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Zheng Shi
Rutgers, The State Univ Of N.J.
$1,600,401
Attributed
$1,600,401
Total exposure
2
Grants
2
Lead (contact PI)
Attributed= this PI's even-split share of every grant they're on (the fair, additive number). Exposure = full size of all those grants. They are the sole PI on all grants (the two match).
Funding over time
peak $424.6K · FY2022–25$500K$375K$250K$125K$0
'22
'23
'24
'25
Funding mix
By agency
NIH$1,600,401 · 2
By mechanism
R35$1,208,135 · 1
R21$392,266 · 1
Top collaborators
No co-investigators on record.
Most similar at Rutgers, The State Univ Of N.J.
Same institution · by research overlap
- Mei Chee Tan$644,328
- Prabhas V Moghe$4,221,346
- Peng Jiang$7,549,401
- Vidya Ganapathy$644,328
- Christopher R Gignoux$7,600,065
Others in their field
Other Rising Stars on “Patch Clamp”
- Simon Vu · Equator Therapeutics, Inc.$3,142,274
- Xiaobing Zhang · Florida State University$2,571,302
- Pradoldej Sompol · University Of Kentucky$2,552,556
- Brigitte Lavoie · University Of Vermont & St Agric College$1,883,661
- Theanne Nicole Griffith · University Of California At Davis$1,839,544
- Idan Segev · Columbia Univ New York Morningside$1,722,743
Research focus
Patch ClampPathologicMutationNeuronsMembraneMorphologic ArtifactsAnimalsCytoplasmic GranulesNerve DegenerationNeurodegenerative DisordersMediatingCell LineMolecularMicrotubulesCellsCell SurfaceCellular StructuresBiologicalExperimental StudyLiquid SubstanceInsightGrowthAutophagocytosisPharmaceutical Preparations
Grant awards (6)
Understanding the viscoelasticity, surface tension, and membrane interactions of biomolecular condensates in live cells$387,517
R35 · FY2025 · GM · contact PI
Understanding the viscoelasticity, surface tension, and membrane interactions of biomolecular condensates in live cells$377,402
R35 · FY2024 · GM · contact PI
Understanding the viscoelasticity, surface tension, and membrane interactions of biomolecular condensates in live cells$225,842
R35 · FY2023 · GM · contact PI
Micropipette-based quantification of neuronal protein condensates in live cells$185,019
R21 · FY2023 · DA · contact PI
Understanding the viscoelasticity, surface tension, and membrane interactions of biomolecular condensates in live cells$217,374
R35 · FY2022 · GM · contact PI
Micropipette-based quantification of neuronal protein condensates in live cells$207,247
R21 · FY2022 · DA · contact PI