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Obesity clinical trials

View clinical trials related to Obesity.

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NCT ID: NCT04290910 Completed - Obesity Clinical Trials

A Pilot Study Evaluating a Clinically Managed Weight Loss Program

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

This is a pilot study evaluating a clinically managed weight loss program. The program consists of a 17-week weight loss program which involves a multidisciplinary team where personalized interventions are given to participants from the team based on the participants goals.

NCT ID: NCT04289636 Completed - Obesity Clinical Trials

Self-compassion and Nutrition (SCAN) Study

Start date: September 1, 2020
Phase: N/A
Study type: Interventional

The purpose of this study is to examine the feasibility of two approaches for improving long-term weight loss success among individuals with severe obesity. All participants will receive a 15-week, standard behavioral weight loss program followed by either 8 weeks of a mindfulness self-compassion intervention or 8 weeks of a nutrition and cooking education intervention (determined via randomization procedures). Assessments of weight, physical activity, and other weight-related and psychosocial factors will occur at baseline, 4 months, 6 months, and 9 months.

NCT ID: NCT04289597 Completed - Obesity Clinical Trials

Evaluation of Difficult Airway With Ultrasonography

Start date: August 20, 2020
Phase:
Study type: Observational

As a result of anatomical and physiological changes in obese patients, airway management can be challenging. Ultrasound measurement of neck anterior soft tissues combined with recommended predictive tests may increase the ability to predict the difficult airway. In this study we planned to evaluate the measurement of neck anterior soft tissues by ultrasound in obese patients before anesthesia induction to anticipate difficult mask ventilation, difficult laryngoscopy, and intubation.

NCT ID: NCT04288401 Completed - Obesity Clinical Trials

Prevalence of Osteosarcopenic Obesity in Older Adults

Start date: February 25, 2020
Phase:
Study type: Observational

Osteosarcopenic Obesity (OSO) is a syndrome characterized by the loss of bone and muscle in addition to increase in the fat tissue as a result of aging process. It is the latest point of impairment in the bone,muscle and adipose tissue in older adults. OSO, as the name suggests, is the combination of three syndrome frequently encountered in the elderly: osteopenia/osteoporosis, sarcopenia and obesity. The aims of study are to determine the prevalence of OSO syndrome in community-dwelling adults of Turkey and determine the possible factors regarding risk of falling in this population

NCT ID: NCT04287153 Completed - Obesity Clinical Trials

Cryotherapy and Body Slimming

Cryotherapy
Start date: September 17, 2017
Phase: N/A
Study type: Interventional

The purpose of this study is to evaluate the efficacy of cryotherapy on the slimming of subcutaneous fat mass in the abdomen and saddlebags. Cryotherapy is a completely non-invasive method that induces a selective reduction of fat cells by localized and controlled cooling in areas such as the abdomen, flanks, inner knees, inner thighs, back and arms. Adipose tissue is composed of two types of tissue: white and brown adipose tissue. Studies have shown that exposure to cold induces an increase in the number of brown adipocytes (detected by PET/CT-scan) under the effect of the hormone irisin produced by the muscles. In addition, another study has shown that prolonged exposure to cold reduces the size of brown adipocytes leading to thermogenesis, suggesting that cold exposure may contribute to the control of obesity. The freezing technology of this cryotherapy unit allows the temperature of the subcutaneous adipose tissue to move almost instantaneously from -6°C to -10°C, gradually causing the reduction of subcutaneous adipose tissue.

NCT ID: NCT04284683 Completed - Obesity Clinical Trials

Physical Activity, Meal Composition, and RMR Among Children Adolescent and Adults

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

Resting metabolic rate (RMR) is the amount of energy the body uses at rest, and accounts for 60%-70% of daily energy expenditure. Although measured at rest, RMR is strongly influenced by physical activity because the increased metabolic rate during exercise is partially carried over even when exercise stops. Therefore, persons who are physically active maintain higher RMR and less body fat than do sedentary controls. It is well known that high energy intake stimulates whereas caloric restriction reduces RMR. Food thermogenesis corresponds to approximately 10% of daily energy expenditure. Diet-induced thermogenesis is greater on a high protein and carbohydrate diet than on a fat diet. Other factors the affect RMR are age (RMR tends to decline progressively over the life span) and body composition (lean body mass is regarded as the main determinant of RMR). However, the research regarding the effect of a specific combination of macronutrients and exercise on RMR is scarce. Therefore, the aim of the current study is to assess the combined effect of a meal composition and physical activity on RMR in normal weight and overweight children, adolescents and adults.

