Keyphrases
Adipose Tissue
100%
Abdominal
100%
Mitochondrial Respiration
100%
Lower Body
100%
Human Adipose
100%
Human Adipocytes
100%
Adipocyte Tissue
100%
Adipose-derived Stem Cells
85%
Multipotent
85%
Postmenopausal Women
42%
Obesity
28%
Normal Weight
28%
Subcutaneous Adipose Tissue
28%
Protein Expression
28%
Mitochondrial DNA Content
28%
Oxidative Phosphorylation (OXPHOS)
28%
Oxygen Consumption Rate
28%
Mitochondrial Oxygen Consumption
28%
Femoral Adipose Tissue
28%
Fractional Tissue Oxygen Extraction
28%
Carbon Dioxide Release
28%
Abdominal Adipose Tissue
14%
Adipose Tissue Biopsy
14%
Abdominal Obesity
14%
University of Birmingham
14%
Cardiometabolic Risk
14%
Upper Body
14%
Birmingham
14%
Body Fat
14%
Birmingham UK
14%
Obesity-related Complications
14%
Fractional Extraction
14%
Elizabeth I
14%
INIS
humans
100%
comparative evaluations
100%
mitochondria
100%
adipose tissue
100%
respiration
100%
stem cells
66%
oxygen
55%
obesity
44%
women
33%
in vivo
33%
extraction
33%
dna
22%
phosphorylation
22%
proteins
22%
weight
22%
oxidation
22%
carbon dioxide
22%
consumption rates
22%
diseases
11%
biopsy
11%
risks
11%
hospitals
11%
design
11%
protection
11%
fats
11%
in vitro
11%
universities
11%
Biochemistry, Genetics and Molecular Biology
Stem Cell
100%
Adipocyte
100%
Mitochondrial Respiration
100%
Postmenopause
50%
Oxygen Consumption
33%
Oxidative Phosphorylation
33%
Protein Expression
33%
DNA Content
33%
Tyrosine Phosphorylation
33%
Mitochondrial DNA
33%
Cross Sectional Study
16%
Body Fat
16%
Medicine and Dentistry
Adipose Tissue
100%
Mitochondrial Respiration
100%
Adipocyte
100%
Adipose Derived Stem Cell
66%
Postmenopause
33%
Oxidative Phosphorylation
22%
Oxygen Consumption
22%
Protein Expression
22%
Mitochondrial DNA
22%
Carbon Dioxide
22%
Cross Sectional Study
11%
In Vitro
11%
Body Fat
11%
Abdominal Obesity
11%
Biopsy Technique
11%
Diseases
11%
Nursing and Health Professions
Mitochondrial DNA
100%
DNA Content
100%
Carbon Dioxide
100%
Body Fat
50%
Cross-Sectional Study
50%
Abdominal Obesity
50%
Biopsy Technique
50%
Diseases
50%
Immunology and Microbiology
Mitochondrial Respiration
100%
Adipose Tissue
100%
Adipocyte
100%
Adipose Derived Stem Cell
66%
Postmenopause
33%
Oxidative Phosphorylation
22%
Oxygen Consumption
22%
Protein Expression
22%
DNA Content
22%
Body Fat
11%
Pharmacology, Toxicology and Pharmaceutical Science
Mitochondrial DNA
100%
Carbon Dioxide
100%
Cross-Sectional Study
50%
Abdominal Obesity
50%
Diseases
50%