Stuttering, affecting approximately 1% of the global population, is a complex speech disorder significantly impacting individuals' quality of life. Prior studies using electromyography (EMG) to examine orofacial muscle activity in stuttering have presented mixed results, highlighting the variability in neuromuscular responses during stuttering episodes. Fifty-five participants with stuttering and 30 individuals without stuttering, aged between 18 and 40, participated in the study. EMG signals from five facial and cervical muscles were recorded during speech tasks and analyzed for mean amplitude and frequency activity in the 5-15 Hz range to identify significant differences. Upon analysis of the 5-15 Hz frequency range, a higher average amplitude was observed in the zygomaticus major muscle for participants while stuttering ( < 0.05). Additionally, when assessing the overall EMG signal amplitude, a higher average amplitude was observed in samples obtained from disfluencies in participants who did not stutter, particularly in the depressor anguli oris muscle ( < 0.05). Significant differences in muscle activity were observed between the two groups, particularly in the depressor anguli oris and zygomaticus major muscles. These results suggest that the underlying neuromuscular mechanisms of stuttering might involve subtle aspects of timing and coordination in muscle activation. Therefore, these findings may contribute to the field of biosensors by providing valuable perspectives on neuromuscular mechanisms and the relevance of electromyography in stuttering research. Further research in this area has the potential to advance the development of biosensor technology for language-related applications and therapeutic interventions in stuttering.
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http://dx.doi.org/10.3390/s24082629 | DOI Listing |
Methods Mol Biol
January 2025
Department of Computer Science and Applied Mathematics, Weizmann Institute of Science, Rehovot, Israel.
The human genome is composed of distinct genomic regions that are susceptible to various types of somatic mutations. Among these, Short Tandem Repeats (STRs) stand out as the most mutable genetic elements. STRs are short repetitive polymorphic sequences, predominantly situated within noncoding sectors of the genome.
View Article and Find Full Text PDFJ Fluency Disord
December 2024
Department of Speech-Language Pathology, Thomas More University of Applied Sciences, Sint-Andriesstraat 2, Antwerp 2000, Belgium. Electronic address:
Introduction: This study investigated the attitude of Belgian (Flemish) high school students of 15 years and older toward stuttering, compared them with international samples and evaluated the impact of an attitude program about stuttering.
Method: Nine schools participated in this study. The students completed the POSHA-S before and after the program.
Int J Pediatr Otorhinolaryngol
December 2024
Department of Speech Therapy, Pediatric Neurorehabilitation Research Center, University of Social Welfare and Rehabilitation Sciences, Tehran, Iran.
Introduction: This study aimed to develop and evaluate the effectiveness of a combined Fluency Rules Program (FRP) with parent-child interaction training for preschool children with stuttering.
Methods: A randomized controlled trial was conducted with 49 preschool children who stuttered. Participants were randomly assigned to either the experimental group, which received the combined FRP with parent-child interaction training, or the control group, which received only the FRP.
Appl Neuropsychol Child
December 2024
American University in Cairo, New Cairo, Egypt.
: Telepractice is a promising alternative to treat children who stutter. This study aimed to investigate factors influencing telepractice for treating stuttering in a group of school-aged children. This study involved 20 children aged 7 to 9 years diagnosed with moderate to severe stuttering using the Stuttering Severity Instrument (SSI) - Arabic version.
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