Visual mental imagery: Evidence for a heterarchical neural architecture

IF 13.7 1区 生物学 Q1 BIOLOGY Physics of Life Reviews Pub Date : 2023-12-27 DOI:10.1016/j.plrev.2023.12.012
Alfredo Spagna , Zoe Heidenry , Michelle Miselevich , Chloe Lambert , Benjamin E. Eisenstadt , Laura Tremblay , Zixin Liu , Jianghao Liu , Paolo Bartolomeo
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Abstract

Theories of Visual Mental Imagery (VMI) emphasize the processes of retrieval, modification, and recombination of sensory information from long-term memory. Yet, only few studies have focused on the behavioral mechanisms and neural correlates supporting VMI of stimuli from different semantic domains. Therefore, we currently have a limited understanding of how the brain generates and maintains mental representations of colors, faces, shapes - to name a few. Such an undetermined scenario renders unclear the organizational structure of neural circuits supporting VMI, including the role of the early visual cortex. We aimed to fill this gap by reviewing the scientific literature of five semantic domains: visuospatial, face, colors, shapes, and letters imagery. Linking theory to evidence from over 60 different experimental designs, this review highlights three main points. First, there is no consistent activity in the early visual cortex across all VMI domains, contrary to the prediction of the dominant model. Second, there is consistent activity of the frontoparietal networks and the left hemisphere's fusiform gyrus during voluntary VMI irrespective of the semantic domain investigated. We propose that these structures are part of a domain-general VMI sub-network. Third, domain-specific information engages specific regions of the ventral and dorsal cortical visual pathways. These regions partly overlap with those found in visual perception studies (e.g., fusiform face area for faces imagery; lingual gyrus for color imagery). Altogether, the reviewed evidence suggests the existence of domain-general and domain-specific mechanisms of VMI selectively engaged by stimulus-specific properties (e.g., colors or faces). These mechanisms would be supported by an organizational structure mixing vertical and horizontal connections (heterarchy) between sub-networks for specific stimulus domains. Such a heterarchical organization of VMI makes different predictions from current models of VMI as reversed perception. Our conclusions set the stage for future research, which should aim to characterize the spatiotemporal dynamics and interactions among key regions of this architecture giving rise to visual mental images.

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视觉心理意象:异构神经结构的证据
视觉心理意象(VMI)理论强调从长期记忆中检索、修改和重组感觉信息的过程。然而,关于支持不同语义领域刺激的视觉心理意象的行为机制和神经相关性的研究却寥寥无几。因此,我们目前对大脑如何生成和维持颜色、面孔、形状等心理表征的了解十分有限。这种未确定的情况使我们对支持视觉表征的神经回路的组织结构,包括早期视觉皮层的作用不甚了解。我们旨在通过回顾五个语义领域的科学文献来填补这一空白:视觉空间、面部、颜色、形状和字母意象。本综述将理论与来自 60 多个不同实验设计的证据联系起来,强调了三个要点。首先,与主导模型的预测相反,早期视觉皮层在所有 VMI 领域都没有一致的活动。其次,无论研究的是哪个语义域,在自主 VMI 过程中,顶叶前部网络和左半球纺锤形回的活动都是一致的。我们认为这些结构是通用语域 VMI 子网络的一部分。第三,特定领域的信息涉及大脑皮层腹侧和背侧视觉通路的特定区域。这些区域与视觉感知研究中发现的区域部分重叠(例如,用于人脸意象的纺锤形面区;用于颜色意象的舌回)。总之,综述的证据表明,存在着由特定刺激属性(如颜色或面孔)选择性参与的通用领域和特定领域的视知觉机制。这些机制将由特定刺激领域子网络之间混合垂直和水平连接(异构)的组织结构来支持。VMI的这种异构组织结构与目前作为反向感知的VMI模型有着不同的预测。我们的结论为未来的研究奠定了基础,未来研究的目标应该是描述产生视觉心理图像的这一结构的时空动态和关键区域之间的相互作用。
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来源期刊
Physics of Life Reviews
Physics of Life Reviews 生物-生物物理
CiteScore
20.30
自引率
14.50%
发文量
52
审稿时长
8 days
期刊介绍: Physics of Life Reviews, published quarterly, is an international journal dedicated to review articles on the physics of living systems, complex phenomena in biological systems, and related fields including artificial life, robotics, mathematical bio-semiotics, and artificial intelligent systems. Serving as a unifying force across disciplines, the journal explores living systems comprehensively—from molecules to populations, genetics to mind, and artificial systems modeling these phenomena. Inviting reviews from actively engaged researchers, the journal seeks broad, critical, and accessible contributions that address recent progress and sometimes controversial accounts in the field.
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