- ICH GCP
- US Clinical Trials Registry
- Klinisk forsøg NCT07710989
LIFU Effects & Outcomes: Mechanisms Evaluating Striatal Systems Imaging (LEO MESSI) (MESSI-LEO)
Mechanisms of Low-intensity Focused Ultrasound Targeting Striatal Circuits Underlying Auditory Hallucinations in Schizophrenia
Studieoversigt
Status
Betingelser
Intervention / Behandling
Detaljeret beskrivelse
Background:
Auditory hallucinations affect approximately 70% of individuals with schizophrenia and often persist despite antipsychotic treatment, contributing substantially to disability and reduced quality of life. Neuroimaging studies have consistently demonstrated abnormal functional connectivity between the striatum and superior temporal cortex, implicating corticostriatal circuitry in the generation and maintenance of hallucinations. Among striatal regions, the caudate has been associated with aberrant self-monitoring, abnormal predictive processing, and hallucination severity, making it a promising therapeutic target. The current study builds on these findings by evaluating whether non-invasive neuromodulation of the caudate can normalize striatal-temporal network function and improve hallucination symptoms.
Study Objective:
This first-in-human, early Phase 1 investigator-initiated clinical trial will evaluate the safety, feasibility, tolerability, target engagement, and preliminary mechanistic effects of repeated-session low-intensity focused ultrasound (LIFU) targeting the caudate, a key striatal region implicated in auditory hallucinations in schizophrenia. The study will determine whether individualized LIFU can safely modulate deep corticostriatal circuits and reduce hallucination-related functional connectivity abnormalities while improving psychotic hallucination symptoms.
Study Design:
Participants with schizophrenia and persistent clinically significant auditory hallucinations will undergo MRI-guided, neuronavigated LIFU targeting an individualized caudate target, a key striatal region implicated in hallucination-related corticostriatal circuitry. The study incorporates repeated-session stimulation with sham control to evaluate safety, feasibility, neural target engagement, and preliminary efficacy. Resting-state functional MRI will be obtained before and after treatment to quantify changes in functional connectivity between the caudate and superior temporal cortex. Clinical outcomes will include validated measures of auditory hallucination severity, psychiatric symptoms, tolerability, and adverse events.
Scientific Rationale:
LIFU provides a unique capability to non-invasively modulate deep brain structures with millimeter spatial precision that cannot be reached using conventional non-invasive brain stimulation approaches. By targeting the caudate, this study seeks to directly test the causal role of striatal circuitry in hallucination generation and determine whether modulation of corticostriatal connectivity produces measurable improvements in hallucination symptoms. The results will establish the safety and feasibility of this approach while providing mechanistic evidence to guide future randomized efficacy trials of circuit-based neuromodulation for schizophrenia.
Safety and Feasibility of LIFU This study has been designated a non-significant risk (NSR) device study by the UCSF Institutional Review Board and follows International Transcranial Ultrasonic Stimulation Safety and Standards Consortium (ITRUSST) recommendations. Individualized MRI-guided targeting and subject-specific acoustic simulations will optimize focal targeting while maintaining acoustic exposure within established safety limits. Participants will undergo continuous monitoring during treatment, structured adverse-event assessments using Common Terminology Criteria for Adverse Events (CTCAE) criteria, repeated tolerability assessments, and psychiatric safety monitoring throughout the study. Preliminary studies demonstrated that caudate-targeted LIFU was well tolerated, with no device-related adverse events beyond mild transient auditory sensations, supporting the safety and feasibility of repeated-session caudate-targeted LIFU in schizophrenia.
