← Leaderboards
O. H. Frazier
Texas Heart Institute
$10,609,321
Attributed
$12,321,100
Total exposure
5
Grants
5
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 $1.5M · FY2008–25$2M$1.5M$1M$500K$0
'08
'09
'10
'11
'12
'13
'14
'15
'16
'17
'18
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'25
Funding mix
By agency
NIH$12,321,100 · 5
By mechanism
R01$11,719,720 · 4
R56$601,380 · 1
Top collaborators
- Lakshmi Prasad Dasi3 shared
- Arun Kumar Kota3 shared
- William Ettlinger Cohn1 shared
Most similar at Texas Heart Institute
Same institution · by research overlap
- William Ettlinger Cohn$300,690
- Xiao Li$651,967
Others in their field
Top investigators on “Quality Of Life”
- Gary D Acton · University Of California-Davis$320,373,312
- Mitchell J Malone · Texas A&M Research Foundation$320,373,312
- Gerald T Nepom · Benaroya Research Inst At Virginia Mason$298,740,071
- Gregory H Reaman · National Childhood Cancer Foundation$264,644,476
- David R. Weir · University Of Michigan At Ann Arbor$263,050,576
- Richard K. Wilson · Washington University$198,912,538
Research focus
Quality Of LifePumpResponseHeart FailureHeartDevicesDesignBlood PumpImplantationImplantPhysiologicalMechanicsPressureTechnologyPositioning AttributeVentricular Assist DeviceAnimalsIn VivoUnited StatesSeriesLeftPerformanceHemodynamicsIn Vitro
Grant awards (17)
Maglev LVAD with expandable stented inlet and anti-thrombotic coating to improve hemocompatibility$683,158
R01 · FY2025 · HL · contact PI
Maglev LVAD with expandable stented inlet and anti-thrombotic coating to improve hemocompatibility$680,982
R01 · FY2024 · HL · contact PI
Development of a Fully-Implantable Ventricular Assist Device for Neonates and Children with Heart Failure - with Magnetic Levitation to Improve Hemocompatibility$787,884
R01 · FY2023 · HL · contact PI
Maglev LVAD with expandable stented inlet and anti-thrombotic coating to improve hemocompatibility$752,493
R01 · FY2023 · HL · contact PI
Development of a Fully-Implantable Ventricular Assist Device for Neonates and Children with Heart Failure - with Magnetic Levitation to Improve Hemocompatibility$687,156
R01 · FY2022 · HL · contact PI
Development of a Fully-Implantable Ventricular Assist Device for Neonates and Children with Heart Failure - with Magnetic Levitation to Improve Hemocompatibility$640,106
R01 · FY2021 · HL · contact PI
Development of a Fully-Implantable Ventricular Assist Device for Neonates and Children with Heart Failure - with Magnetic Levitation to Improve Hemocompatibility$747,630
R01 · FY2020 · HL · contact PI
Magnetic Levitation to Improve Hemocompatibility of a Percutaneous LVAD (MicroVasc) for Early Intervention$601,380
R56 · FY2018 · HL · contact PI
Effects of a Pulse Induced by a Constant-Flow Total Cardiac Replacement Device$793,479
R01 · FY2015 · HL · contact PI
Effects of a Pulse Induced by a Constant-Flow Total Cardiac Replacement Device$786,666
R01 · FY2014 · HL · contact PI
Effects of a Pulse Induced by a Constant-Flow Total Cardiac Replacement Device$806,818
R01 · FY2012 · HL · contact PI
A Novel Approach to Cardiac Replacement with Continuous Flow Pumps$669,069
R01 · FY2011 · HL · contact PI
Effects of a Pulse Induced by a Constant-Flow Total Cardiac Replacement Device$792,506
R01 · FY2010 · HL · contact PI
A Novel Approach to Cardiac Replacement with Continuous Flow Pumps$669,767
R01 · FY2010 · HL · contact PI
Effects of a Pulse Induced by a Constant-Flow Total Cardiac Replacement Device$826,447
R01 · FY2009 · HL · contact PI
A Novel Approach to Cardiac Replacement with Continuous Flow Pumps$683,875
R01 · FY2009 · HL · contact PI
A Novel Approach to Cardiac Replacement with Continuous Flow Pumps$711,684
R01 · FY2008 · HL · contact PI