A non-invasive, real-time, in vivo imaging procedure has been developed for directly determining the spatial distributions of blood flow, by measuring the infrared (IR) emission from the skin of an individual. The procedure does not require direct contact between the instrument and the patient. The imaging system utilizes an IR imaging camera, and a computer to store the stream of two-dimensional images and analyze data for calculating the distribution of low frequency oscillations of temperature. The patient was adapted to room temperature over 20 min and, after that, remained immobile for one min (to obtain the blood flow distribution image) and/or 5-20 min minutes during data acquisition for assessment of low frequency vasomotion. Data analyses were performed later using computer software developed in the laboratory. Measurements were made from the palmar surface of the hand or forearm. IR demonstrated dose-responce patterns of spatial and temporal distribution of blood flow during acetylcholine, sodium nitroprusside and L-arginine infusions in real time. Preliminary data showed that IR- and plethysmography-derived hyperemia indexes were significantly correlated. These noninvasive tests require no special illumination, and have a potential to assess vascular tone in any periphery vascular bed.

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Project End
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Budget End
Support Year
2
Fiscal Year
2009
Total Cost
$72,944
Indirect Cost
Name
National Institute of Biomedical Imaging and Bioengineering
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Type
DUNS #
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Gorbach, Alexander M; Wang, Hengliang; Elster, Eric (2008) Thermal oscillations in rat kidneys: an infrared imaging study. Philos Transact A Math Phys Eng Sci 366:3633-47