Lazzari Giorgio, van de Vorst Robert, van Vugt Floris T, Lega Carlotta
Department of Brain and Behavioral Sciences, University of Pavia, 27100 Pavia, Italy.
Centre for Research on Brain, Language and Music (CRBLM), Montreal, QC H3A 1G1, Canada.
Brain Sci. 2024 May 7;14(5):472. doi: 10.3390/brainsci14050472.
Differences in sensorimotor integration mechanisms have been observed between people who stutter (PWS) and controls who do not. Delayed auditory feedback (DAF) introduces timing discrepancies between perception and action, disrupting sequence production in verbal and non-verbal domains. While DAF consistently enhances speech fluency in PWS, its impact on non-verbal sensorimotor synchronization abilities remains unexplored. A total of 11 PWS and 13 matched controls completed five tasks: (1) unpaced tapping; (2) synchronization-continuation task (SCT) without auditory feedback; (3) SCT with DAF, with instruction either to align the sound in time with the metronome; or (4) to ignore the sound and align their physical tap to the metronome. Additionally, we measured participants' sensitivity to detecting delayed feedback using a (5) delay discrimination task. Results showed that DAF significantly affected performance in controls as a function of delay duration, despite being irrelevant to the task. Conversely, PWS performance remained stable across delays. When auditory feedback was absent, no differences were found between PWS and controls. Moreover, PWS were less able to detect delays in speech and tapping tasks. These findings show subtle differences in non-verbal sensorimotor performance between PWS and controls, specifically when action-perception loops are disrupted by delays, contributing to models of sensorimotor integration in stuttering.
在口吃者(PWS)和非口吃对照者之间,已观察到感觉运动整合机制存在差异。延迟听觉反馈(DAF)会在感知和行动之间引入时间差异,从而干扰言语和非言语领域的序列生成。虽然DAF能持续提高PWS的言语流畅性,但其对非言语感觉运动同步能力的影响仍未得到探索。共有11名PWS和13名匹配的对照者完成了五项任务:(1)自由节奏敲击;(2)无听觉反馈的同步 - 延续任务(SCT);(3)有DAF的SCT,指导语为要么使声音与节拍器在时间上对齐;要么(4)忽略声音并使他们的身体敲击与节拍器对齐。此外,我们使用(5)延迟辨别任务测量了参与者检测延迟反馈的敏感性。结果表明,尽管DAF与任务无关,但它作为延迟持续时间的函数显著影响了对照者的表现。相反,PWS的表现随延迟保持稳定。当没有听觉反馈时,PWS和对照者之间未发现差异。此外,PWS在言语和敲击任务中检测延迟的能力较弱。这些发现表明,PWS和对照者在非言语感觉运动表现上存在细微差异,特别是当行动 - 感知循环因延迟而中断时,这有助于口吃中感觉运动整合模型的构建。