Unleashing Temporal Capacity of Spiking Neural Networks through Spatiotemporal Separation

Fuente: arXiv
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Main Authors: Dong, Yiting, Yu, Zhaofei, Ding, Jianhao, Xu, Zijie, Huang, Tiejun
Format: Preprint
Published: 2025
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_version_ 1866914181973803008
author Dong, Yiting
Yu, Zhaofei
Ding, Jianhao
Xu, Zijie
Huang, Tiejun
author_facet Dong, Yiting
Yu, Zhaofei
Ding, Jianhao
Xu, Zijie
Huang, Tiejun
contents Spiking Neural Networks (SNNs) are considered naturally suited for temporal processing, with membrane potential propagation widely regarded as the core temporal modeling mechanism. However, existing research lack analysis of its actual contributions in complex temporal tasks. We design Non-Stateful (NS) models progressively removing membrane propagation to quantify its stage-wise role. Experiments reveal a counterintuitive phenomenon: moderate removal in shallow or deep layers improves performance, while excessive removal causes collapse. We attribute this to spatio-temporal resource competition where neurons encode both semantics and dynamics within limited range, with temporal state consuming capacity for spatial learning. Based on this, we propose Spatial-Temporal Separable Network (STSep), decoupling residual blocks into independent spatial and temporal branches. The spatial branch focuses on semantic extraction while the temporal branch captures motion through explicit temporal differences. Experiments on Something-Something V2, UCF101, and HMDB51 show STSep achieves superior performance, with retrieval task and attention analysis confirming focus on motion rather than static appearance. This work provides new perspectives on SNNs' temporal mechanisms and an effective solution for spatiotemporal modeling in video understanding.
format Preprint
id arxiv_https___arxiv_org_abs_2512_05472
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Unleashing Temporal Capacity of Spiking Neural Networks through Spatiotemporal Separation
Dong, Yiting
Yu, Zhaofei
Ding, Jianhao
Xu, Zijie
Huang, Tiejun
Neural and Evolutionary Computing
Spiking Neural Networks (SNNs) are considered naturally suited for temporal processing, with membrane potential propagation widely regarded as the core temporal modeling mechanism. However, existing research lack analysis of its actual contributions in complex temporal tasks. We design Non-Stateful (NS) models progressively removing membrane propagation to quantify its stage-wise role. Experiments reveal a counterintuitive phenomenon: moderate removal in shallow or deep layers improves performance, while excessive removal causes collapse. We attribute this to spatio-temporal resource competition where neurons encode both semantics and dynamics within limited range, with temporal state consuming capacity for spatial learning. Based on this, we propose Spatial-Temporal Separable Network (STSep), decoupling residual blocks into independent spatial and temporal branches. The spatial branch focuses on semantic extraction while the temporal branch captures motion through explicit temporal differences. Experiments on Something-Something V2, UCF101, and HMDB51 show STSep achieves superior performance, with retrieval task and attention analysis confirming focus on motion rather than static appearance. This work provides new perspectives on SNNs' temporal mechanisms and an effective solution for spatiotemporal modeling in video understanding.
title Unleashing Temporal Capacity of Spiking Neural Networks through Spatiotemporal Separation
topic Neural and Evolutionary Computing
url https://arxiv.org/abs/2512.05472