NCT07699783

Brief Summary

This is a phase 1 clinical trial investigating the use of low-energy Transcranial Ultrasound Stimulation (TUS) to treat Tourette Syndrome (TS). Objectives and Background. TS is a neurodevelopmental condition marked by motor and vocal tics that often resist standard pharmacological or behavioral treatments. Current neuromodulation options like Deep Brain Stimulation (DBS) are invasive, while non-invasive methods like TMS lack the precision to reach deep brain structures. The study aims to:

  • Design: A phase 1, double-blind, crossover trial.
  • Participants: 20 individuals (ages 16+) with a diagnosis of TS and significant tic severity (YGTSS score \> 22 or sub-score \> 15).
  • Procedure: Participants receive four different modalities over four separate weeks, with 7-day washouts:
  • TUS of the CM/Pf/Voi only.
  • TUS of the SMA only.
  • Combined TUS of both targets.
  • Sham TUS.
  • Evaluation: The primary endpoint is the percent change on the Rush Video-Based Tic Rating Scale (RVBTRS). Secondary measures include the Yale Global Tic Severity Scale (YGTSS) and the Premonitory Urges for Tics Scale (PUTS). Because TUS requires extreme precision to hit deep brain targets, every participant undergoes a comprehensive imaging protocol using a 3T GE UHP scanner.
  • Mapping the Targets: We use Diffusion Tensor Imaging (DTI) and Tractography to locate the specific "wiring" of the individual's brain. This allows to find:
  • The CM/Pf/Voi (Centromedian-parafascicular complex) in the thalamus.
  • The SMA (Supplementary Motor Area) in the cortex.
  • Precision Imaging: High-resolution 1 mm-isotropic T1-weighted, T2-weighted, and Zero Echo Time (ZTE) images are used. ZTE is particularly important as it helps the BabelBrain software account for the thickness and density of the skull, which can deflect ultrasound waves.
  • Real-Time Tracking: During the actual stimulation, the team uses a Brainsight neuro-navigation system. This acts like a GPS, using the patient's MRI "map" to ensure the ultrasound transducer is perfectly aligned with the target. Innovation This is the first human study to apply TUS to TS patients. By targeting both deep and cortical regions independently or simultaneously, the researchers aim to modulate the "network-level" connectivity implicated in tic generation. Technical Ultrasound Parameters The study uses a custom 128-element phased-array transducer (Sonic Concepts H317) to deliver TUS.
  • Core Settings:
  • Frequency: 250 kHz.
  • Intensity: spatial-peak pulse-average intensity (ISPPA) of 10 W/cm2
  • Targeting \& Safety:
  • BabelBrain Software: Calculates real-time acoustic simulations to correct for bone aberrations and ensure the Mechanical Index (MI) stays below 1.9 and thermal rise remains under 2°C.
  • Electronic Steering: Allows the focal spot to be moved without physically repositioning the device, enabling coverage of large areas like the SMA or deep structures like the CM/Pf/Voi complex.
  • Biological Protocols:
  • Inhibitory: pulse repetition frequency (PRF), 10% duty cycle, lasting 120 seconds.
  • Excitatory: "theta burst" PRF, 10% duty cycle, lasting 80 seconds. Clinical Assessment Criteria The trial employs three main scales to capture both objective tic data and subjective patient experiences:
  • Rush Video-Based Tic Rating Scale (RVBTRS):
  • The Primary Measure: This is the only validated tool that provides an objective assessment by analyzing 10-minute video recordings.
  • Method: Two blinded evaluators count tics and rate their severity across two views: a close-up (head/shoulders) and a full-body frontal view.
  • Focus: It specifically measures the patient's ability to actively inhibit tics during the recording.
  • Yale Global Tic Severity Scale (YGTSS):
  • The Gold Standard: A clinician-rated interview that assesses symptoms over the prior 7-10 days.
  • Scoring: It rates motor and phonic tics separately on five dimensions: number, frequency, intensity, complexity, and interference.
  • Baseline Requirement: To participate in the trial, patients must have a total tic severity score of at least 22 (or a sub-score of 15).
  • Premonitory Urges for Tics Scale (PUTS):
  • Self-Report: A 9-item questionnaire where patients rate the intensity of pre-tic sensations (like pressure, itchiness, or tension) on a scale of 1 to 4.
  • Interpretation: Scores range from 9 to 36; higher scores reflect more distressing urges.

Trial Health

65
Monitor

Trial Health Score

Automated assessment based on enrollment pace, timeline, and geographic reach

Enrollment
20

participants targeted

Target at P25-P50 for phase_1

Timeline
22mo left

Started Aug 2026

Status
not yet recruiting

Health score is calculated from publicly available data and should be used for screening purposes only.

Trial Relationships

Click on a node to explore related trials.

