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Cognitive Change clinical trials

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NCT ID: NCT06368297 Not yet recruiting - Clinical trials for Overweight and Obesity

The Effect of Ketone Ester Supplementation and Ketogenic Diet on Brain Plasticity in Overweight/Obese Adults

Start date: April 2024
Phase: N/A
Study type: Interventional

This project comprises an initial crossover placebo-controlled neurophysiological study to ascertain the effect of acute ketone ester ingestion on motor cortex plasticity, followed by a second 2-week intervention study aimed to compare the effect of a ketogenic diet versus ketone ester supplementation on motor cortex plasticity, resting brain function and structure, and metabolic and neuroendocrine responses.

NCT ID: NCT06365957 Not yet recruiting - Clinical trials for Overweight and Obesity

Acute Effects of Exercise Combined With Ketone Ester Supplement

Start date: April 2024
Phase: N/A
Study type: Interventional

To examine the acute changes in cardiometabolic and neurocognitive outcomes in response to exercise combined with ketone ester supplement in overweight/obese adults.

NCT ID: NCT06363487 Not yet recruiting - Cognitive Change Clinical Trials

Semaglutide and Cognition in Healthy Volunteers

OxSENSE
Start date: April 8, 2024
Phase: N/A
Study type: Interventional

Semaglutide is a glucagon-like peptide 1 receptor agonist (GLP-1RA). It is a safe medication approved for use in type-2 diabetes mellitus (T2DM) and obesity. Primarily, it works by counteracting insulin-resistance and inducing weight loss. It also acts on several other interconnected neurobiological, immunological (esp. inflammatory), endocrine-metabolic, and gut-brain axis processes that play a role in depressive symptoms. Its effects on cognition and energy are currently unknown. In this study we are using semaglutide as an experimental tool to further investigate these relationships.

NCT ID: NCT06348212 Not yet recruiting - Cognitive Change Clinical Trials

Effect of Probiotic Strain Lactobacillus Paracasei PS23 on Brain Fog in People With Long COVID

COVID-19
Start date: April 2024
Phase: N/A
Study type: Interventional

The goal of this clinical trial is to test whether the intervention of probiotics supplement can improve symptoms of long covid syndrome. Participants will be given probiotics or placebo capsules for two month. Symptom questionnaires, cognitive function, eeg and fecal sample are recorded/collected before and after the supplement. Researchers will compare the probiotic group and the placebo to see if probiotic supplement really make differences.

NCT ID: NCT06331247 Recruiting - Stroke Clinical Trials

MIND Diet to Improve Cognitive Function in Mild Stroke Patients (MINDICOMS) II

Start date: March 18, 2024
Phase: N/A
Study type: Interventional

A 6-month pilot randomized controlled trial designed to test the effect of the Mediterranean-DASH Intervention for Neurodegenerative Delay (MIND) Diet + usual medical care versus usual medical care on cognitive change and several other secondary outcomes through a randomized controlled trial in 60 mild stroke patients aged 35-70 years without dementia.

NCT ID: NCT06330090 Not yet recruiting - Cognitive Change Clinical Trials

COgnitive Dynamics in Early Childhood

CODEC
Start date: March 2024
Phase:
Study type: Observational

The goal of this accelerated longitudinal observational cohort study is to advance our understanding of cognitive variability in children aged 7 to 10 at first measurement. The CODEC study aims to integrate experience sampling methods, longitudinal designs, deep phenotyping cohorts, and state-of-the-art statistical methodologies to investigate three core questions: 1. How does cognitive variability differ between individuals? 2. What are the neural, psychological, and environmental mechanisms that underlie cognitive variability? 3. What are the long-term consequences and outcomes associated with differences in cognitive variability?

NCT ID: NCT06312956 Recruiting - Clinical trials for Obstructive Sleep Apnea

Multidimensional Evaluation of Patients' Affected by Obstructive Apnea Syndrome (OSAS) Before and After Ventilotherapy

MULTI-OSAS
Start date: February 29, 2024
Phase:
Study type: Observational

This observational study aims to evaluate multiple dimensions of health in patients with Obstructive Sleep Apnea Syndrome (OSAS), before and after three weeks of ventilotherapy. Specifically, the study aims to identify pre- vs post-treatment differences in the following domains: - cognitive performance - blood expression of biomarkers related to neurodegeneration - psychosocial wellbeing Thus, patients will complete the following evaluations before (T0) and after (T1) ventilotherapy: - neuropsychological standard assessment - blood sampling - psychosocial self-reported questionnaires

NCT ID: NCT06309914 Recruiting - Cognitive Change Clinical Trials

The Effects of Mirtoselect®, Virtiva®, and Enovita® on Cognitive Performance and Mood States

Start date: February 21, 2024
Phase: N/A
Study type: Interventional

This is a randomized, double-blind, placebo-controlled, 4-week intervention clinical study assessing the efficacy of Mirtoselect®, Virtiva® Plus, and Enovita® on cognitive performance and mood states, and the occurrence of adverse events in response to daily supplementation. The desired sample size for this study is 64 subjects. To account for potential dropouts, we aim to enroll up to 20% over the desired sample size. Therefore, this study will enroll up to 76 healthy men and women (25-55 years of age). Subjects will be randomly divided into four study groups: Placebo, Virtiva® ginkgo biloba extract, Mirtoselect® bilberry extract, or Enovita® grape seed extract. Blocked randomization will be deployed in which subjects are divided into blocks of 4 subjects and each subject within a block is randomly assigned to one of the four study groups.

NCT ID: NCT06270862 Recruiting - Cognitive Change Clinical Trials

A Digital Active Aging Training Program for Older Adults

AAT
Start date: April 8, 2024
Phase: N/A
Study type: Interventional

The proposed project aims to develop and validate a multi-dimensional digital active aging program integrated with resilience to promote the biopsychosocial functions of older adults aged 60, including Chinese older immigrants in Canada (Study 1) and English-speaking White Canadian older adults (Study 2). The proposed study takes a typical pretest-training-posttest design. Pretest and posttest: a battery of outcome measures on physical, psychological, and social functions will be administered to all participants. Data will also be used to identify sociodemographic risk predictors for outcome variables (i.e., biopsychosocial functions and resilience). Training: the participants will be randomly assigned to three arms to receive 4 weeks of 16 training/practice/control treatment sessions delivered via Zoom. In the "active aging with resilience (AR)" condition, participants will complete physical, cognitive, and social engagement training modules, starting with a 30-min resilience-building module. The traditional "active aging" (AA) training involves the same multi-domain active aging training without the initial resilience-building module. The "workshop training" (WT) control condition involves workshops following the same 4-week schedule on aging-related topics.

NCT ID: NCT06260254 Recruiting - Sleep Disturbance Clinical Trials

Effects of Railway Vibration on Sleep and Disease

BioVib
Start date: February 5, 2024
Phase: N/A
Study type: Interventional

This study will investigate the biological mechanisms linking sleep disruption by vibration and noise, and the development of cardiometabolic disease. In a laboratory sleep study, the investigators will play railway vibration of different levels during the night. The investigators will also measure objective sleep quality and quantity, cognitive performance across multiple domains, self-reported sleep and wellbeing outcomes, and blood samples. Blood samples will be analyzed to identify metabolic changes and indicators of diabetes risk in different nights. Identifying biomarkers that are impacted by sleep fragmentation will establish the currently unclear pathways by which railway vibration exposure at night can lead to the development of diseases in the long term, especially metabolic disorders including diabetes.