echoMRI data
Access status:
Open Access
Type
DatasetAuthor/s
Mojadadi, AlbaraaAbstract
This study investigates the effects of different selenium compounds on body composition in mice using EchoMRI data. The experiment involved 40 mice divided into five groups, each consisting of eight mice: Control, Sodium Selenite, Methylselenocysteine, Diphenyl Diselenide, and ...
See moreThis study investigates the effects of different selenium compounds on body composition in mice using EchoMRI data. The experiment involved 40 mice divided into five groups, each consisting of eight mice: Control, Sodium Selenite, Methylselenocysteine, Diphenyl Diselenide, and Nanoselenium. Over the course of the study, the mice were fed diets supplemented with one of the specified selenium compounds. EchoMRI technology was utilized to non-invasively assess body composition, including fat mass, lean mass, and total body water, at multiple time points. The resulting dataset provides detailed information on how each selenium compound affects body composition over time. Analysis of this EchoMRI data reveals significant differences in body composition changes among the groups, indicating that the various forms of selenium have distinct impacts on fat and lean mass distribution. These findings contribute to a deeper understanding of how dietary selenium influences body composition, with potential implications for nutritional strategies and health outcomes related to selenium supplementation.
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See moreThis study investigates the effects of different selenium compounds on body composition in mice using EchoMRI data. The experiment involved 40 mice divided into five groups, each consisting of eight mice: Control, Sodium Selenite, Methylselenocysteine, Diphenyl Diselenide, and Nanoselenium. Over the course of the study, the mice were fed diets supplemented with one of the specified selenium compounds. EchoMRI technology was utilized to non-invasively assess body composition, including fat mass, lean mass, and total body water, at multiple time points. The resulting dataset provides detailed information on how each selenium compound affects body composition over time. Analysis of this EchoMRI data reveals significant differences in body composition changes among the groups, indicating that the various forms of selenium have distinct impacts on fat and lean mass distribution. These findings contribute to a deeper understanding of how dietary selenium influences body composition, with potential implications for nutritional strategies and health outcomes related to selenium supplementation.
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Date
2024-08-16Faculty/School
Faculty of Medicine and Health, School of Medical SciencesDepartment, Discipline or Centre
Redox biologySubjects
echoMRIShare