Prompt-based fine-tuning with pause encoding reaches a maximum 95.8% accuracy for Alzheimer's detection on ADReSS transcripts, while the mean over random seeds is 87.9%.
Exploring linguistic feature and model combination for speech recognition based automatic AD detection
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abstract
Early diagnosis of Alzheimer's disease (AD) is crucial in facilitating preventive care and delay progression. Speech based automatic AD screening systems provide a non-intrusive and more scalable alternative to other clinical screening techniques. Scarcity of such specialist data leads to uncertainty in both model selection and feature learning when developing such systems. To this end, this paper investigates the use of feature and model combination approaches to improve the robustness of domain fine-tuning of BERT and Roberta pre-trained text encoders on limited data, before the resulting embedding features being fed into an ensemble of backend classifiers to produce the final AD detection decision via majority voting. Experiments conducted on the ADReSS20 Challenge dataset suggest consistent performance improvements were obtained using model and feature combination in system development. State-of-the-art AD detection accuracies of 91.67 percent and 93.75 percent were obtained using manual and ASR speech transcripts respectively on the ADReSS20 test set consisting of 48 elderly speakers.
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Leveraging Prompt Learning and Pause Encoding for Alzheimer's Disease Detection
Prompt-based fine-tuning with pause encoding reaches a maximum 95.8% accuracy for Alzheimer's detection on ADReSS transcripts, while the mean over random seeds is 87.9%.