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Energy status and ovarian follicular development
Li Meng
Human and Animal Physiology
WIAS
Research output
:
Thesis
›
internal PhD, WU
Overview
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Dive into the research topics of 'Energy status and ovarian follicular development'. Together they form a unique fingerprint.
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Biochemistry, Genetics and Molecular Biology
Folliculogenesis
100%
Uncoupling Protein
90%
Synapsin I
80%
Immunostaining
60%
Skeletal Muscle
60%
Messenger RNA
60%
Autophagy
50%
Cell Death
50%
Insulin-Like Growth Factor 1
40%
Ovulation
40%
Thyroid Hormone
40%
Programmed Cell Death
40%
Metabolic Pathway
30%
Light Chain
30%
FGF21
30%
Caspase 3
30%
Protein Content
20%
Gene Expression
20%
Oxidative Stress
20%
Superoxide Dismutase
20%
Newborn Period
20%
Blood Plasma
20%
Western Blot
10%
Quantitative Reverse Transcription Polymerase Chain Reaction
10%
Catalase
10%
Basal Metabolic Rate
10%
Energy Metabolism
10%
Reproductive Success
10%
Energy Expenditure
10%
Glutathione S-Transferase
10%
Blood Level
10%
Wild Type Mouse
10%
Body Size
10%
Downregulation
10%
Follicle-Stimulating Hormone
10%
Conception
10%
Triiodothyronine
10%
Liothyronine
10%
Reproductive Health
10%
Glutathione Peroxidase
10%
Thioredoxin Reductase
10%
Protein Kinase B
10%
Laser Capture Microdissection
10%
Thyroid-Stimulating Hormone
10%
Peroxiredoxin
10%
Luteinizing Hormone
10%
Veterinary Science and Veterinary Medicine
Folliculogenesis
100%
Follicle
100%
Antral Follicle
75%
Mouse
62%
Hypothyroidism
43%
Skeletal Muscle
37%
Rat
31%
Ovarian Follicle
31%
Ovulation
25%
Insulin-Like Growth Factor 1
25%
Thyroid Hormone
25%
Granulosa Cell
18%
Blood Plasma
18%
Corpus Luteum
18%
Euthyroid
12%
Thyroid
12%
Hormone Determination
12%
Follicle-Stimulating Hormone
6%
Thyroid-Stimulating Hormone
6%
Liothyronine
6%
Triiodothyronine
6%
Luteinizing Hormone
6%
Quantitative Reverse Transcription Polymerase Chain Reaction
6%
Ovary Follicle Atresia
6%
Follicular Atresia
6%
Necropsy
6%