Comparing auditory and visual aspects of multisensory working memory using bimodally matched feature patterns.

IF 1.7 4区 医学 Q4 NEUROSCIENCES Experimental Brain Research Pub Date : 2024-12-31 DOI:10.1007/s00221-024-06991-9
Işıl Uluç, Tori Turpin, Parker Kotlarz, Kaisu Lankinen, Fahimeh Mamashli, Jyrki Ahveninen
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Abstract

Working memory (WM) reflects the transient maintenance of information in the absence of external input, which can be attained via multiple senses separately or simultaneously. Pertaining to WM, the prevailing literature suggests the dominance of vision over other sensory systems. However, this imbalance may be stemming from challenges in finding comparable stimuli across modalities. Here, we addressed this problem by using a balanced multisensory retro-cue WM design, which employed combinations of auditory (ripple sounds) and visuospatial (Gabor patches) patterns, adjusted relative to each participant's discrimination ability. In three separate experiments, the participant was asked to determine whether the (retro-cued) auditory and/or visual items maintained in WM matched or mismatched the subsequent probe stimulus. In Experiment 1, all stimuli were audiovisual, and the probes were either fully mismatching, only partially mismatching, or fully matching the memorized item. Experiment 2 was otherwise the same as Experiment 1, but the probes were unimodal. In Experiment 3, the participant was cued to maintain only the auditory or visual aspect of an audiovisual item pair. In Experiments 1 and 3, the participant's matching performance was significantly more accurate for the auditory than visual attributes of probes. When the perceptual and task demands are bimodally equated, auditory attributes can be matched to multisensory items in WM at least as accurately as, if not more precisely than, their visual counterparts.

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使用双峰匹配的特征模式比较多感觉工作记忆的听觉和视觉方面。
工作记忆(Working memory, WM)反映了在没有外部输入的情况下对信息的短暂维持,它可以通过多个感官分别或同时获得。关于WM,主流文献认为视觉在其他感官系统中占主导地位。然而,这种不平衡可能源于寻找跨模式的可比刺激的挑战。在这里,我们通过使用平衡的多感官复古线索WM设计来解决这个问题,该设计采用了听觉(波纹声)和视觉空间(Gabor斑块)模式的组合,并根据每个参与者的辨别能力进行了调整。在三个独立的实验中,参与者被要求确定在WM中维持的(回溯线索)听觉和/或视觉项目是否与随后的探针刺激匹配或不匹配。在实验1中,所有刺激均为视听刺激,探针与记忆项目有完全不匹配、部分不匹配和完全不匹配。实验2与实验1相同,但探针是单峰的。在实验3中,参与者被提示只保持视听项目对的听觉或视觉方面。在实验1和实验3中,被试对探针的听觉属性的匹配比视觉属性的匹配更准确。当知觉需求和任务需求是双模相等时,听觉属性可以与WM中的多感官项目相匹配,至少与视觉匹配一样准确,如果不是更精确的话。
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来源期刊
CiteScore
3.60
自引率
5.00%
发文量
228
审稿时长
1 months
期刊介绍: Founded in 1966, Experimental Brain Research publishes original contributions on many aspects of experimental research of the central and peripheral nervous system. The focus is on molecular, physiology, behavior, neurochemistry, developmental, cellular and molecular neurobiology, and experimental pathology relevant to general problems of cerebral function. The journal publishes original papers, reviews, and mini-reviews.
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