Study Timeline

Key milestones and dates

Study Progress1%
Aug 2026Jun 2028

First Submitted

Initial submission to the registry

June 8, 2026

Completed
1 month until next milestone

First Posted

Study publicly available on registry

July 13, 2026

Completed
19 days until next milestone

Study Start

First participant enrolled

August 1, 2026

Completed
1.3 years until next milestone

Primary Completion

Last participant's last visit for primary outcome

December 1, 2027

Expected
6 months until next milestone

Study Completion

Last participant's last visit for all outcomes

June 1, 2028

Last Updated

July 13, 2026

Status Verified

May 1, 2026

Enrollment Period

1.3 years

First QC Date

June 8, 2026

Last Update Submit

July 9, 2026

Conditions

Outcome Measures

Primary Outcomes (1)

  • Percent change on the Rush Video-Based Tic Rating Scale (RVBTRS) score

    After the third stimulation session (Day 5) of each intervention

Study Arms (3)

Active stimulation of the intralaminar nuclei of the thalamus

EXPERIMENTAL

Transcranial ultrasound stimulation adopting a multi-focus strategy with electronic steering, to probe the bilateral CM/Pf/Voi and radially adjacent foci 5 mm from the centre. A custom 128-element phased-array ultrasound transducer (H317, Sonic Concepts Inc, Bothwell, WA) will deliver TUS using an ultrasound frequency of 250 kHz and a spatial-peak pulse-average intensity (ISPPA) of 10 W/cm2 in situ. We will use the timing parameters developed by our group with a pulse repetition frequency (PRF) of 100 Hz, a duty cycle (DC) of 10% and duration of 120s.

Device: Focused ultrasound stimulation

Active stimulation of the insular cortex

EXPERIMENTAL

Transcranial ultrasound stimulation adopting a multi-focus strategy with electronic steering, to probe the bilateral insula and radially adjacent foci 5 mm from the centre. A custom 128-element phased-array ultrasound transducer (H317, Sonic Concepts Inc, Bothwell, WA) will deliver TUS using an ultrasound frequency of 250 kHz and a spatial-peak pulse-average intensity (ISPPA) of 10 W/cm2 in situ. We will use the timing parameters developed by our group with a pulse repetition frequency (PRF) of 100 Hz, a duty cycle (DC) of 10% and duration of 120s.

Device: Focused ultrasound stimulation

Sham stimulation

SHAM COMPARATOR

Sham stimulation sessions will be unfocused, thereby providing the same sound produced by real stimulation but without sufficient intensity at any location.

Device: Sham stimulation

Interventions

Transcranial ultrasound stimulation adopting a multi-focus strategy with electronic steering, to probe the bilateral CM/Pf/Voi and radially adjacent foci 5 mm from the centre. A custom 128-element phased-array ultrasound transducer (H317, Sonic Concepts Inc, Bothwell, WA) will deliver TUS using an ultrasound frequency of 250 kHz and a spatial-peak pulse-average intensity (ISPPA) of 10 W/cm2 in situ. We will use the timing parameters developed by our group with a pulse repetition frequency (PRF) of 100 Hz, a duty cycle (DC) of 10% and duration of 120s.

Active stimulation of the intralaminar nuclei of the thalamus

Sham stimulation sessions will be unfocused, thereby providing the same sound produced by real stimulation but without sufficient intensity at any location.

Sham stimulation

Eligibility Criteria

Age18 Years+
Sexall
Healthy VolunteersNo
Age GroupsAdult (18-64), Older Adult (65+)

You may qualify if:

  • Diagnosis of Tourette Syndrome according to DSM-5 criteria
  • a total motor or vocal tic severity sub-score of at least 15, or a total tic severity score greater than 22 on the Yale Global Tic Severity Rating Scale (YGTSS)
  • a stable medication regimen during the 3 months prior, clinically stable in any psychiatric comorbidities

You may not qualify if:

  • Contraindications for MRI

Contact the study team to confirm eligibility.

Sponsors & Collaborators

MeSH Terms

Conditions

Tourette Syndrome

Condition Hierarchy (Ancestors)

Basal Ganglia DiseasesBrain DiseasesCentral Nervous System DiseasesNervous System DiseasesTic DisordersMovement DisordersHeredodegenerative Disorders, Nervous SystemNeurodegenerative DiseasesGenetic Diseases, InbornCongenital, Hereditary, and Neonatal Diseases and AbnormalitiesNeurodevelopmental DisordersMental Disorders

Study Design

Study Type
interventional
Phase
phase 1
Allocation
RANDOMIZED
Masking
DOUBLE
Who Masked
PARTICIPANT, OUTCOMES ASSESSOR
Purpose
TREATMENT
Intervention Model
CROSSOVER
Sponsor Type
OTHER
Responsible Party
SPONSOR

Study Record Dates

First Submitted

June 8, 2026

First Posted

July 13, 2026

Study Start

August 1, 2026

Primary Completion (Estimated)

December 1, 2027

Study Completion (Estimated)

June 1, 2028

Last Updated

July 13, 2026

Record last verified: 2026-05