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Jennifer Elizabeth Phillips-Cremins

University Of Pennsylvania

$16,516,249
Attributed
$26,708,248
Total exposure
10
Grants
9
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 $4.1M · FY200925
$5M$3.8M$2.5M$1.3M$0
'09
'10
'11
'12
'13
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23
'24
'25

Funding mix

By agency

NIH$26,708,248 · 10

By mechanism

U01$12,203,015 · 3
DP1$5,659,261 · 1
R01$5,470,569 · 2
DP2$2,400,000 · 1
R37$555,605 · 1
S10$258,800 · 1

Top collaborators

Most similar at University Of Pennsylvania

Same institution · by research overlap

Others in their field

Top investigators on “Gene Expression

Research focus

Gene ExpressionGenomeChromatinGenetic TranscriptionMapsEngineeringEpigenetic Process3-DimensionalLinkInsightArchitectureGenesCellsProteinsGenome-WideCell TypeNeuronsStructureLightTechnologyPatternLengthResolutionCell Nucleus

Grant awards (40)

From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$881,203
DP1 · FY2025 · MH · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$555,605
R37 · FY2025 · MH · contact PI
From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$228,058
DP1 · FY2025 · MH · contact PI
From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$1,137,500
DP1 · FY2024 · MH · contact PI
Engineering and Imaging 3D genome structure-function dynamics across time scales$1,113,235
U01 · FY2024 · DK · contact PI
Single-cell dissection of chromatin architecture mechanisms connecting pathologic instability and transcriptional silencing$612,282
U01 · FY2024 · DA · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$541,806
R01 · FY2024 · MH · contact PI
Elucidating the 3-D epigenetic determinants of activity-dependent gene expression in mammalian neurons$430,572
R01 · FY2024 · NS · contact PI
From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$1,137,500
DP1 · FY2023 · MH · contact PI
Engineering and Imaging 3D genome structure-function dynamics across time scales$1,122,096
U01 · FY2023 · DK · contact PI
Single-cell dissection of chromatin architecture mechanisms connecting pathologic instability and transcriptional silencing$620,604
U01 · FY2023 · DA · contact PI
Elucidating the 3-D epigenetic determinants of activity-dependent gene expression in mammalian neurons$507,673
R01 · FY2023 · NS · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$433,900
R01 · FY2023 · MH · contact PI
Linking epigenetics to electrophysiology using high-throughput microelectrode array-based hardware with simultaneous optogenetic activation$258,800
S10 · FY2023 · OD · contact PI
From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$1,137,500
DP1 · FY2022 · MH · contact PI
Engineering and Imaging 3D genome structure-function dynamics across time scales$1,108,388
U01 · FY2022 · DK · contact PI
Single-cell dissection of chromatin architecture mechanisms connecting pathologic instability and transcriptional silencing$628,682
U01 · FY2022 · DA · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$471,441
R01 · FY2022 · MH · contact PI
Elucidating the 3-D epigenetic determinants of activity-dependent gene expression in mammalian neurons$460,091
R01 · FY2022 · NS · contact PI
From 3D genomes to neural connectomes: Higher-order chromatin mechanisms encoding long-term memory$1,137,500
DP1 · FY2021 · MH · contact PI
Engineering and Imaging 3D genome structure-function dynamics across time scales$1,128,347
U01 · FY2021 · DK · contact PI
Single-cell dissection of chromatin architecture mechanisms connecting pathologic instability and transcriptional silencing$636,615
U01 · FY2021 · DA · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$619,110
R01 · FY2021 · MH · contact PI
Elucidating the 3-D epigenetic determinants of activity-dependent gene expression in mammalian neurons$460,505
R01 · FY2021 · NS · contact PI
Engineering and Imaging 3D genome structure-function dynamics across time scales$1,181,522
U01 · FY2020 · DK · contact PI
Single-cell dissection of chromatin architecture mechanisms connecting pathologic instability and transcriptional silencing$643,211
U01 · FY2020 · DA · contact PI
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$551,288
R01 · FY2020 · MH · contact PI
Elucidating the 3-D epigenetic determinants of activity-dependent gene expression in mammalian neurons$474,500
R01 · FY2020 · NS · contact PI
Engineering and visualizing genome folding at high spatiotemporal resolution$717,799
U01 · FY2019 · HL
Connecting 3D genome misfolding to transcriptional silencing in fragile X syndrome$519,683
R01 · FY2019 · MH · contact PI
Engineering and visualizing genome folding at high spatiotemporal resolution$271,000
U01 · FY2019 · HL
Engineering and visualizing genome folding at high spatiotemporal resolution$150,000
U01 · FY2019 · HL
Engineering and visualizing genome folding at high spatiotemporal resolution$723,308
U01 · FY2018 · HL
Engineering and visualizing genome folding at high spatiotemporal resolution$91,588
U01 · FY2018 · HL
Engineering and visualizing genome folding at high spatiotemporal resolution$728,653
U01 · FY2017 · HL
Engineering and visualizing genome folding at high spatiotemporal resolution$725,685
U01 · FY2016 · HL
Engineering 3-D Epigenome Topology with Light$2,400,000
DP2 · FY2015 · MH · contact PI
Insulator-mediated chromatin organization during neural lineage commitment$56,711
F32 · FY2011 · NS · contact PI
Insulator-mediated chromatin organization during neural lineage commitment$54,299
F32 · FY2010 · NS · contact PI
Insulator-mediated chromatin organization during neural lineage commitment$49,988
F32 · FY2009 · NS · contact PI