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Scott S Verbridge

Virginia Polytechnic Inst And St Univ

$1,934,758
Attributed
$3,937,267
Total exposure
5
Grants
3
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.

Funding over time

peak $660.5K · FY201423
$1M$750K$500K$250K$0
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23

Funding mix

By agency

NIH$3,937,267 · 5

By mechanism

R01$2,786,011 · 2
R21$1,151,256 · 3

Top collaborators

Most similar at Virginia Polytechnic Inst And St Univ

Same institution · by research overlap

Others in their field

Top investigators on “In Vivo

Research focus

In VivoAnimal ModelTumorCellsTissuesBaseCancer CellNeoplastic CellPhysiologicalMalignant NeoplasmsBlood VesselsCancer TherapyShapesEngineeringTissue EngineeringBrainBrain NeoplasmsExtracellular MatrixChemotherapyIn Vitro3-DimensionalValidationTumor MicroenvironmentOxygen

Grant awards (14)

Combining modeling and experiments to study the evolution of cells with altered ploidy$351,799
R01 · FY2023 · GM
Combining modeling and experiments to study the evolution of cells with altered ploidy$344,074
R01 · FY2022 · GM
Combining modeling and experiments to study the evolution of cells with altered ploidy$340,673
R01 · FY2021 · GM
High-frequency Irreversible Electroporation (H-FIRE) combinatorial GBM treatment$319,785
R01 · FY2021 · CA
High-frequency Irreversible Electroporation (H-FIRE) combinatorial GBM treatment$353,192
R01 · FY2020 · CA
A Tissue Engineering Approach to Analyzing Host-Microbe Interactions in Cancer$196,250
R21 · FY2020 · CA · contact PI
High-frequency Irreversible Electroporation (H-FIRE) combinatorial GBM treatment$382,130
R01 · FY2019 · CA
A Tissue Engineering Approach to Analyzing Host-Microbe Interactions in Cancer$162,377
R21 · FY2019 · CA · contact PI
High-frequency Irreversible Electroporation (H-FIRE) combinatorial GBM treatment$359,874
R01 · FY2018 · CA
High-frequency Irreversible Electroporation (H-FIRE) combinatorial GBM treatment$334,484
R01 · FY2017 · CA
Targeted electric field therapy for malignant infiltrative glioma$206,723
R21 · FY2016 · CA · contact PI
3D micro-addressable tissue models to understand spatiotemporal heterogeneity in transcriptional regulation$220,830
R21 · FY2015 · EB · contact PI
Targeted electric field therapy for malignant infiltrative glioma$179,426
R21 · FY2015 · CA · contact PI
3D micro-addressable tissue models to understand spatiotemporal heterogeneity in transcriptional regulation$185,650
R21 · FY2014 · EB · contact PI