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Dynamic Strategy Chain: Dynamic Zero-Shot CoT for Long Mental Health Support Generation

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arxiv 2308.10444 v1 pith:WW7TALLC submitted 2023-08-21 cs.CL cs.AIcs.HC

classification cs.CLcs.AIcs.HC
keywords promptinghealthmentalzero-shotcounselinghelp-seekersdynamicgeneration
verification ladder T0 review T1 audit T2 compute T3 formal
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Long counseling Text Generation for Mental health support (LTGM), an innovative and challenging task, aims to provide help-seekers with mental health support through a comprehensive and more acceptable response. The combination of chain-of-thought (CoT) prompting and Large Language Models (LLMs) is employed and get the SOTA performance on various NLP tasks, especially on text generation tasks. Zero-shot CoT prompting is one of the most common methods in CoT prompting. However, in the LTGM task, Zero-shot CoT prompting can not simulate a counselor or provide personalized strategies without effective mental health counseling strategy prompts. To tackle this challenge, we propose a zero-shot Dynamic Strategy Chain (DSC) prompting method. Firstly, we utilize GPT2 to learn the responses written by mental health counselors and dynamically generate mental health counseling strategies tailored to the help-seekers' needs. Secondly, the Zero-shot DSC prompting is constructed according to mental health counseling strategies and the help-seekers' post. Finally, the Zero-shot DSC prompting is employed to guide LLMs in generating more human-like responses for the help-seekers. Both automatic and manual evaluations demonstrate that Zero-shot DSC prompting can deliver more human-like responses than CoT prompting methods on LTGM tasks.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. CoTSRF: Utilize Chain of Thought as Stealthy and Robust Fingerprint of Large Language Models

    cs.CR 2025-05 reject novelty 6.0 of 10

    CoTSRF fingerprints a source LLM by training a contrastive encoder on chain-of-thought responses, then flags suspect APIs whose reasoning-style feature distances are too close to the source's distribution.

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