Undersøgelsestype
Tilmelding (Anslået)
Fase
- Ikke anvendelig
Kontakter og lokationer
Studiekontakt
- Navn: Karuna Subramaniam, PhD
- Telefonnummer: 415-813-9795
- E-mail: karuna.subramaniam@ucsf.edu
Studiesteder
-
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California
-
San Francisco, California, Forenede Stater, 94158
- University of California, San Francisco
-
-
Deltagelseskriterier
Berettigelseskriterier
Aldre berettiget til at studere
- Voksen
Tager imod sunde frivillige
Beskrivelse
Inclusion Criteria:
- 18-64 years of age, inclusive of all gender identities
- Current DSM-5 diagnosis of schizophrenia
- Persistent clinically-significant auditory hallucinations
- No contraindications for MRI, confirmed via standard safety screening procedures
- No neurological disorder
- Clinically stable (outpatient past 12 weeks; same dose medications in 4 weeks)
- Females will be tested for pregnancy and pregnant women will be excluded.
Exclusion Criteria:
Clinically significant neurological disorder or MRI incompatibility
Studieplan
Hvordan er undersøgelsen tilrettelagt?
Design detaljer
- Primært formål: Behandling
- Tildeling: Randomiseret
- Interventionel model: Crossover opgave
- Maskning: Enkelt
Våben og indgreb
Deltagergruppe / Arm |
Intervention / Behandling |
|---|---|
|
Aktiv komparator: Active LIFU
Active LIFU targeting teh caudate
|
MRI-guided, neuronavigated low-intensity focused ultrasound (LIFU) delivered to the caudate target will be compared to sham unfocused sonication delivered using the same device and procedures as the active intervention but without focal ultrasound energy to the target.
Andre navne:
|
|
Placebo komparator: Sham Sonication
Sham Unfocused Sonication
|
MRI-guided, neuronavigated low-intensity focused ultrasound (LIFU) delivered to the caudate target will be compared to sham unfocused sonication delivered using the same device and procedures as the active intervention but without focal ultrasound energy to the target.
Andre navne:
|
Hvad måler undersøgelsen?
Primære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
|
Auditory Hallucinations
Tidsramme: Baseline and Post-Treatment (Weekly follow-up for 8 weeks)
|
We will compare hallucinations after LIFU to caudate with baseline and the sham unfocused sonication condition using the Visual Analog Scale (VAS) and Auditory Vocal Hallucination Rating Scales (AVHRS).
|
Baseline and Post-Treatment (Weekly follow-up for 8 weeks)
|
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Caudate-superior temporal cortical (STC) connectivity
Tidsramme: Baseline and Post-Treatment ( Day 5)
|
We will compare functional connectivity using Fisher r-to-z values from the CONN toolbox between the caudate and STC after LIFU compared to baseline and the sham unfocused sonication condition
|
Baseline and Post-Treatment ( Day 5)
|
Sekundære resultatmål
Resultatmål |
Foranstaltningsbeskrivelse |
Tidsramme |
|---|---|---|
|
Clinical Positive and Negative Symptoms
Tidsramme: Baseline and Post-Treatment (Weekly follow-up for 8 weeks)
|
We will compare positive and negative symptoms using the Positive and Negative Syndrome Scale (PANSS) after LIFU targeting the caudate with baseline and the sham unfocused sonication condition.
|
Baseline and Post-Treatment (Weekly follow-up for 8 weeks)
|
Samarbejdspartnere og efterforskere
Samarbejdspartnere
Efterforskere
- Ledende efterforsker: Karuna Subramaniam, PhD, karuna.subramaniam@ucsf.edu
Publikationer og nyttige links
Datoer for undersøgelser
Studer store datoer
Studiestart (Anslået)
Primær færdiggørelse (Anslået)
Studieafslutning (Anslået)
Datoer for studieregistrering
Først indsendt
Først indsendt, der opfyldte QC-kriterier
Først opslået (Faktiske)
Opdateringer af undersøgelsesjournaler
Sidste opdatering sendt (Faktiske)
Sidste opdatering indsendt, der opfyldte kvalitetskontrolkriterier
Sidst verificeret
Mere information
Begreber relateret til denne undersøgelse
Yderligere relevante MeSH-vilkår
Andre undersøgelses-id-numre
- 24-42726
- 1685505 (Andet bevillings-/finansieringsnummer: Focused Ultrasound Foundation)
Plan for individuelle deltagerdata (IPD)
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