中观察到了LI的注意调节。这些发现强调了听觉皮层中由于LI导致的神经激活减少的稳健性,并指出了注意在更具评估性的处理阶段对这种机制调节的重要作用。