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Seq2seq for Automatic Paraphasia Detection in Aphasic Speech

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arxiv 2312.10518 v1 pith:7X5XCDGN submitted 2023-12-16 cs.SD cs.AIeess.AS

classification cs.SDcs.AIeess.AS
keywords detectionmodelparaphasiaautomaticparaphasiasspeechaphasiaclinicians
verification ladder T0 review T1 audit T2 compute T3 formal
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Paraphasias are speech errors that are often characteristic of aphasia and they represent an important signal in assessing disease severity and subtype. Traditionally, clinicians manually identify paraphasias by transcribing and analyzing speech-language samples, which can be a time-consuming and burdensome process. Identifying paraphasias automatically can greatly help clinicians with the transcription process and ultimately facilitate more efficient and consistent aphasia assessment. Previous research has demonstrated the feasibility of automatic paraphasia detection by training an automatic speech recognition (ASR) model to extract transcripts and then training a separate paraphasia detection model on a set of hand-engineered features. In this paper, we propose a novel, sequence-to-sequence (seq2seq) model that is trained end-to-end (E2E) to perform both ASR and paraphasia detection tasks. We show that the proposed model outperforms the previous state-of-the-art approach for both word-level and utterance-level paraphasia detection tasks and provide additional follow-up evaluations to further understand the proposed model behavior.

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  1. Voice Quality Dimensions as Interpretable Primitives for Speaking Style for Atypical Speech and Affect

    cs.SD 2025-05 conditional novelty 5.0 of 10

    Linear probes on frozen speech embeddings predict seven voice quality ratings and transfer zero-shot across languages, tasks, and affect.

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