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The fundamental interest is to develop scalable mathematical and numerical analysis techniques that increase the predictive fidelity of biomolecular network models, by incorporating physico-chemical constraints, motivated by optimality principles. Their applied interest is in the aetiopathogenesis and amelioration of neurodegenrative disease, especially Parkinson’s disease. Model predictions are used for optimal experimental design and compared with quantitative experimental data, including that obtained from microfluidic cell cultures of dopaminergic neurons, derived from normal and Parkinsonian human subjects using stem cell biology techniques.
Research Interests
Papers共 104 篇Author StatisticsCo-AuthorSimilar Experts
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Almut Heinken, Timothy Otto Hulshof,Bram Nap,Filippo Martinelli,Arianna Basile, Amy O'Brolchain, Neil Francis O'Sullivan, Celine Gallagher, Eimer Magee, Francesca McDonagh, Ian Lalor, Maeve Bergin, Phoebe Evans, Rachel Daly, Ronan Farrell, Rose Mary Delaney, Saoirse Hill, Saoirse Roisin McAuliffe, Trevor Kilgannon,Ronan M T Fleming,Cyrille C Thinnes,Ines Thiele
Cell systemspp.101196-101196, (2025)
Farid Zare,Ronan M. T. Fleming
PROTEIN SCIENCEno. 10 (2024)
Luojiao Huang,German Preciat, Jesus Alarcon-Gil, Edinson L. Moreno,Agnieszka B. Wegrzyn,Ines Thiele,Emma L. Schymanski, Amy C Harms,Ronan MT Fleming,Thomas Hankemeier
biorxiv(2024)
medrxiv(2024)
ANNALS OF NEUROLOGY (2024): S230-S231
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biorxiv(2024)
Bioinformaticsno. 9 (2023)
COMMUNICATIONS BIOLOGYno. 1 (2023)
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Author Statistics
#Papers: 104
#Citation: 10426
H-Index: 41
G-Index: 89
Sociability: 6
Diversity: 3
Activity: 13
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