arXiv:2606.26279cs.CVq-bio.NC2026-06

用多源迁移学习揭示大脑任务间的复杂依赖关系

Beyond Single-Source Cognitive Taskonomy:Multi-Source Task Relations through fMRI Transfer Learning

论文配图:Beyond Single-Source Cognitive Taskonomy:Multi-Source Task Relations through fMRI Transfer Learning
图 1 · 摘自论文原文
  • 通过多源迁移学习分析23种任务状态间的转移关系
  • 发现工作记忆任务在不同预算下均优先获得直接监督
  • 揭示跨范式运动集群的局限性与工作记忆的核心地位

认知任务由共享与特异的神经过程组织。基于掩码fMRI重建的自监督目标可用于量化任务状态间的迁移关系,但现有方法主要关注单一源到单目标的迁移。本文将fMRI认知任务体系从单源扩展至多源迁移,涵盖23个人类连接组计划任务状态,并使用布尔整数规划(BIP)分析预算约束下的任务分配。训练了1,127个特定任务与迁移模型。单源迁移具有方向性与范式结构:运动状态在运动范式内迁移良好,但对多数非运动目标支持有限,符合共享感觉运动执行系统与效应器特异性表征。多源迁移依赖于源集构成,表明许多对一的任务关系无法仅通过成对任务体系捕捉。在不同监督预算下,BIP反复将直接监督分配给多个0-背和2-背工作记忆状态,尽管这些状态并非始终为最强单源。该模式可能反映工作记忆任务中感知、注意与执行过程的整合。研究结果揭示跨范式运动簇的限制性及工作记忆状态在全局分配目标下的高优先级。本研究将基于重建的fMRI任务体系从一对一迁移扩展至多对一关系与预算约束的任务依赖。

原文摘要 · Abstract (English)

Cognitive tasks are organized by shared and specialized neural processes. Masked fMRI reconstruction provides a common self-supervised objective for quantifying transfer relations among task states, but existing reconstruction-based taskonomies mainly study one-to-one transfer from a single source task to a target. Here, we extend an fMRI cognitive taskonomy from single-source to multi-source transfer across 23 Human Connectome Project task states and use Boolean Integer Programming (BIP) to analyze budget-constrained task allocation. We train 1,127 task-specific and transfer models. Single-source transfer is directional and paradigm structured: motor states transfer well within the motor paradigm but provide limited support to most non-motor targets, consistent with a shared sensorimotor execution system and effector-specific representations. Multi-source transfer depends on the composition of the source set, suggesting that many-to-one task relations are not fully captured by pairwise taskonomy alone. Across supervision budgets, BIP repeatedly allocates direct supervision to several 0-back and 2-back working-memory states, although these states are not consistently the strongest individual sources. This pattern may reflect the integration of perceptual, attentional, and executive processes in working-memory tasks. Together, these findings reveal a cross-paradigm-limited motor cluster and working-memory states with high priority under the specified global allocation objective. Our study extends reconstruction-based fMRI taskonomy from one-to-one transfer to many-to-one task relations and budget-constrained task dependencies.

fMRI任务体系迁移学习脑科学

Thank you to arXiv for use of its open access interoperability. PaperDance 不是 arXiv 官方产品;中文卡片由大模型生成,请以原文为准。