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Using brain scans to understand Parkinson’s networks

Researchers study brain systems involved in Parkinson’s using neuroimaging.

Learning by observing or collecting information · Study reference: NCT07024875

Plain-language introduction written with AI from the registry; not independently checked by a clinician. Read the original details below ↓

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Start (reported actual date)
2025-08-01
Main measurements finished (planned)
2031-01
Study finished (planned)
2031-01

Planned dates can move. A study finishing does not tell us when a paper will be published.

No results summary has been confirmed in the registry records we imported. See connected papers below; we keep checking after recruitment ends.

Changes we have recorded
  • 2026-10-11 — recruiting

These are dates we observed a change, not necessarily the dates it happened.

Papers connected to this study

No connected paper has been found yet. The tracker checks the growing library for study identifiers and registry-linked publications.

Who can join?

Age 40 years and over · Also accepts healthy volunteers

These are starting points, not the full rules. The research team can tell you whether the study is right for your situation.

Read all the rules for taking part

Sex eligibility reported by registry: all

Inclusion Criteria: * Must meet specific health and cognitive criteria depending on the group. For PD participants * Clinical diagnosis of Parkinson's Disease * Must not meet dementia criteria For Healthy Control Participants * Normal or benign neurological exam * Normal cognition * No first-degree relatives with Parkinson's Disease Exclusion Criteria: 1. Neurological Disorders (other than PD) \- Any other neurological condition 2. Significant Head Injury * Head injury with loss of consciousness \>5 minutes * Or any neurological sequelae 3. Psychiatric Disorders * Schizophrenia * Bipolar Disorder * Epilepsy 4. Serious Medical Conditions * End-stage organ failure * Ongoing cancer treatment 5. Cognitive Impairment * Diagnosis of dementia * MMSE score \<24 or MoCA score \<21 6. MRI contraindications * Metal implants * claustrophobia * Weight over 300 lbs (due to weight restrictions of the MRI scanner)
Full study name & original research details

Official study title

Precision Neuroimaging of Parkinson's Disease

Short title used by the registry

Neuroimaging of Parkinson's

Original description

Parkinson's Disease (PD) is a neurodegenerative disorder caused by dysfunction in both subcortical structures and the cortex. The investigators recently discovered a new brain system called the Somato-Cognitive Action Network (SCAN), which could be a primary locus of dysfunction in PD. Here, the investigators will use magnetic resonance imaging techniques in PD patients to test whether SCAN is critical for PD. The investigators will determine whether SCAN is connected to PD-relevant subcortical structures, and whether PD patients exhibit altered subcortical-to-SCAN connectivity. If successful, this work will identify SCAN as a specific circuit altered in PD patients that can serve as a new target for future neuromodulatory PD therapies.

Further description from the registry

Parkinson's Disease (PD) is a neurodegenerative disease that causes symptoms such as tremor, bradykinesia, and freezing of gait, as well as sleep disturbance, autonomic dysfunction, and abulia. PD patients particularly struggle to initiate and maintain actions, which causes gait freezing, leading to falls. PD results from dysfunction in motor circuitry, including connections between subcortical structures such as substantia nigra and striatum, as well as primary motor cortex, which drives voluntary movement. Recently, our group rewrote the textbook diagrams of motor circuitry. The investigators described a previously unrecognized Somato-Cognitive Action Network (SCAN) which is interspersed between effector-specific regions of primary motor cortex (foot, hand, mouth). The SCAN is engaged by coordinated rather than isolated actions, and it is strongly preferentially connected to other cortical regions important for action planning and control, autonomic function, and arousal. Many SCAN functions (drive to act, gait, autonomic control, arousal, motor coordination) are affected in PD. Further, clinical targets for neuromodulation in PD are connected to SCAN. Thus, SCAN dysfunction might be an important aspect of PD pathophysiology and resulting symptoms. Critically, recent technical advances in noninvasive functional neuroimaging allow us for the first time to reliably evaluate the connectivity of motor systems, including SCAN, into the deep subcortical structures most relevant for PD. Using these patient-oriented techniques, the investigators will first test whether PD-relevant subcortical structures-including clinical targets for PD-are connected more strongly to the SCAN circuit than to effector-specific M1 foot, hand, and mouth regions. The investigators will then test whether these subcortical-to-SCAN circuits are altered in PD patients to a greater degree than effector-specific circuits. This work will advance a new conceptualization of PD as a disorder of SCAN rather than of traditional effector-specific M1, which will revolutionize how the investigators think of the disorder. Localizing PD disruption to specific portions of M1 could aid with evaluation of patients using these advanced, noninvasive fMRI techniques, and can provide precision targets of interest for other imaging modalities. Noninvasive mapping of cortico-subcortical connectivity will enable optimal target definition for neuromodulatory treatment of PD. Reconceptualizing PD as a disorder of SCAN, a system for integrated action, rather than of M1 circuits for isolated movement, may spur development of alternate symptom evaluation tools oriented around this framework. Finally, localizing M1 sites of disruption in PD opens the possibility of treating PD using cortical stimulation, a less-invasive alternative to deep brain stimulation.

Conditions reported: Parkinsons Disease (PD)

Registry records for this study

Records are joined using registration identifiers. Titles alone do not establish that two studies are the same.

Study type
Observational
Interventions
Not reported
Phases
Not reported
Sponsor
Washington University School of Medicine
Start date reported by registry
2025-08-01 (actual)

Registry updated: 2026-04-13 · Status last verified by the registry submitter: 2026-04

Registry records retrieved 2026-10-11 (UTC). Individual records may have older updates. Recruitment and eligibility must be confirmed with the study team.

Contact the research team

Public study contacts supplied to the registry. Ask whether recruitment is still open and what participation involves.

Danny Bower · 314-273-4429 · bower@wustl.edu

Study locations

Site status can differ from overall study status. “Status not reported” means local availability needs confirmation. Remote participation and travel arrangements must be checked with the team.

East Imaging Building

St Louis, Missouri, United States

Recruiting

The original descriptions and participation rules come from the registry. Participation is voluntary and does not guarantee benefit.