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基于时频图表示的多轨个性化耳鸣康复音生成方法

谢子奇 何培宇 陈娅南 李永康 方安成 潘帆

生物医学工程研究2024,Vol.43Issue(2):115-122,8.
生物医学工程研究2024,Vol.43Issue(2):115-122,8.DOI:10.19529/j.cnki.1672-6278.2024.02.05

基于时频图表示的多轨个性化耳鸣康复音生成方法

A time-frequency representations-based synthesis method of multi-track personalized tinnitus rehabilitation sound

谢子奇 1何培宇 1陈娅南 1李永康 1方安成 1潘帆1

作者信息

  • 1. 四川大学 电子信息学院,成都 610065
  • 折叠

摘要

Abstract

To address the issues of inaccurate correspondence or poor masking effects of traditional tinnitus sound therapy methods in the masked frequency range of patients.A synthesis method for generating multi-track personalized tinnitus rehabilitation sound(MT-PTRS)was proposed based on the time-frequency representation(TFR)method,which not only reflected the characteristics of frequency concentration,but also improved the audibility of tinnitus rehabilitation sounds to some extent.Based on a basic natural sound library,the TFR method was used to identify the main energy frequency bands in the natural sounds.Combined with the tinnitus frequency range of the patients,the natural sounds were segmented and classified to further synthesize personalized natural masking sounds with frequency concentration.This study combined personalized natural masking sounds as the main track with broadband natu-ral sound to generate MT-PTRS.MT-PTRS had better audibility and naturalness than narrow-band noise in traditional masking thera-py.Compared with the previous multi-track tinnitus rehabilitation sound methods,the rehabilitation sound generated by the proposed method had certain improvement in pleasantness and richness,which increased the patient's tolerance to sound therapy.This study has certain reference value for the research of tinnitus sound treatment.

关键词

耳鸣声治疗/时频图表示/频率匹配/声音合成/自然音

Key words

Tinnitus sound therapy/Time-frequency representations/Frequency matching/Sound synthesis/Natural sound

分类

医药卫生

引用本文复制引用

谢子奇,何培宇,陈娅南,李永康,方安成,潘帆..基于时频图表示的多轨个性化耳鸣康复音生成方法[J].生物医学工程研究,2024,43(2):115-122,8.

基金项目

四川省自然科学基金项目(2022NSFSC0799). (2022NSFSC0799)

生物医学工程研究

OACSTPCD

1672-6278

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