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Eric J Seibel
University Of Washington
$2,366,094
Attributed
$4,713,881
Total exposure
11
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 $1.2M · FY2008–25$2M$1.5M$1M$500K$0
'08
'09
'10
'11
'12
'13
'14
'15
'16
'17
'18
'19
'20
'21
'22
'23
'24
'25
Funding mix
By agency
NSF$4,713,881 · 11
By mechanism
—$4,713,881 · 11
Top collaborators
- Thomas A Furness2 shared
- Alshakim Nelson1 shared
- Arka Majumdar1 shared
- Brian T Schowengerdt1 shared
- John D Mackenzie1 shared
- John Kelly1 shared
- Karl F Bohringer1 shared
- Michael R Krejsa1 shared
Grant awards (11)
I-Corps: Translation Potential of a 3D Printed Bioabsorbable Stent to Improve Gastrointestinal Anastomoses$50,000
· FY2025 · TIP · contact PI
PFI-RP: Development of a Temperature-Sensitive, High-Adhesion Medical Tape for Reducing Pain, Skin Injury, and Dislodgement of Critical Devices for Children in Hospitals$581,600
· FY2023 · TIP · contact PI
I-Corps: Reducing medical adhesive-related skin injuries while using high-adhesion tape$50,000
· FY2022 · TIP · contact PI
GCR: Meta-Optical Angioscopes for Image-Guided Therapies in Previously Inaccessible Locations$1,200,000
· FY2021 · ENG
EAGER: Device for Prevention of Endotracheal Tube Biofilm Formation for the Prevention of Ventilator Associated Pneumonia$266,161
· FY2020 · ENG · contact PI
PFI:BIC - Smart Laser-Based Imaging and Optical Spectroscopy System: optical quantification of bacterial load, oral health surveillance, and caries prediction.$1,094,253
· FY2016 · TIP · contact PI
EAGER: Complete 3D imaging of needle biopsy to diagnose pancreatic cancer$309,999
· FY2012 · ENG · contact PI
IDR-Collaborative: Quantitative 3D Optical Tomographic Microscopy for Lung Cancer Diagnosis$326,498
· FY2010 · ENG · contact PI
SGER: Engineering a Mini-Pancreatoscope: An Endoscopic Optical Glidewire for the Direct Assessment of the Pancreatic Duct$149,299
· FY2008 · ENG · contact PI
MRI: Development of a True 3D Display that Mimics Natural Depth Perception Conditions for Research in Minimally-invasive Surgery, Microscopy, Teleoperation, and Vision Science$309,376
· FY2004 · ENG
Wearable Low Vision Aids based upon Retinal Light Scanning Technologies$376,695
· FY2000 · ENG · contact PI