Brain Stimulation for Speech Disorders
What You Need to Know Before You Apply
What is the purpose of this trial?
This trial explores how different brain regions collaborate to control speech, focusing on individuals who stutter or have dyslexia. Participants will perform speech tasks where researchers alter the sounds they hear or their jaw movements to study speech motor skills. Some sessions will include noninvasive brain stimulation, such as reflexive somatosensory perturbation and various forms of auditory feedback perturbation, to assess its impact on speech control. Suitable candidates have a history of stuttering or dyslexia, are native English speakers, and have no major neurological issues. The findings aim to explain variations in speech abilities and how brain differences might contribute to stuttering and dyslexia. As an unphased trial, this study offers a unique opportunity to contribute to groundbreaking research on speech control and brain function.
Do I need to stop my current medications for the trial?
The trial information does not specify whether you need to stop taking your current medications. It's best to discuss this with the trial coordinators for clarification.
What prior data suggests that this brain stimulation technique is safe for speech disorders?
Previous studies indicate that participants have generally handled different methods of feedback changes well. Research shows that reflexive somatosensory feedback changes use safe, non-invasive techniques to study how the brain reacts to changes in speech-related sensory feedback. These studies do not report significant negative effects, suggesting that the approach is well-tolerated.
Similarly, studies on sustained F0 and F1 auditory feedback changes have shown these techniques to be safe. These methods alter how participants hear their own voices, helping researchers understand how people adjust their speech. The findings suggest that this practice is generally safe without serious side effects.
For unpredictable auditory feedback changes, research shows that it safely alters the timing of audio feedback to study how people correct their speech. This technique is also reported as well-tolerated with no major negative effects.
Overall, these feedback techniques have been well-researched, and available data suggests they are safe for study participants.12345Why are researchers excited about this trial?
Researchers are excited about these brain stimulation techniques for speech disorders because they explore innovative ways to enhance speech motor control. Unlike traditional speech therapy that focuses on behavioral interventions, these treatments use transcranial current stimulation (tCS) to target specific brain regions, potentially altering neural activity directly. The unique aspect of this approach is its ability to apply stimulation to areas like the ventral premotor cortex (vPMC) and the posterior superior temporal gyrus (pSTG), which are crucial for speech processing. This could lead to more effective and faster improvements in speech abilities compared to conventional methods. Additionally, the use of both real and sham stimulation helps researchers understand the true impact of the treatment on the brain and speech function.
What evidence suggests that this trial's treatments could be effective for speech disorders?
This trial will compare different brain stimulation techniques to understand their effects on speech control. Participants in one arm will receive transcranial current stimulation (tCS) targeting the left and right ventral premotor cortex (vPMC), while those in another arm will receive tCS targeting the posterior superior temporal gyrus (pSTG) and ventral somatosensory cortex (vSSC). Research has shown that different types of feedback can influence speech control. Reflexive changes in the sensation of movements, such as those of the jaw and lips, affect how the brain manages speech. Studies have found that this helps in understanding voice control. Changes in auditory feedback, like pitch and tone, are crucial for learning and maintaining clear speech, especially for children and adults with speech disorders. When people hear unexpected sounds, it allows researchers to assess their ability to adjust speech. This understanding can enhance the management of speech disorders like stuttering by focusing on specific brain areas.12567
Who Is on the Research Team?
Frank H Guenther, Ph.D.
Principal Investigator
Boston University
Are You a Good Fit for This Trial?
This trial is for adults aged 18-50 who are native speakers of American English and have typical hearing, vocabulary, and cognitive skills. It includes people with stuttering, dyslexia, or no speech disorders. Participants must have a confirmed history if they stutter or have dyslexia.Inclusion Criteria
Timeline for a Trial Participant
Screening
Participants are screened for eligibility to participate in the trial
Baseline Assessment
Participants complete baseline assessments including stuttering severity, dyslexia severity, intelligence, and vocabulary tests
Speech Task and MRI
Participants complete speech tasks with auditory and somatosensory perturbations and undergo MRI scans to measure brain structure and connectivity
tCS Stimulation Sessions
Participants undergo transcranial current stimulation targeting specific brain regions and complete speech tasks during stimulation
Follow-up
Participants are monitored for any changes in speech motor skills and brain connectivity post-intervention
What Are the Treatments Tested in This Trial?
Interventions
- Reflexive somatosensory perturbation
- Sustained F0 auditory feedback perturbation
- Sustained F1 auditory feedback perturbation
- Unpredictable auditory feedback perturbation
Trial Overview
Researchers are studying how the brain controls speech by using tasks that change what participants hear or feel while speaking. The study uses noninvasive brain stimulation (tCS), MRI scans, and various feedback changes to see how these affect speech in both neurotypical individuals and those with speech disorders.
How Is the Trial Designed?
2
Treatment groups
Experimental Treatment
Participants in Arm 1 will complete all behavioral, MRI, and tCS study procedures. During the tCS portion of the study, they will receive anodal transcranial current stimulation (tCS) targeting two brain regions: posterior superior temporal gyrus (pSTG) in one stimulation session and ventral somatosensory cortex (vSSC) in another. In a third session, they will complete the same speech task while receiving sham stimulation targeting either pSTG or vSSC. All participants in this arm will also complete speech motor control tasks involving unpredictable auditory perturbations, sustained auditory perturbations, and somatosensory perturbations, as well as one MRI session.
Participants in Arm 2 will complete all behavioral, MRI, and tCS study procedures. During the tCS portion of the study, they will receive anodal transcranial current stimulation (tCS) targeting left ventral premotor cortex (vPMC) in one stimulation session and right vPMC in another. In a third session, they will complete the same speech task while receiving sham stimulation targeting either the left or right vPMC. All participants in this arm will also complete speech motor control tasks involving unpredictable auditory perturbations, sustained auditory perturbations, and somatosensory perturbations, as well as one MRI session.
Find a Clinic Near You
Who Is Running the Clinical Trial?
Boston University Charles River Campus
Lead Sponsor
National Institute on Deafness and Other Communication Disorders (NIDCD)
Collaborator
Citations
Quantitatively characterizing reflexive responses to pitch ...
Reflexive pitch perturbation experiments are commonly used to investigate the neural mechanisms underlying vocal motor control.
2.
frontiersin.org
frontiersin.org/journals/human-neuroscience/articles/10.3389/fnhum.2026.1757752/fullTowards an understanding of somatosensory perturbation ...
Abstract. Introduction: Recent initiatives have sought to understand the impact of somatosensory feedback during varying speech production tasks.
Auditory-Somatosensory Interactions in Speech Perception in ...
Abstract. Objectives: Individuals with hearing impairment can perceive speech sounds with the help of cochlear implants or hearing aids.
Regulation of sensorimotor serial learning in speech ...
This study investigates how people adapt their speech when auditory feedback is altered. The analyses are rigorous and the work makes a ...
5.
scholarshare.temple.edu
scholarshare.temple.edu/entities/publication/f4ba0f72-31e0-4e2e-b26b-b5ccba3ee225Quantitatively characterizing reflexive responses to pitch ...
Background: Reflexive pitch perturbation experiments are commonly used to investigate the neural mechanisms underlying vocal motor control.
Contributions of Auditory and Somatosensory Feedback to ...
The findings indicate that somatosensory and auditory feedback control mechanisms work together to compensate for laryngeal perturbations.
Brain Stimulation for Speech Disorders · Info for Participants
This study aims to understand how people use different types of feedback to control their speech. When an individual speaks, the brain ...
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