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Artificial Intelligence for Autism Detection Using EEG Signals and Lightweight Neural Networks

  • 2026
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the innovative application of Electroencephalography (EEG) signals and lightweight neural networks for the detection of Autism Spectrum Disorder (ASD). The study introduces a simple yet effective CNN-LSTM model designed to classify ASD and control group cases using processed EEG data. A unified data pipeline is developed by merging and standardizing heterogeneous EEG datasets, ensuring the model's robustness and generalizability. The model is optimized for mobile devices using TensorFlow Lite and techniques to make it smaller and faster, allowing for on-device inference without the need for an internet connection. The chapter also discusses the performance of various models, including RNN with LSTM, CNN-RNN, and CNN-BiRNN architectures, highlighting the superior accuracy and efficiency of the RNN (LSTM) model. The successful integration of the model into an Android application opens up possibilities for portable and real-time screening, which is crucial for early intervention and better outcomes for children with ASD. The chapter concludes with a discussion on the potential of this method for improving objective, accessible, and scaled early detection opportunities for ASD.

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Title
Artificial Intelligence for Autism Detection Using EEG Signals and Lightweight Neural Networks
Authors
Afifa Shaikh
Aditya Koli
Pradeep Awubaigol
Soham Mali
Rajashri Khanai
Prema Akkasaligar
Copyright Year
2026
DOI
https://doi.org/10.1007/978-3-032-07735-6_20
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