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Discover 12,991 clinical trials near San Francisco, California. Find research studies in your area.
Showing 11261-11280 of 12,991 trials
NCT01308710
Children with high cholesterol levels are especially vulnerable and are at high risk for early onset coronary heart disease (CHD). Endothelial dysfunction, the earliest phase of CHD, is present in children with elevated cholesterol levels as early as 8 years of age. The long term objective of this study is to develop dietary interventions for the prevention and treatment of endothelial dysfunction in children with common lipid disorders including familial hypercholesterolemia (FH) and familial combined hyperlipidemia (FCH). Increasing evidence suggests that the Mediterranean diet and ω-3 fatty acids found in fish have cardioprotective effects. The specific aims of the study are to: determine whether a Mediterranean diet alone or combined with ω-3 fatty acid (eicosapentaenoic acid)improves endothelial function; evaluate the effects of the dietary interventions on lipids and lipoprotein subclasses; evaluate the effects of the dietary interventions on biomarkers for oxidative stress and inflammation. This study is a randomized, double-blind, placebo-controlled clinical trial that includes 34 children (ages 8-17) treated with the Mediterranean diet and ω-3 fatty acid supplements. A dietary educational behavioral intervention will be conducted over 6 months with individual counseling and group sessions. Endothelial function will be measured noninvasively by high resolution ultrasound of the brachial artery at baseline, 6, 12, 18 and 24 weeks. This study is unique because it is a new intervention designed for children at high risk for early CHD with a dietary component and supplementation with ω-3 fatty acids. If effective, this intervention would be broadly applicable in the community and lend valuable insight about dietary therapy to prevent the progression of CHD in hyperlipidemic children.
NCT00807820
This is a phase I study to evaluate the feasibility and safety of using MRI/MRS to identify the dominant intraprostatic lesion (DIL) and to selectively boost the lesion using inverse planned high dose rate (HDR) brachytherapy. The main objective is to exploit the ability of MRI/MRS to identify cancer regions within the prostate or the dominant intraprostatic lesions (DIL). The imaging data will be combined with the treatment planning CT images to define a treatment plan that will boost the dose delivered to the DIL up to 150% of the prescribed dose. Dose to the whole prostate and the dose delivered to adjacent organs will not change. This is accomplished by using inverse treatment planning software that can focus normally occurring high dose regions within the target volume to coincide with the DIL. After enrollment, each patient will have a MRI/MRS before starting treatment. Hormonal therapy and external beam radiotherapy will be given based on current standard of practice. During HDR brachytherapy, information about the location of tumor within the prostate will be used to design the brachytherapy treatment plan. We will try to increase dose to DIL by coincide existing high dose region on DIL using inverse planning software. Dose to prostate, and adjacent structure will remain the same as the current treatment practice. Timing and the delivery of brachytherapy will not change from our current practice. After the treatment, each patient will remain on study and follow for 12 months and treatment toxicity will be evaluated. A two-stage study design will be applied with a stopping rule for safety. Once a patient comes off study he will be routinely followed for disease outcome and any late toxicities.