Three-Dimensional Sparse Microwave Imaging for Brain Stroke Monitoring

Author(s):  
M.N. Stevanovic ◽  
R. Scapaticci ◽  
L. Crocco
Author(s):  
David O. Rodriguez-Duarte ◽  
Jorge A. Tobon Vasquez ◽  
Rosa Scapaticci ◽  
Lorenzo Crocco ◽  
Francesca Vipiana

2009 ◽  
Vol 106 (3) ◽  
pp. 034901 ◽  
Author(s):  
P. C. Chaumet ◽  
K. Belkebir ◽  
A. Sentenac

Radio Science ◽  
1990 ◽  
Vol 25 (6) ◽  
pp. 1221-1229 ◽  
Author(s):  
S. Caorsi ◽  
G. L. Gragnani ◽  
M. Pastorino

Sensors ◽  
2018 ◽  
Vol 18 (11) ◽  
pp. 3852
Author(s):  
Lulu Wang

The authors recently developed a two-dimensional (2D) holographic electromagnetic induction imaging (HEI) for biomedical imaging applications. However, this method was unable to detect small inclusions accurately. For example, only one of two inclusions can be detected in the reconstructed image if the two inclusions were located at the same XY plane but in different Z-directions. This paper provides a theoretical framework of three-dimensional (3D) HEI to accurately and effectively detect inclusions embedded in a biological object. A numerical system, including a realistic head phantom, a 16-element excitation sensor array, a 16-element receiving sensor array, and image processing model has been developed to evaluate the effectiveness of the proposed method for detecting small stroke. The achieved 3D HEI images have been compared with 2D HEI images. Simulation results show that the 3D HEI method can accurately and effectively identify small inclusions even when two inclusions are located at the same XY plane but in different Z-directions. This preliminary study shows that the proposed method has the potential to develop a useful imaging tool for the diagnosis of neurological diseases and injuries in the future.


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