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Motion Matters: Motion-guided Modulation Network for Skeleton-based Micro-Action Recognition

Jihao Gu, Kun Li, Fei Wang, Yanyan Wei, Zhiliang Wu, Hehe Fan, Meng Wang

20259 citationsDOI

Abstract

Micro-Actions (MAs) are an important form of non-verbal communication in social interactions, with potential applications in human emotional analysis. However, existing methods in Micro-Action Recognition often overlook the inherent subtle changes in MAs, which limits the accuracy of distinguishing MAs with subtle changes. To address this issue, we present a novel Motion-guided Modulation Network (MMN) that implicitly captures and modulates subtle motion cues to enhance spatial-temporal representation learning. Specifically, we introduce a Motion-guided Skeletal Modulation module (MSM) to inject motion cues at the skeletal level, acting as a control signal to guide spatial representation modeling. In parallel, we design a Motion-guided Temporal Modulation module (MTM) to incorporate motion information at the frame level, facilitating the modeling of holistic motion patterns in micro-actions. Finally, we propose a motion consistency learning strategy to aggregate the motion cues from multi-scale features for micro-action classification. Experimental results on the Micro-Action 52 and iMiGUE datasets demonstrate that MMN achieves state-of-the-art performance in skeleton-based micro-action recognition, underscoring the importance of explicitly modeling subtle motion cues. The code will be available at https://github.com/momiji-bit/MMN

Topics & Concepts

Motion (physics)Computer scienceRepresentation (politics)Artificial intelligenceComputer visionModulation (music)Consistency (knowledge bases)Code (set theory)Dynamics (music)Biological motionFrame (networking)Speech recognitionAggregate (composite)Pattern recognition (psychology)SIGNAL (programming language)Motion estimationWaveformMotion perceptionHuman motionControl (management)Artificial neural networkEncoding (memory)Motion controlFrequency modulationHuman Pose and Action RecognitionGait Recognition and AnalysisHand Gesture Recognition Systems
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