Brain Connectivity

7

Review clinical trials related to Brain Connectivity. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Recruiting

Connectome-guided Onco-functional Resection With Tractography-Extended Neuronavigation in Brain Tumor Surgery

Brain tumor surgery in so-called "eloquent" brain areas aims to remove as much tumor as possible while preserving neurological functions. Standard surgical planning typically focuses on discrete, anatomically defined cortical regions. However, modern neuroscience demonstrates that most brain functions arise from distributed networks of interconnected areas rather than isolated spots - a concept that standard navigation tools do not fully capture. The CORTEX study evaluates a surgical workflow - termed "connectome-guided network-based navigation" - in which advanced diffusion MRI processing is used to reconstruct patient-specific maps of white matter pathways and large-scale brain networks. These maps are imported into a clinical neuronavigation system to guide preoperative planning and intraoperative decision-making for patients with gliomas or brain metastases in eloquent regions. The primary aims are to determine how often network-based information leads to meaningful changes in surgical strategy compared with conventional anatomy-based planning, and to assess early neurological outcomes. Secondary objectives include characterizing the extent of tumor removal, the proximity of the resection to critical white matter tracts, and the feasibility of implementing this pipeline in a high-volume clinical setting.

Participants needed: 400
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: ARNAS Civico Di Cristina Benfratelli HospitalUpdated: Jul 21, 2026Locations: 1
Eligibility criteria

Indication for supratentorial brain tumor surgery (glioma or metastasis) [+4]

Inability to undergo pre- or postoperative MRI [+3]

Status: Recruiting

Glucagon-like Peptide 1 (GLP-1) Receptor Agonist Therapy and Exercise Training in People With Obesity

The use of glucagon-like peptide receptor agonists (GLP-1 RAs) may have clinically important effects on skeletal muscle mass (SMM), and physical function. The effects of exercise training in conjunction with GLP-1 RA therapy on these outcomes has not been studied. Additionally, most people treated with GLP-1-based weight loss medications stop taking these medications within 1 year of initiating treatment. This is an important clinical concern because weight regain can occur after weight loss pharmacotherapy is stopped and the impact of stopping GLP-1 RA therapy on physical and metabolic function has not been studied. In this study, the investigators will conduct a 2-year randomized clinical trial to evaluate body composition, muscle, physical and metabolic function, muscle strength and appetite control and reward signaling in the brain in response to 1-year of GLP-1 RA therapy, with or without exercise training, and subsequent treatment cessation on muscle and appetite-related outcomes assessed 1-year after stopping treatment.

Participants needed: 40
Trial details
Age: 50-75Biological sex: AllType: InterventionalSponsor: Washington University School of MedicineUpdated: Jul 10, 2026Locations: 1
Eligibility criteria

i) obesity (Body Mass Index ≥ 30 kg/m2) [+2]

i) unstable weight (>4% change during the last 2 months before entering the stud... [+21]

Status: Recruiting

Whole-Brain Dynamics in the Natural Menstrual Cycle vs. an Ovarian Stimulated Cycle: Impact of Hormonal Fluctuations on Healthy Women Undergoing Ovarian Stimulation

The investigators aim is to investigate the brain's dynamic complexity across three phases of an ovarian stimulation cycle (basal, pre-OPU, mid-luteal), to observe the impact of externally administered hormones, and compare it with the corresponding phases of a natural menstrual cycle (early follicular, pre-ovulatory, mid-luteal) in the same woman. Brain activity patterns will be examined using resting-state fMRI in a sample of young, healthy, naturally cycling women.

