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Somatic Disorders clinical trials

View clinical trials related to Somatic Disorders.

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NCT ID: NCT05558488 Completed - Insulin Resistance Clinical Trials

The Effect of a Meatless,Keto Restrictive Diet on Body Composition,Strength Capacity,Oxidative Stress,Immune Response

Start date: October 1, 2019
Phase: N/A
Study type: Interventional

The subject of doctoral dissertation: Assessment of the effects of a meatless, ketogenic restrictive diet on body composition, strength capacity, oxidative stress and immune response During planning of research and topic of the doctoral dissertation, it was considered how to modify a standard ketogenic diet rich in saturated fatty acids so that the use of this model of nutrition has the most anti-inflammatory effect. Therefore, it was decided to conduct a research to check whether a diet rich in omega-3 polyunsaturated fatty acids will show such an effect when following a high-fat diet. Hypotheses: 1. The ketogenic diet reduces systemic inflammation. 2.The ketogenic diet reduces oxidative stress. 3. The ketogenic diet reduces body fat. 4. A ketogenic diet does not worsen strength performance.

NCT ID: NCT05077020 Completed - Clinical trials for Autistic Spectrum Disorder

Somatic Diseases in Autistic Children

SDA
Start date: January 1, 2020
Phase:
Study type: Observational

For many reasons, medical monitoring in autistic patients is very difficult. This study is designed to determine the prevalence of comorbid diseases (neurological, cardiac, digestive, dental diseases…) in patients suffering from ASD to prevent them or diagnose them earlier.

NCT ID: NCT02573246 Completed - Depression Clinical Trials

Neuromodulation Enhanced Cognitive Restructuring: A Proof of Concept Study

Start date: March 2016
Phase: N/A
Study type: Interventional

Psychological treatments are effective, but take a long time and can be burdensome. Therefore, avenues to optimize behavioral treatments are needed. Despite important advancements, neuroscience has had a limited effect on psychotherapy development. Therefore, one paradigm shift would be to develop neuroscience informed behavioral treatments. The investigators identified from the literature a problem that affects several mental disorders (emotion dysregulation) and a neural circuit that underlies this important concern. They found that this circuit is dysfunctional in those with psychopathology but can be changed with treatment. The goal is in one session to train this brain network to operate more efficiently and to test the short and long term effects of this intervention. The investigators plan to engage this brain network using a traditional psychotherapy strategy (cognitive restructuring) and to enhance learning using repetitive transcranial magnetic stimulation (rTMS), a neuromodulation technique through which magnetic stimulation enhances the electrical activity in brain areas close to the scalp. The study team proposed two studies to examine this novel approach, In one of the studies 83 participants were enrolled and 47 eligible participants were divided into 3 groups. All participants were trained in emotion regulation by first being asked to remember an event where they experienced a negative emotion and then being instructed either to think differently about the event, or to wait. Participants simultaneously underwent either active (left or right side of brain) or sham rTMS. In a second study 65 participants were enrolled, and 31 were assigned to either active left or sham rTMS guided using neuroimaging results. Across both studies, the investigators measured regulation in the lab and during a-week long naturalistic assessment. Participants in the second study returned for a follow up neuroimaging visit at the end of this week. Participants returned for a one moth follow up assessment and to rate feasibility, acceptability, and provide feedback. This proof of concept set of studies demonstrated feasibility and preliminary efficacy for this approach, which opens new frontiers for neuroscience informed treatment development.