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Kenneth L Shepard

Columbia University Health Sciences

$17,951,329
Attributed
$39,973,554
Total exposure
17
Grants
7
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 $5.8M · FY200725
$10M$7.5M$5M$2.5M$0
'07
'08
'09
'10
'11
'12
'13
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23
'24
'25

Funding mix

By agency

NIH$39,973,554 · 17

By mechanism

R01$18,456,613 · 7
U01$14,951,927 · 5
R44$3,257,169 · 2
U19$1,993,574 · 1
UG3$953,287 · 1
R33$360,984 · 1

Top collaborators

Most similar at Columbia University Health Sciences

Same institution · by research overlap

Others in their field

Top investigators on “Technology

Research focus

TechnologyBaseDesignCostElectronicsMeasurementResolutionComplexSamplingSignal TransductionDevicesDiagnosisDetectionPerformanceSemiconductorsSingle MoleculeProteinsEngineeringCustomNoiseStructureGenerationsLengthSite

Grant awards (62)

NeuroFlex: Wireless, Mechanically Flexible, Stimulation-Capable Depth and Surface High-Density Microelectrode Arrays for Epilepsy$953,287
UG3 · FY2025 · NS
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$735,000
R01 · FY2025 · HG · contact PI
A Wireless micro-ECoG Prosthesis for Speech$591,137
R01 · FY2025 · DC
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$735,000
R01 · FY2024 · HG · contact PI
A Wireless micro-ECoG Prosthesis for Speech$607,232
R01 · FY2024 · DC
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$93,173
R01 · FY2024 · HG · contact PI
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$35,581
R01 · FY2024 · HG · contact PI
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$750,000
R01 · FY2023 · HG · contact PI
A Wireless micro-ECoG Prosthesis for Speech$618,394
R01 · FY2023 · DC
Enzymeless, controlled electrostatic ratcheting in solid-state nanopores$795,000
R01 · FY2022 · HG · contact PI
Structure-function analysis for elucidating pathogenicity of cardiac ryanodine receptor genetic variants$762,832
R01 · FY2022 · HL
A Wireless micro-ECoG Prosthesis for Speech$622,247
R01 · FY2022 · DC
Direct bioelectronic detection of SARS-CoV-2 from saliva using single-molecule field-effect transistor array$447,801
R44 · FY2022 · DE
A Wireless micro-ECoG Prosthesis for Speech$33,948
R01 · FY2022 · DC
Direct bioelectronic detection of SARS-CoV-2 from saliva using single-molecule field-effect transistor array$817,335
R44 · FY2021 · DE
Structure-function analysis for elucidating pathogenicity of cardiac ryanodine receptor genetic variants$770,600
R01 · FY2021 · HL
A Wireless micro-ECoG Prosthesis for Speech$655,596
R01 · FY2021 · DC
Structure-function analysis for elucidating pathogenicity of cardiac ryanodine receptor genetic variants$762,832
R01 · FY2020 · HL
Structure-function analysis for elucidating pathogenicity of cardiac ryanodine receptor genetic variants$89,490
R01 · FY2020 · HL
Structure-function analysis for elucidating pathogenicity of cardiac ryanodine receptor genetic variants$762,832
R01 · FY2019 · HL
High channel count electrophysiology and data processing for freely-moving animals$608,569
R44 · FY2019 · MH
Optimizing flexible, active electrode arrays for chronic, large-scale recording and stimulation on the scale of 100,000 electrodes$1,134,752
U01 · FY2018 · NS
Wide Deployment of Massively Multiplexed Nanosystems for Brain Activity Mapping$955,773
U01 · FY2018 · NS
Deep brain photoacoustic tomography at single-neuron resolution using arrays of photonic emitters and high-frequency ultrasound transducers$936,233
U01 · FY2018 · NS
High channel count electrophysiology and data processing for freely-moving animals$684,421
R44 · FY2018 · MH
Label-free Real-time Single-molecule Assay Platform for Genomic Identification$453,113
U19 · FY2018 · AI · contact PI
Enzyme-less DNA base discrimination using solid-state nanopores with high-frequency integrated detection electronics$352,905
R01 · FY2018 · HG · contact PI
