Abstract, Align, Predict: Zero-Shot Stance Detection via Cognitive Inductive Reasoning
Abstract, Align, Predict: Zero-Shot Stance Detection via Cognitive Inductive Reasoning
Zero-shot stance detection (ZSSD) aims to identify the stance of text toward previously unseen targets, a setting where conventional supervised models often fail due to reliance on labeled data and shallow lexical cues. Inspired by human cognitive reasoning, we propose the Cognitive Inductive Reasoning Framework (CIRF), which abstracts transferable reasoning schemas from unlabeled text and encodes them as concept-level logic. To integrate these schemas with input arguments, we introduce a Schema-Enhanced Graph Kernel Model (SEGKM) that dynamically aligns local and global reasoning structures. Experiments on SemEval-2016, VAST, and COVID-19-Stance benchmarks show that CIRF establishes new state-of-the-art results, outperforming strong ZSSD baselines by 1.0, 4.5, and 3.3 percentage points in macro-F1, respectively, and achieving comparable accuracy with 70\% fewer labeled examples. We will release the full code upon publication.
Jun Ma、Fuqiang Niu、Dong Li、Jinzhou Cao、Genan Dai、Bowen Zhang
计算技术、计算机技术
Jun Ma,Fuqiang Niu,Dong Li,Jinzhou Cao,Genan Dai,Bowen Zhang.Abstract, Align, Predict: Zero-Shot Stance Detection via Cognitive Inductive Reasoning[EB/OL].(2025-06-16)[2025-07-02].https://arxiv.org/abs/2506.13470.点此复制
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