NCT ID: NCT04283318 Completed - Healthy Clinical Trials

Prolonged Fasting on Glucose Metabolism and Hormonal Regulation in Healthy, Obese and Subjects With Type 2 Diabetes

PROLOG
Start date: June 13, 2018
Phase: N/A
Study type: Interventional

In a previous study investigating the effects of intermittent fasting, our research group found evidence for higher glucose excursions and a reduced insulin response after a 36 hour fasting period as compared to an overnight fasting period in healthy subjects. The aim of this research project is to investigate the effect of short and midterm fasting (12 hours versus 36 hours) on glucose metabolism, glucose regulatory hormones, insulin secretion and resting energy expenditure in healthy and obese people as well as in patients with type 2 diabetes.

NCT ID: NCT04282837 Completed - Obesity Clinical Trials

Machine Learning for Reclassification of Obesity

Start date: March 1, 2020
Phase:
Study type: Observational

The goal of this study is to employ or develop computational modeling techniques for the precise reclassification of obesity into subgroups. Clinical features, risks of noncommunicable diseases, as well as weight loss effects of bariatric surgery will also be studied and compared within the subgroups.

NCT ID: NCT04280991 Completed - Obesity Clinical Trials

Hypoxic Exercise and Glucose Metabolism

HYTRIM
Start date: July 22, 2019
Phase: N/A
Study type: Interventional

The obesity epidemic calls for new therapeutic opportunities to prevent and treat obesity and its comorbidities amongst which are insulin resistance and cardiovascular diseases. Recent evidence suggests that tissue oxygenation plays an important role in cardiometabolic health. Remarkably, individuals residing at high altitude (hypobaric hypoxia) are less prone to develop type 2 diabetes mellitus as compared to individuals living at sea-level (normobaric normoxia). Furthermore, there is evidence to suggest that normobaric hypoxia exposure may improve glucose homeostasis and insulin sensitivity in both rodents and humans. The level of physical activity is an important determinant of insulin sensitivity and glucose homeostasis. It is well established that performing physical activity improves glucose uptake in the short term, and glycemic control in the long term. Interestingly, recent studies have demonstrated that an acute bout of exercise under hypoxic conditions (inhalation of air containing less oxygen) may lead to a more pronounced improvement in plasma glucose concentrations and/or insulin sensitivity as compared to normoxic exercise. However, the effects of repeated hypoxic exercise bouts on glucose profile throughout the day (i.e. 24h continuous glucose monitoring) remain elusive. In the present randomized, placebo-controlled, single-blind, cross-over study study, the investigators will investigate the effects of exercise under mild normobaric hypoxic conditions (FiO2, 15%) for 4 consecutive days (2 x 30-min cycling session at 50% WMAX) on postprandial substrate metabolism and 24h-glucose level in overweight/obese subjects with impaired glucose tolerance. The investigators hypothesize that 4 consecutive days of exposure to mild hypoxia while performing moderate intensity exercise improves glucose homeostasis in overweight and obese individuals with impaired glucose homeostasis.

NCT ID: NCT04279600 Completed - Obesity Clinical Trials

Taurine Supplementation and Training Effects on Energy Metabolism, Inflammation and Oxidative Stress in Obese Women

Taurine
Start date: May 1, 2017
Phase: N/A
Study type: Interventional

Taurine supplementation researches have increased due to its antioxidant and anti-inflammatory actions, and its ability to modulate lipid metabolism by stimulating the expression of proteins that regulates mitochondrial biogenesis and increases respiratory function (PGC-1α and PPAR) and irisin release when associated to exercise. Since obesity can induce metabolic disorders including abnormal production of adipokines and activation of pro-inflammatory signaling pathways also mitochondrial metabolism dysfunction in the adipose tissue, the use of taurine would be a new strategy for obesity prevention and treatment. Moreover, the association of taurine and exercise could improve exercise effects, promote higher energy expenditure and increase mitochondrial respiration, consequently resulting in weight loss. Therefore, the present investigation aims to evaluate the effects of the association of taurine supplementation and a combined exercise training protocol (aerobic and strength) on resting energy expenditure, weight, body composition, blood markers of inflammation and oxidative stress, telomeres length, and mitochondrial function and the expression of genes that regulates energy metabolism and lipid oxidation in the white adipose tissue in obese women.