基本信息
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Career Trajectory
Bio
A detailed look at the biological world generates endless new problems in fluid mechanics - new in the sense that they occur in a basic setup or regime very different from problems in the physical world. A lot of my research activity is centered on developing quantitative models for novel questions in biological fluid mechanics using a combination of analytical derivations, asymptotic analysis, and numerical computations. Past work in this area has included fluid-structure interactions at low Reynolds numbers, many-body problems with long-range hydrodynamic interactions, transport in non-Newtonian flows, and propulsion near boundaries. Self-propulsion also plays an important role in the design of synthetic devices, with bioengineering applications ranging from sensing to therapeutics. I have in the past developed models for synthetic locomotion involving fluid motion, including the dynamics of helical field-driven swimmers, the design of flexible nanowire motors and their application for drug delivery, models for Marangoni transport, friction-based locomotion, catalytic and acoustic self-propulsion, and the design of new bio-inspired pumps.
Research Interests
Papers共 363 篇Author StatisticsCo-AuthorSimilar Experts
By YearBy Citation主题筛选期刊级别筛选合作者筛选合作机构筛选
时间
引用量
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期刊级别
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合作机构
PHYSICAL REVIEW LETTERSno. 10 (2024): 108301-108301
arxiv(2024)
Soft matterno. 24 (2024): 4744-4764
arxiv(2024)
Cited0Views0Bibtex
0
0
crossref(2024)
PloS oneno. 7 (2024): e0307765-e0307765
Light: Science & Applicationsno. 1 (2024): 1-11
Manuel Halte,Philipp F Popp,David Hathcock, John Severn, Svenja Fischer,Christian Goosmann,Adrien Ducret,Emmanuelle Charpentier,Yuhai Tu,Eric Lauga,Marc Erhardt,Thibaud T Renault
bioRxiv : the preprint server for biology (2024)
Royal Society open scienceno. 6 (2023): 230223
JOURNAL OF FLUID MECHANICS (2023)
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Author Statistics
#Papers: 365
#Citation: 16411
H-Index: 56
G-Index: 116
Sociability: 6
Diversity: 0
Activity: 2
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