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Research PaperResearchia:202607.31022

ZUNA1.1: A more flexible EEG foundation model for Denoising and Super-resolution

Christopher Warner

Abstract

We introduce ZUNA1.1, a 380M-parameter diffusion autoencoder for flexible EEG signal reconstruction. ZUNA1.1 is capable of reconstructing variable length sequences of up to 30s, with an arbitrary number of EEG channels at arbitrary scalp locations, and can reconstruct arbitrary temporal intervals within channels in addition to reconstructing entire channels. We demonstrate that ZUNA1.1 performs at least on par with our earlier ZUNA1 model, while being far more flexible and capable of handling a ...

Submitted: July 31, 2026Subjects: Neuroscience; Neuroscience

Description / Details

We introduce ZUNA1.1, a 380M-parameter diffusion autoencoder for flexible EEG signal reconstruction. ZUNA1.1 is capable of reconstructing variable length sequences of up to 30s, with an arbitrary number of EEG channels at arbitrary scalp locations, and can reconstruct arbitrary temporal intervals within channels in addition to reconstructing entire channels. We demonstrate that ZUNA1.1 performs at least on par with our earlier ZUNA1 model, while being far more flexible and capable of handling a wide range of reconstruction tasks. ZUNA1.1 continues to substantially outperform standard EEG denoising and reconstruction methods such as spherical spline interpolation, which is ubiquitously deployed in the MNE package. The ZUNA1.1 model is released open source under the permissive Apache 2.0 license.


Source: arXiv:2607.27308v1 - http://arxiv.org/abs/2607.27308v1 PDF: https://arxiv.org/pdf/2607.27308v1 Original Link: http://arxiv.org/abs/2607.27308v1

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Date:
Jul 31, 2026
Topic:
Neuroscience
Area:
Neuroscience
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