Alho K, Woods D L, Algazi A, Näätänen R
Department of Neurology, UC Davis, VA Medical Center, Martinez 94553.
Electroencephalogr Clin Neurophysiol. 1992 May;82(5):356-68. doi: 10.1016/0013-4694(92)90005-3.
The effect of processing load on event-related brain potentials (ERPs) was investigated in an intermodal selective attention task in which subjects attended selectively to auditory or visual stimuli. Processing load was manipulated by requiring subjects to detect either difficult-to-detect (deviant) or easy-to-detect (DEVIANT) targets in separate blocks of trials. Attention to auditory stimuli was associated with negative (Nda, 90-170 msec) and positive (Pda, 190-270 msec) enhancements in the ERPs to auditory stimuli. The Nda increased in amplitude with increasing processing load. Deviant auditory stimuli occurring among auditory standard stimuli elicited frontally distributed mismatch negativities (MMNs). The MMN persisted during visual attention and was unaffected by visual processing load. However, the MMN to deviants but not DEVIANTS was enhanced in amplitude with auditory attention. Attention to visual stimuli resulted in positive (Pdv, latency 70-130 msec) and negative (Ndv, 170-270 msec) modulations of visual ERPs, that increased with increasing processing load. Prominent visual deviance-related negativities were observed at occipital and infero-temporal scalp sites (latencies 90-290 msec), but only to DEVIANT visual stimuli. The early MMN-like portion of the visual deviance-related negativity was independent of attention, with equal amplitudes during different auditory and visual conditions.
在一项多模态选择性注意任务中,研究了加工负荷对事件相关脑电位(ERP)的影响,在该任务中,受试者选择性地关注听觉或视觉刺激。通过要求受试者在不同的试验块中检测难以检测到的(异常)或易于检测到的(非异常)目标来操纵加工负荷。对听觉刺激的注意与听觉刺激的ERP中的负向增强(Nda,90 - 170毫秒)和正向增强(Pda,190 - 270毫秒)相关。Nda的振幅随着加工负荷的增加而增加。在听觉标准刺激中出现的异常听觉刺激引发了额叶分布的失配负波(MMN)。MMN在视觉注意期间持续存在,并且不受视觉加工负荷的影响。然而,对异常刺激而非非异常刺激的MMN在听觉注意时振幅增强。对视觉刺激的注意导致视觉ERP的正向调制(Pdv,潜伏期70 - 130毫秒)和负向调制(Ndv,170 - 270毫秒),且随着加工负荷的增加而增加。在枕叶和颞下头皮部位(潜伏期90 - 290毫秒)观察到明显的与视觉偏差相关的负波,但仅针对非异常视觉刺激。与视觉偏差相关的负波的早期类似MMN的部分与注意无关,在不同的听觉和视觉条件下振幅相等。