DocumentCode
1153530
Title
Reconstruction of Vectorial Acoustic Sources in Time-Domain Tomography
Author
Xia, Rongmin ; Li, Xu ; He, Bin
Author_Institution
Dept. of Biomed. Eng., Univ. of Minnesota, Minneapolis, MN
Volume
28
Issue
5
fYear
2009
fDate
5/1/2009 12:00:00 AM
Firstpage
669
Lastpage
675
Abstract
A new theory is proposed for the reconstruction of curl-free vector field, whose divergence serves as acoustic source. The theory is applied to reconstruct vector acoustic sources from the scalar acoustic signals measured on a surface enclosing the source area. It is shown that, under certain conditions, the scalar acoustic measurements can be vectorized according to the known measurement geometry and subsequently be used to reconstruct the original vector field. Theoretically, this method extends the application domain of the existing acoustic reciprocity principle from a scalar field to a vector field, indicating that the stimulating vectorial source and the transmitted acoustic pressure vector (acoustic pressure vectorized according to certain measurement geometry) are interchangeable. Computer simulation studies were conducted to evaluate the proposed theory, and the numerical results suggest that reconstruction of a vector field using the proposed theory is not sensitive to variation in the detecting distance. The present theory may be applied to magnetoacoustic tomography with magnetic induction (MAT-MI) for reconstructing current distribution from acoustic measurements. A simulation on MAT-MI shows that, compared to existing methods, the present method can give an accurate estimation on the source current distribution and a better conductivity reconstruction.
Keywords
acoustic tomography; biomagnetism; biomedical ultrasonics; electromagnetic induction; image reconstruction; medical image processing; ultrasonic measurement; MAT-MI simulation; acoustic pressure vector transmission; acoustic reciprocity principle; curl-free vector field; current distribution; magnetic induction; magnetoacoustic tomography; scalar acoustic signal measurement; time-domain tomography; ultrasonic measurement; vector acoustic source reconstruction; Acoustic applications; Acoustic measurements; Application software; Area measurement; Current distribution; Geometry; Magnetic field measurement; Surface reconstruction; Time domain analysis; Tomography; Current density imaging; electrical impedance imaging; magnetoacoustic imaging; reconstruction; tomography; Acoustics; Algorithms; Computer Simulation; Electric Impedance; Electromagnetic Fields; Fourier Analysis; Image Processing, Computer-Assisted; Sensitivity and Specificity; Tomography;
fLanguage
English
Journal_Title
Medical Imaging, IEEE Transactions on
Publisher
ieee
ISSN
0278-0062
Type
jour
DOI
10.1109/TMI.2008.2008972
Filename
4781574
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