DocumentCode
2083060
Title
Altering embryonic cardiac dynamics with optical pacing
Author
Peterson, L.M. ; McPheeters, M. ; Barwick, L. ; Gu, Sijia ; Rollins, A.M. ; Jenkins, M.W.
Author_Institution
Biomed. Eng. Dept., Case Western Reserve Univ., Cleveland, OH, USA
fYear
2012
fDate
Aug. 28 2012-Sept. 1 2012
Firstpage
1382
Lastpage
1385
Abstract
Several studies have shown that altering blood flow early in development leads to congenital heart defects. In these studies the perturbations to hemodynamics were very gross manipulations (vessel ligation, conotruncal banding, etc.) that would be inappropriate for probing the delicate mechanisms responsible for mechanically-transduced signaling. Also, these perturbations lacked feedback from a monitoring system to determine the exact degree of alteration and the location of its effect. Here, we employed optical pacing (OP) to alter the heart rate in quail embryos and optical coherence tomography (OCT) to measure the resultant shear forces on the endocardium. OP is a new technique utilizing pulsed 1.851 μm infrared laser light to noninvasively capture the heart rate to the pulse frequency of the laser without the use of exogenous agents. To measure shear stress on the endocardium, we extended our previous OCT algorithms to enable the production of 4-D shear maps. 4-D shear maps allowed observation of the spatial and temporal distribution of shear stress. Employing both OCT and OP, we were able to develop perturbation protocols that increase regurgitant flow and greatly modify the oscillatory shear index (OSI) in a region of the heart tube where future valves will develop. Regurgitant flow has been linked with valve development and precise perturbations may allow one to determine the role of hemodynamics in valvulogenesis.
Keywords
blood vessels; cardiology; cellular biophysics; haemodynamics; haemorheology; image reconstruction; image segmentation; infrared imaging; laser applications in medicine; medical image processing; optical tomography; 4D shear maps; OCT algorithms; blood flow; congenital heart defects; conotruncal banding; embryonic cardiac dynamics; exogenous agents; gross manipulations; heart tube; hemodynamics; image reconstruction; image segmentation; infrared laser light; mechanically-transduced signaling; optical coherence tomography; optical pacing; oscillatory shear index; perturbation lacked feedback; quail embryos; regurgitant flow; shear forces; shear stress measurement; shear stress temporal distribution; valves; valvulogenesis; vessel ligation; wavelength 1.851 mum; Biomechanics; Biomedical monitoring; Biomedical optical imaging; Fluid flow measurement; Monitoring; Optical imaging; Optical variables measurement; Animals; Biomechanical Phenomena; Cardiac Pacing, Artificial; Echocardiography, Doppler; Embryo, Nonmammalian; Heart; Heart Rate; Hemodynamics; Image Processing, Computer-Assisted; Lasers; Quail; Signal Processing, Computer-Assisted; Stress, Mechanical; Tomography, Optical Coherence;
fLanguage
English
Publisher
ieee
Conference_Titel
Engineering in Medicine and Biology Society (EMBC), 2012 Annual International Conference of the IEEE
Conference_Location
San Diego, CA
ISSN
1557-170X
Print_ISBN
978-1-4244-4119-8
Electronic_ISBN
1557-170X
Type
conf
DOI
10.1109/EMBC.2012.6346196
Filename
6346196
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