Area of research
Physiology · Molecular Biology
Research interest
Research interests include Diet and metabolism studies, Dietary Effects on Health, Gut microbiota and health, and Nutritional Studies and Diet.
Fasting, ketogenic, and anti-inflammatory diets in multiple sclerosis: a randomized controlled trial with 18-month follow-up
Sex hormone-dependent host-microbiome interactions and cardiovascular risk (XCVD): design of a longitudinal multi-omics cohort study
The Berlin-Buch respiration chamber for energy expenditure measurements
Berlin Registry of Neuroimmunological entities (BERLimmun): protocol of a prospective observational study
Increased Salt Intake Decreases Diet-Induced Thermogenesis in Healthy Volunteers: A Randomized Placebo-Controlled Study
Hypoxia Differentially Affects Healthy Men and Women During a Daytime Nap With a Dose-Response Relationship: a Randomized, Cross-Over Pilot Study
Prediction of activity-related energy expenditure under free-living conditions using accelerometer-derived physical activity
Fasting alters the gut microbiome reducing blood pressure and body weight in metabolic syndrome patients
Salt Transiently Inhibits Mitochondrial Energetics in Mononuclear Phagocytes
Assessing the (anti)-inflammatory potential of diets
Effects of Daytime Dry Fasting on Hydration, Glucose Metabolism and Circadian Phase: A Prospective Exploratory Cohort Study in Bahá'í Volunteers
Ketogenic diet and fasting diet as Nutritional Approaches in Multiple Sclerosis (NAMS): protocol of a randomized controlled study
Quantifying technical confounders in microbiome studies
Dysphagia Affecting Quality of Life in Cerebellar Ataxia—a Large Survey
Effect of a probiotic on blood pressure in grade 1 hypertension (HYPRO): protocol of a randomized controlled study
Hypoxia and exercise interactions on skeletal muscle insulin sensitivity in obese subjects with metabolic syndrome: results of a randomized controlled trial
Metabolic, Mental and Immunological Effects of Normoxic and Hypoxic Training in Multiple Sclerosis Patients: A Pilot Study
Salt-responsive gut commensal modulates TH17 axis and disease
Branched-chain amino acid catabolism rather than amino acids plasma concentrations is associated with diet-induced changes in insulin resistance in overweight to obese individuals
Salt-responsive gut commensal modulates TH17 axis and disease
RePEc: Research Papers in Economics 2017cited by 0position: middle
Differential response of the natriuretic peptide system to weight loss and exercise in overweight or obese patients
Long-Lasting Improvements in Liver Fat and Metabolism Despite Body Weight Regain After Dietary Weight Loss