Korczyk Maksymilian, Zimmermann Maria, Bola Łukasz, Szwed Marcin
Intitute of Psychology, Jagiellonian University, Kraków, Poland.
Institute of Psychology, Polish Academy of Sciences, Warszawa, Poland.
Front Psychol. 2022 Oct 20;13:1036669. doi: 10.3389/fpsyg.2022.1036669. eCollection 2022.
Training can influence behavioral performance and lead to brain reorganization. In particular, training in one modality, for example, auditory, can improve performance in another modality, for example, visual. Previous research suggests that one of the mechanisms behind this phenomenon could be the cross-modal recruitment of the sensory areas, for example, the auditory cortex. Studying expert musicians offers a chance to explore this process. Rhythm is an aspect of music that can be presented in various modalities. We designed an fMRI experiment in which professional pianists and non-musicians discriminated between two sequences of rhythms presented auditorily (series of sounds) or visually (series of flashes). Behavioral results showed that musicians performed in both visual and auditory rhythmic tasks better than non-musicians. We found no significant between-group differences in fMRI activations within the auditory cortex. However, we observed that musicians had increased activation in the right Inferior Parietal Lobe when compared to non-musicians. We conclude that the musicians' superior visual rhythm discrimination is not related to cross-modal recruitment of the auditory cortex; instead, it could be related to activation in higher-level, multimodal areas in the cortex.
训练可以影响行为表现并导致大脑重组。特别是,在一种模态(例如听觉)下的训练可以提高在另一种模态(例如视觉)下的表现。先前的研究表明,这种现象背后的机制之一可能是感觉区域的跨模态募集,例如听觉皮层。研究专业音乐家为探索这一过程提供了机会。节奏是音乐的一个方面,可以以各种模态呈现。我们设计了一项功能磁共振成像(fMRI)实验,其中专业钢琴家和非音乐家要区分以听觉方式呈现(一系列声音)或视觉方式呈现(一系列闪光)的两种节奏序列。行为结果表明,音乐家在视觉和听觉节奏任务中的表现均优于非音乐家。我们发现,在听觉皮层内,功能磁共振成像激活的组间差异不显著。然而,我们观察到,与非音乐家相比,音乐家右侧顶下小叶的激活增加。我们得出结论,音乐家卓越的视觉节奏辨别能力与听觉皮层的跨模态募集无关;相反,它可能与皮层中更高层次的多模态区域的激活有关。