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Mingyi Huang

4 accepted papers

2025

Emergent Orientation Maps —— Mechanisms, Coding Efficiency and Robustness

ICLR 2025spotlight

Extensive experimental studies have shown that in lower mammals, neuronal orientation preference in the primary visual cortex is organized in disordered "salt-and-pepper" organizations. In contrast, higher-order mammals display a continuous variation in orientation preference, forming pinwheel-like…

Cited by 0SourcePDFScholar
2025

The Dual Nature of Plasticity Loss in Deep Continual Learning: Dissection and Mitigation

NeurIPS 2025poster

Loss of plasticity (LoP) is the primary cause of cognitive decline in normal aging brains next to cell loss. Recent works show that similar LoP also plagues neural networks during deep continual learning (DCL). While it has been shown that random perturbations of learned weights can alleviate LoP,…

Cited by 0SourceScholar
2024

Visual Pinwheel Centers Act as Geometric Saliency Detectors

NeurIPS 2024poster

During natural evolution, the primary visual cortex (V1) of lower mammals typically forms salt-and-pepper organizations, while higher mammals and primates develop pinwheel structures with distinct topological properties. Despite the general belief that V1 neurons primarily serve as edge detectors, t…

Cited by 1SourcePDFScholar
2023

Hierarchical Decomposition of Prompt-Based Continual Learning: Rethinking Obscured Sub-optimality

NeurIPS 2023spotlight

Prompt-based continual learning is an emerging direction in leveraging pre-trained knowledge for downstream continual learning, and has almost reached the performance pinnacle under supervised pre-training. However, our empirical research reveals that the current strategies fall short of their full…