Participants needed: 15
Trial details
Age: 25-35Biological sex: FemaleType: ObservationalSponsor: ART Fertility Clinics LLCUpdated: Jun 23, 2026Locations: 2Duration: 8 Weeks
Eligibility criteria

Age group: 25 - 35 years old [+5]

History of ovarian surgery [+4]

Status: Recruiting

Resting State Changes Following Theta Burst Stimulation

Transcranial magnetic stimulation (TMS) is increasingly being applied to effectively treat mental illness, however efforts to quantify the effects of TMS on the network architecture of the brain have largely been limited in scope and tied to specific neurologic and psychiatric disorders. The objective of the current work is to build and validate a whole-brain, domain-general model of brain connectivity changes following TMS, based on physical models of the current distribution at the cortex. PUBLIC HEALTH RELEVANCE: This work is relevant to public health because it will provide direct evidence that brain connectivity changes following neuromodulatory TMS vary as a function of the current density at the cortex, which can be used to predict psychiatric symptom change following neuromodulatory TMS.

Participants needed: 200
Trial details
Age: 18-60Biological sex: AllType: InterventionalSponsor: Nicholas Balderston, PhDUpdated: Jan 7, 2026Locations: 1
Eligibility criteria

Able to give their consent [+1]

Non-english speaking [+13]

Status: Recruiting

Neurophysiological Changes After Perturbation-based Training in Older Adults

This is an assessor-blinded neurophysiological study. Participants will be randomly assigned to a perturbation-based training (PBT) or a walking (control) group. Changes in postural stability and neurophysiology in the brain following PBT compared to walking exercise without perturbation will be investigated.

Participants needed: 88
Trial details
Age: 60+Biological sex: AllType: InterventionalSponsor: The Hong Kong Polytechnic UniversityUpdated: Sep 24, 2025Locations: 1
Eligibility criteria

Aged ≥ 60 years old [+5]

Metal implants (e.g. pacemaker, artificial cochlea) [+4]

Status: Recruiting

Predicting Treatment Outcomes in Refractory Constipation Through Brain Connectivity Evaluation

The goal of this observational study is to identify the characteristics of brain functional connectivity in refractory constipation and fluoxetine-sensitive patients. The main questions it aims to answer are: * Investigating the alterations in brain functional connectivity in patients with refractory constipation and fluoxetine-sensitive patients * Assessing the predictive value of brain functional connectivity regarding the efficacy of fluoxetine and standard protocol treatments for constipation. Participants will receive: * Standard physiological and psychological assessments of constipation * BOLD-fMRI tests * Standard protocol and fluoxetine treatment If there is a comparison group: Researchers will compare: Refractory group/Fluoxetine sensitive group to see the specific brain alterations.

Participants needed: 150
Trial details
Age: 18-45Biological sex: AllType: ObservationalSponsor: Xijing Hospital of Digestive DiseasesUpdated: Jul 24, 2025Locations: 3
Eligibility criteria

18≤ age ≤ 45 years old [+3]

Complicated with gastrointestinal organic disease or significant functional abno... [+11]

Status: Recruiting

Investigating the Effects of Transcranial Direct Current Stimulation to Different Brain Regions on Ankle Tracking Motor Learning, Motor Adaptation, and Brain Connectivity in Healthy Middle-aged and Older Adults and Patients With Subcortical Stroke

Ankle control is essential to safe over-ground navigation for humans. Middle- aged and older adults and patients with stroke whose ankle control is poor often lose their balance or fall. Transcranial direct current stimulation (tDCS) is an emerging non-invasive brain stimulation technology that has great potential to be applied to neurorehabilitation; however, the optimization of its applications still needs further studies. The aims of this project are to compare the effects of anodal tDCS (AtDCS) applied to the primary motor cortex (M1) contralateral to the moving leg (cM1), posterior parietal cortex (PPC) contralateral to the moving leg (cPPC), and cerebellar cortex (CBM) ipsilateral to the moving leg (iCBM) on motor learning, motor adaptation, and brain connectivity in healthy middle-aged and older adults and hemiparetic patients with chronic subcortical stroke.

Participants needed: 120
Trial details
Age: 40-80Biological sex: AllType: InterventionalSponsor: National Taiwan University HospitalUpdated: Aug 19, 2024Locations: 1
Eligibility criteria

age between 40 and 80 years old [+3]

having any contraindications for MRI or tDCS; [+22]