Center for Cognitive Sciences, Sirius University of Science and Technology, Sochi, Russia.
Center for Bioelectric Interfaces, National Research University "Higher School of Economics", Moscow, Russia.
PLoS One. 2023 Aug 11;18(8):e0289964. doi: 10.1371/journal.pone.0289964. eCollection 2023.
Our study describes the effects of sensory tetanization on neurophysiological and behavioral measures in humans linking cellular studies of long-term potentiation with high-level brain processes. Rapid (every 75ms) presentation of pure tone (1020 Hz, 50ms) for 2 minutes was preceded and followed by oddball blocks that contained the same stimulus presented as deviant (probability of 5-10%) interspersed with standard (80-90%) and deviant tones (5-10%) of adjacent frequencies (1000 and 980Hz, respectively). Mismatch negativity (MMN) component in response to tetanized tone (1020Hz), while being similar to MMN for non-tetanized tone before tetanization, became larger than that after tetanization, pointing to the increase in cortical differentiation of these tones. However, this differentiation was partially due to the MMN decrease after tetanization for tones adjacent to tetanized frequency, suggesting the influence of lateral inhibition to this effect. Although MMN correlated with tone discriminability in a psychophysical task, the behavioral improvement after tetanization was not statistically detectable. To conclude, short-term auditory tetanization affects cortical representation of tones that are not limited to the tetanized stimuli.
我们的研究描述了感觉重复刺激对人类神经生理和行为测量的影响,将长时程增强的细胞研究与高级大脑过程联系起来。在 2 分钟内快速(每 75ms)呈现纯音(1020Hz,50ms),之前和之后是奇数块,其中包含相同的刺激呈现为偏差(概率为 5-10%),与标准(80-90%)和偏差音(5-10%)交错,相邻频率(分别为 1000 和 980Hz)。重复刺激音(1020Hz)诱发的失匹配负波(MMN)成分与重复刺激前非重复刺激音的 MMN相似,但比重复刺激后更大,表明这些音的皮质分化增加。然而,这种分化部分是由于重复刺激后与重复刺激频率相邻的音的 MMN 减小,表明侧向抑制对这种效应的影响。尽管 MMN 与音辨别力在心理物理任务中相关,但重复刺激后的行为改善在统计学上无法检测到。总之,短期听觉重复刺激会影响未受重复刺激限制的音的皮质表示。