Institute for Brain, Cognition and Behavior (IR3C), University of Barcelona, Catalonia, Spain.
PLoS One. 2012;7(8):e43604. doi: 10.1371/journal.pone.0043604. Epub 2012 Aug 20.
Auditory deviance detection in humans is indexed by the mismatch negativity (MMN), a component of the auditory evoked potential (AEP) of the electroencephalogram (EEG) occurring at a latency of 100-250 ms after stimulus onset. However, by using classic oddball paradigms, differential responses to regularity violations of simple auditory features have been found at the level of the middle latency response (MLR) of the AEP occurring within the first 50 ms after stimulus (deviation) onset. These findings suggest the existence of fast deviance detection mechanisms for simple feature changes, but it is not clear whether deviance detection among more complex acoustic regularities could be observed at such early latencies. To test this, we examined the pre-attentive processing of rare stimulus repetitions in a sequence of tones alternating in frequency in both long and middle latency ranges. Additionally, we introduced occasional changes in the interaural time difference (ITD), so that a simple-feature regularity could be examined in the same paradigm. MMN was obtained for both repetition and ITD deviants, occurring at 150 ms and 100 ms after stimulus onset respectively. At the level of the MLR, a difference was observed between standards and ITD deviants at the Na component (20-30 ms after stimulus onset), for 800 Hz tones, but not for repetition deviants. These findings suggest that detection mechanisms for deviants to simple regularities, but not to more complex regularities, are already activated in the MLR range, supporting the view that the auditory deviance detection system is organized in a hierarchical manner.
人类的听觉偏差检测由失匹配负波 (MMN) 索引,这是脑电图 (EEG) 听觉诱发电位 (AEP) 的一个成分,在刺激开始后 100-250 毫秒处出现。然而,通过使用经典的Oddball 范式,在 AEP 的中潜伏期反应 (MLR) 水平上发现了对简单听觉特征的规则违反的差异反应,该反应在刺激(偏差)开始后 50 毫秒内发生。这些发现表明存在用于简单特征变化的快速偏差检测机制,但尚不清楚是否可以在如此早的潜伏期观察到更复杂的声音规则之间的偏差检测。为了检验这一点,我们在频率交替的音调序列中检查了在长和中潜伏期范围内的稀有刺激重复的前注意处理。此外,我们引入了耳间时间差 (ITD) 的偶尔变化,以便可以在相同的范式中检查简单特征的规则。对于重复和 ITD 偏差,均获得了 MMN,分别在刺激开始后 150 毫秒和 100 毫秒处出现。在 MLR 水平上,对于 800 Hz 音调,在 Na 成分(刺激开始后 20-30 毫秒)处观察到标准与 ITD 偏差之间的差异,但对于重复偏差则没有观察到差异。这些发现表明,用于检测简单规则的偏差的检测机制,但不是用于更复杂规则的偏差检测机制,已经在 MLR 范围内被激活,支持听觉偏差检测系统以分层方式组织的观点。