An Acoustic Study of the Emphatic Occlusive [t] in School-Going Children with Cleft Palate or Cleft Lip

IF 0.6 4区 物理与天体物理 Q4 ACOUSTICS
Khaled Baazi
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引用次数: 0

Abstract

The aim of this acoustic study is to analyse the phoneme [t ˙ ] produced by school children surgically operated on for the cleft palate or cleft lip, in order to examine their vocal characteristics, to provide speech therapists with numerous concrete analyses of voice and speech, to effectively support them and to prevent some serious outcomes on their psychological and academic development. The motivation for this study was mainly stemming from the difficulties that Algerian schoolchildren with clefts encounter in the pronunciation of this phoneme. To carry out the study, several acoustic parameters were investigated in terms of the fundamental frequency F 0 , the first three formants F 1 , F 2 , and F 3 , the energy E 0 , the Voice Onset Time (VOT), the durations [CV] and [V] of the subsequent vowel [a]. For the analysis, further important parameters in the field of pathological speech were deployed, namely the degree of disturbance of F 0 (jitter), the degree of disturbance of intensity (shimmer) and the HNR (Harmonics to Noise Ratio). Results revealed disturbance in the values of F 1 , F 2 , and F 3 and stability in the values of F 0 . Another important reported aspect is the increase in the value of the VOT due to the difficulties in controlling the plosives’ successive closure and release.
腭裂或唇裂学龄儿童强调性咬合[t]的声学研究
这项声学研究的目的是分析腭裂或唇裂学童手术后产生的音素[t˙],以检查他们的声音特征,为语言治疗师提供大量具体的声音和语言分析,有效地支持他们,并防止他们的心理和学业发展出现一些严重的后果。这项研究的动机主要源于阿尔及利亚唇腭裂学童在这个音素的发音上遇到的困难。为了开展这项研究,研究人员研究了几个声学参数,包括基频f0、前三个共振峰f1、f2和f3、能量e0、发声时间(VOT)、随后元音a的持续时间[CV]和[V]。为了进行分析,进一步部署了病理语音领域的重要参数,即f0的扰动程度(抖动),强度的扰动程度(闪烁)和HNR(谐波噪声比)。结果表明,f1、f2和f3值存在扰动,f0值稳定。另一个重要的报道方面是VOT值的增加,因为难以控制炸药的连续闭合和释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Archives of Acoustics
Archives of Acoustics 物理-声学
CiteScore
1.80
自引率
11.10%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Archives of Acoustics, the peer-reviewed quarterly journal publishes original research papers from all areas of acoustics like: acoustical measurements and instrumentation, acoustics of musics, acousto-optics, architectural, building and environmental acoustics, bioacoustics, electroacoustics, linear and nonlinear acoustics, noise and vibration, physical and chemical effects of sound, physiological acoustics, psychoacoustics, quantum acoustics, speech processing and communication systems, speech production and perception, transducers, ultrasonics, underwater acoustics.
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