Spatio-Temporal Decoding of the Navon Task Challenges Rigid Hemispheric Asymmetries in Global-Local Processing.

IF 2.9 2区 心理学 Q2 NEUROSCIENCES
Tobias Hausinger, Patrick Reisinger, Nathan Weisz, Andrea Hansen, Ti-Anni Harris, Belinda Pletzer
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引用次数: 0

Abstract

Functional hemispheric asymmetries are considered a key factor in intra- and interindividual variability of global precedence effects. However, research in this area is permeated by a considerable number of inconsistent findings which may stem from significant methodological limitations. In pursuit of a more detailed model of global-local processing by combining both high temporal and spatial resolution, we employed Multivariate Pattern Analysis (MVPA) on Magnetoencephalography (MEG) recordings from 63 participants performing a divided visual field, divided attention Navon paradigm. The resulting decoding accuracies between various hierarchical letter forms and target levels were used to pinpoint potentially involved spatial networks and temporal processing sequences. Linear Discriminant Analysis (LDA) revealed temporal precedence of global over local letter form decoding accuracy peaks. Furthermore, searchlight analysis provided a nuanced spatial mapping that not only validated previously established core regions (lingual gyrus for local processing; inferior occipital gyrus for global processing) but also identified potential regions implicated in global-local integration. Yet, we observed substantial variation in lateralization patterns across our study sample, challenging the conventional assumption of right-hemispheric dominance for global and left-hemispheric dominance for local processing in the context of MVPA. Overall, our findings validate and broaden the scope of prior research by providing, for the first time, accurate temporal and spatial data on global-local processing from a single measurement. Moreover, we introduce interindividual variability in lateralization patterns as a potential factor contributing to past inconsistencies.

Navon任务的时空解码挑战了全局-局部加工中的刚性半球不对称。
功能性半球不对称被认为是整体优先效应的个体内部和个体间变异的关键因素。然而,这一领域的研究充斥着大量不一致的发现,这些发现可能源于重大的方法限制。为了通过结合高时间和空间分辨率来追求更详细的全局-局部处理模型,我们对63名参与者的脑磁图(MEG)记录进行了多变量模式分析(MVPA),这些参与者进行了分视野、分注意力的Navon范式。不同层次字母形式和目标水平之间的解码精度被用来确定潜在涉及的空间网络和时间处理序列。线性判别分析(LDA)揭示了全局字母格式译码精度峰值的时间优先性。此外,探照灯分析提供了细致入微的空间映射,不仅验证了先前建立的核心区域(用于局部处理的语回;枕下回负责全球处理),但也发现了涉及全球-局部整合的潜在区域。然而,在我们的研究样本中,我们观察到侧化模式的实质性变化,挑战了MVPA背景下右半球主导全局和左半球主导局部加工的传统假设。总的来说,我们的研究结果验证并扩大了先前研究的范围,首次从单一测量中提供了关于全球-局部处理的准确时空数据。此外,我们还介绍了侧化模式的个体间差异,这是导致过去不一致的潜在因素。
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来源期刊
Psychophysiology
Psychophysiology 医学-神经科学
CiteScore
6.80
自引率
8.10%
发文量
225
审稿时长
2 months
期刊介绍: Founded in 1964, Psychophysiology is the most established journal in the world specifically dedicated to the dissemination of psychophysiological science. The journal continues to play a key role in advancing human neuroscience in its many forms and methodologies (including central and peripheral measures), covering research on the interrelationships between the physiological and psychological aspects of brain and behavior. Typically, studies published in Psychophysiology include psychological independent variables and noninvasive physiological dependent variables (hemodynamic, optical, and electromagnetic brain imaging and/or peripheral measures such as respiratory sinus arrhythmia, electromyography, pupillography, and many others). The majority of studies published in the journal involve human participants, but work using animal models of such phenomena is occasionally published. Psychophysiology welcomes submissions on new theoretical, empirical, and methodological advances in: cognitive, affective, clinical and social neuroscience, psychopathology and psychiatry, health science and behavioral medicine, and biomedical engineering. The journal publishes theoretical papers, evaluative reviews of literature, empirical papers, and methodological papers, with submissions welcome from scientists in any fields mentioned above.
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