Optimizing flexible, active electrode arrays for chronic, large-scale recording and stimulation on the scale of 100,000 electrodes$1,105,581
U01 · FY2017 · NS
Deep brain photoacoustic tomography at single-neuron resolution using arrays of photonic emitters and high-frequency ultrasound transducers$1,040,127
U01 · FY2017 · NS
Wide deployment of massively multiplexed nanosystems for brain activity mapping$972,572
U01 · FY2017 · NS
High channel count electrophysiology and data processing for freely-moving animals$699,043
R44 · FY2017 · MH
Enzyme-less DNA base discrimination using solid-state nanopores with high-frequency integrated detection electronics$358,580
R01 · FY2017 · HG · contact PI
Studies of Riboswitch-Mediated Transcriptional Control Using Single-Molecule Fiel$356,662
R01 · FY2017 · GM
Label-free Real-time Single-molecule Assay Platform for Genomic Identification$355,164
U19 · FY2017 · AI · contact PI
Optimizing flexible, active electrode arrays for chronic, large-scale recording and stimulation on the scale of 100,000 electrodes$71,062
U01 · FY2017 · NS
Modular nanophotonic probes for dense neural recording at single-cell resolution$1,363,882
U01 · FY2016 · NS
Optimizing flexible, active electrode arrays for chronic, large-scale recording and stimulation on the scale of 100,000 electrodes$1,168,138
U01 · FY2016 · NS
Deep brain photoacoustic tomography at single-neuron resolution using arrays of photonic emitters and high-frequency ultrasound transducers$1,010,481
U01 · FY2016 · NS
Wide deployment of massively multiplexed nanosystems for brain activity mapping$985,000
U01 · FY2016 · NS
Enzyme-less DNA base discrimination using solid-state nanopores with high-frequency integrated detection electronics$461,366
R01 · FY2016 · HG · contact PI
Label-free Real-time Single-molecule Assay Platform for Genomic Identification$453,092
U19 · FY2016 · AI · contact PI
Studies of Riboswitch-Mediated Transcriptional Control Using Single-Molecule Fiel$358,353
R01 · FY2016 · GM
Modular nanophotonic probes for dense neural recording at single-cell resolution$1,377,921
U01 · FY2015 · NS
Single Molecule Real Time Electronic Sequencing$1,236,314
R01 · FY2015 · HG · contact PI
Studies of Riboswitch-Mediated Transcriptional Control Using Single-Molecule Fiel$376,230
R01 · FY2015 · GM
Label-free Real-time Single-molecule Assay Platform for Genomic Identification$360,928
U19 · FY2015 · AI · contact PI
Modular nanophotonic probes for dense neural recording at single-cell resolution$100,000
U01 · FY2015 · NS
Modular nanophotonic probes for dense neural recording at single-cell resolution$1,424,715
U01 · FY2014 · NS
Single Molecule Real Time Electronic Sequencing$1,277,466
R01 · FY2014 · HG · contact PI
Integrated, multiplexed high-frequency electronic analysis of DNA in nanopores$471,646
R01 · FY2014 · HG · contact PI
Studies of Riboswitch-Mediated Transcriptional Control Using Single-Molecule Fiel$377,824
R01 · FY2014 · GM
Label-free Real-time Single-molecule Assay Platform for Genomic Identification$371,277
U19 · FY2014 · AI · contact PI
Single Molecule Real Time Electronic Sequencing$1,193,750
R01 · FY2013 · HG
Integrated, multiplexed high-frequency electronic analysis of DNA in nanopores$468,690
R01 · FY2013 · HG · contact PI
Single Molecule Real Time Electronic Sequencing$1,245,933
R01 · FY2012 · HG
Integrated, multiplexed high-frequency electronic analysis of DNA in nanopores$500,000
R01 · FY2012 · HG · contact PI
Rapid Allergenic Particle Identification (RAPID)$8,050
U01 · FY2010 · ES · contact PI
Rapid Allergenic Particle Identification (RAPID)$1,000
U01 · FY2010 · ES · contact PI
Rapid Allergenic Particle Identification (RAPID)$382,838
U01 · FY2009 · ES · contact PI
Low-cost active CMOS biochips for whole genome analysis$360,984
R33 · FY2009 · HG · contact PI
Rapid Allergenic Particle Identification (RAPID)$382,363
U01 · FY2008 · ES · contact PI
Rapid Allergenic Particle Identification (RAPID)$531,439
U01 · FY2007 · ES · contact PI