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Michael A Beer

Johns Hopkins University

$9,455,333
Attributed
$14,146,159
Total exposure
5
Grants
4
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 $2.3M · FY201325
$2.5M$1.9M$1.3M$625K$0
'13
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23
'24
'25

Funding mix

By agency

NIH$14,146,159 · 5

By mechanism

U01$9,614,276 · 2
R01$4,142,908 · 2
R56$388,975 · 1

Top collaborators

Most similar at Johns Hopkins University

Same institution · by research overlap

Others in their field

Top investigators on “Maps

Research focus

MapsEnhancersVariantCellsBinding SitesRegulatory ElementTissuesElementsResolutionComputing MethodologiesTranscription FactorData SetCell TypePhenotypeDesignGenomicsGeneticTranscriptome SequencingChip-SeqMachine LearningReporterTrainingEndodermGenes

Grant awards (23)

Genomic control of gene regulatory networks governing early human lineage decisions$1,303,398
U01 · FY2025 · HG
Sequence-based Machine Learning for Inference of Dynamic Cell State Gene Network Models$449,094
R01 · FY2025 · HG · contact PI
Genomic control of gene regulatory networks governing early human lineage decisions$1,303,398
U01 · FY2024 · HG
Sequence-based Machine Learning for Inference of Dynamic Cell State Gene Network Models$461,554
R01 · FY2024 · HG · contact PI
Genomic control of gene regulatory networks governing early human lineage decisions$238,730
U01 · FY2024 · HG
Genomic control of gene regulatory networks governing early human lineage decisions$1,330,000
U01 · FY2023 · HG
Sequence-based Machine Learning for Inference of Dynamic Cell State Gene Network Models$463,906
R01 · FY2023 · HG · contact PI
Genomic control of gene regulatory networks governing early human lineagedecisions$103,202
U01 · FY2023 · HG
Genomic control of gene regulatory networks governing early human lineagedecisions$97,511
U01 · FY2023 · HG
Genomic control of gene regulatory networks governing early human lineage decisions$1,330,000
U01 · FY2022 · HG
Sequence-based Machine Learning for Inference of Dynamic Cell State Gene Network Models$446,422
R01 · FY2022 · HG · contact PI
Genomic control of gene regulatory networks governing early human lineage decisions$1,330,000
U01 · FY2021 · HG
Systematic Identification of Core Regulatory Circuitry from ENCODE Data$572,256
U01 · FY2021 · HG · contact PI
Using Syntenic Gapped-kmer Composition to Detect Conserved Enhancers where Sequence Alignment Fails$388,975
R56 · FY2021 · HG · contact PI
"Systematic Identification of Core Regulatory Circuitry from ENCODE Data"$501,445
U01 · FY2020 · HG · contact PI
"Systematic Identification of Core Regulatory Circuitry from ENCODE Data"$501,445
U01 · FY2019 · HG · contact PI
"Systematic Identification of Core Regulatory Circuitry from ENCODE Data"$501,446
U01 · FY2018 · HG · contact PI
"Systematic Identification of Core Regulatory Circuitry from ENCODE Data"$501,445
U01 · FY2017 · HG · contact PI
SVM-based Analysis of the Fine Scale Structure of Regulatory Elements$469,721
R01 · FY2017 · HG · contact PI
SVM-based Analysis of the Fine Scale Structure of Regulatory Elements$471,140
R01 · FY2016 · HG · contact PI
SVM-based Analysis of the Fine Scale Structure of Regulatory Elements$459,169
R01 · FY2015 · HG · contact PI
SVM-based Analysis of the Fine Scale Structure of Regulatory Elements$461,332
R01 · FY2014 · HG · contact PI
SVM-based Analysis of the Fine Scale Structure of Regulatory Elements$460,570
R01 · FY2013 · HG · contact PI