National Institutes of Health Clinical Center, 9000 Rockville Pike
Bethesda, Maryland, 20892, United States
NCT Number: NCT00846040
Popular weight loss strategies often involve reducing an individual's consumption of carbohydrates or fat. However, no controlled study has been carried out to evaluate the effects of reducing carbohydrate versus fat consumption while keeping the other nutrients at standard levels to maintain an individual's weight. Researchers are interested in investigating how different restrictions of carbohydrates or fats affect the many processes involved in weight loss, including brain activity and blood and brain chemical composition.
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Notify Me18 year–45 year
All sexes
Interventional
Phase 2
Bethesda, Maryland, 20892, United States
Popular weight loss strategies often prescribe a targeted reduction of dietary carbohydrate or fat. But surprisingly, no controlled human feeding study has ever investigated the effects of a selective reduction of dietary carbohydrate versus fat while keeping the other dietary macronutrients at their baseline weight-maintenance values. The present study was designed to address this knowledge gap and improve our understanding of how selective reduction of dietary fat versus carbohydrate may differentially impact the many feedback control processes that act to resist weight loss.
Objectives:
Eligibility:
Design:
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Exclusion criteria
Control Subjects
Inclusion criteria
Exclusion criteria
RF (selective reduction of 85% of baseline fat calories per day)
RC (selective reduction of 60% of baseline carbohydrate calories per day)
Dopamine D2 receptor availability is measured by positron emission tomography (PET) using the positron emitting compound [18F] fallypride which binds competitively with dopamine to the D2 receptor.
Functional MRI (fMRI) will be used to measure the effects of diet and weight loss on regional brain activity
Other names: Functional MRI
Positron emission tomography (PET) will be used to assess whether To assess whether brain activity and reward pathways are altered
Other names: Positron emission tomography
Time frame: Baseline and day 14
Respiratory quotient was calculated as the ratio of carbon dioxide production to oxygen consumption as measured in a metabolic chamber for at least 23 continuous hours on days 2 and 5 of the baseline diet and days 1, 4, and 6 of the reduced-energy diets.
Time frame: Baseline and 14 days
24 hour energy expenditure was measured in a respiratory chamber.
Time frame: Baseline and 14 days
Measured as the difference between dietary fat intake and fat oxidation by the body as measured in the respiratory chamber
Time frame: Day 2 of in-patient admission
The time-activity curves for [18F]fallypride tracer concentration in the ROIs were measured by PET and kinetic parameters were fit to a four compartment mathematical model (with the cerebellum used as the reference tissue). D2BP was expressed as the dimensionless ratio of rate constants quantifying binding and unbinding of tracer in the regions of interest.
Time frame: Day 2 of in-patient admission
The time-activity curves for [18F]fallypride tracer concentration in the ROIs were measured by PET and kinetic parameters were fit to a four compartment mathematical model (with the cerebellum used as the reference tissue). D2BP was expressed as the dimensionless ratio of rate constants quantifying binding and unbinding of tracer in the regions of interest.
Time frame: Day 2 of in-patient admission
The time-activity curves for [18F]fallypride tracer concentration in the ROIs were measured by PET and kinetic parameters were fit to a four compartment mathematical model (with the cerebellum used as the reference tissue). D2BP was expressed as the dimensionless ratio of rate constants quantifying binding and unbinding of tracer in the regions of interest.
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Nih
Selective Reduction of Dietary Carbohydrate Versus Fat: Effects on Metabolism, Endocrine Physiology, Brain Activity and Reward Circuitry
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