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通过脑代数证明功能磁共振成像视觉表征中的组合性。

Evidence for compositionality in fMRI visual representations via Brain Algebra.

作者信息

Ferrante Matteo, Boccato Tommaso, Toschi Nicola, VanRullen Rufin

机构信息

Department of Biomedicine and Prevention, University of Rome, Tor Vergata (IT), Roma, Italy.

Martinos Center For Biomedical Imaging, MGH and Harvard Medical School (USA), Charlestown, USA.

出版信息

Commun Biol. 2025 Aug 22;8(1):1263. doi: 10.1038/s42003-025-08706-4.

Abstract

Electrophysiological and neuroimaging studies have revealed how the brain encodes various visual categories and concepts. An open question is how combinations of multiple visual concepts are represented in terms of the component brain patterns: are brain responses to individual concepts composed according to algebraic rules? To explore this, we generated "conceptual perturbations" in neural space by averaging fMRI responses to images with a shared concept (e.g., "winter" or "summer"). After thresholding to ensure specificity, we applied these perturbations to the neural pattern associated with a base image, forming new brain patterns that incorporate the added concept. These modified brain patterns were then decoded into images using a pretrained fMRI-to-image decoding model. Qualitative and quantitative inspection of the resulting images provides insight into how the brain might combine visual concepts. For example, adding a "winter" perturbation to the brain pattern of a man on a skateboard yields a new pattern representing a man on a snowboard in a winter scene-even when the perturbation modifies only a small subset of voxels. Our findings reveal that compositional processes in neural representations may lead to predictable perceptual outcomes, as interpreted by our decoding model. This suggests that the brain's combinatory encoding of concepts may follow a systematic, algebraic-like process-what we term "brain algebra." Although our study is model-driven, it opens avenues for future empirical work into the mechanisms of compositionality in the brain.

摘要

电生理和神经影像学研究揭示了大脑如何编码各种视觉类别和概念。一个悬而未决的问题是,多个视觉概念的组合是如何根据大脑组成模式来表征的:大脑对各个概念的反应是按照代数规则组合而成的吗?为了探究这一点,我们通过对具有共同概念(如“冬天”或“夏天”)的图像的功能磁共振成像(fMRI)反应进行平均,在神经空间中生成了“概念扰动”。在进行阈值处理以确保特异性之后,我们将这些扰动应用于与基础图像相关的神经模式,形成包含添加概念的新大脑模式。然后使用预训练的fMRI到图像解码模型将这些修改后的大脑模式解码为图像。对所得图像的定性和定量检查为大脑如何组合视觉概念提供了见解。例如,在滑板上男子的大脑模式中添加“冬天”扰动会产生一个新的模式,代表冬季场景中滑雪板上的男子——即使该扰动仅修改了一小部分体素。我们的研究结果表明,神经表征中的组合过程可能会导致可预测的感知结果,正如我们的解码模型所解释的那样。这表明大脑对概念的组合编码可能遵循一个系统的、类似代数的过程——我们称之为“大脑代数”。尽管我们的研究是由模型驱动的,但它为未来关于大脑中组合性机制的实证研究开辟了道路。

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