Calibrated Frequency-Division Distorted Born Iterative Tomography for Real-Life Head Imaging

被引:25
作者
Guo, L. [1 ]
Nguyen-Trong, N. [2 ]
Al-Saffar, A. [1 ]
Stancombe, A. [1 ]
Bialkowski, K. [1 ]
Abbosh, A. [1 ]
机构
[1] Univ Queensland, Sch Informat Technol & Elect Engn ITEE, Brisbane, Qld 4072, Australia
[2] Univ Adelaide, Sch Elect & Elect Engn, Adelaide, SA 5000, Australia
关键词
Antenna measurements; Radio frequency; Transmitting antennas; Phantoms; Tomography; Microwave theory and techniques; Frequency measurement; microwave imaging; calibration; stroke imaging; MICROWAVE TOMOGRAPHY; INVERSION; SYSTEM; RECONSTRUCTION; ALGORITHM; SUPERRESOLUTION; RESOLUTION; PROTOTYPE;
D O I
10.1109/TMI.2021.3132000
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The clinical use of microwave tomography (MT) requires addressing the significant mismatch between simulated environment, which is used in the forward solver, and real-life system. To alleviate this mismatch, a calibrated tomography, which uses two homogeneous calibration phantoms and a modified distorted Born iterative method (DBIM), is presented. The two phantoms are used to derive a linear model that matches the forward solver to real-life measurements. Moreover, experimental observations indicate that signal quality at different frequencies varies between different antennas due to inevitably inconsistent manufacturing tolerance and variances in radio-frequency chains. An optimum frequency, at which the simulated and measured signals of the antenna present maximum similarity when irradiating the calibrated phantoms, is thus calculated for each antenna. A frequency-division DBIM (FD-DBIM), in which different antennas in the array transmit their corresponding optimum frequencies, is subsequently developed. A clinical brain scanner is then used to assess performance of the algorithm in lab and healthy volunteers' tests. The linear calibration model is first used to calibrate the measured data. After that FD-DBIM is used to solve the problem and map the dielectric properties of the imaged domain. The simulated and experimental results confirm validity of the presented approach and its superiority to other tomographic method.
引用
收藏
页码:1087 / 1103
页数:17
相关论文
共 66 条
[11]  
Chew W.C., 1995, Wave and Fields in Inhomogeneous Media
[12]   RECONSTRUCTION OF 2-DIMENSIONAL PERMITTIVITY DISTRIBUTION USING THE DISTORTED BORN ITERATIVE METHOD [J].
CHEW, WC ;
WANG, YM .
IEEE TRANSACTIONS ON MEDICAL IMAGING, 1990, 9 (02) :218-225
[13]   Detection of Simulated Brain Strokes Using Microwave Tomography [J].
Coli, Vanna Lisa ;
Tournier, Pierre-Henri ;
Dolean, Victorita ;
El Kanfoud, Ibtissam ;
Pichot, Christian ;
Migliaccio, Claire ;
Blanc-Feraud, Laure .
IEEE JOURNAL OF ELECTROMAGNETICS RF AND MICROWAVES IN MEDICINE AND BIOLOGY, 2019, 3 (04) :254-260
[14]   Study of resolution and super resolution in electromagnetic imaging for half-space problem's [J].
Cui, TJ ;
Chew, WC ;
Yin, XX ;
Hong, W .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2004, 52 (06) :1398-1411
[15]   Full-wave three-dimensional microwave imaging with a regularized gauss-newton method-theory and experiment [J].
De Zaeytijd, Juergen ;
Franchois, Ann ;
Eyraud, Christelle ;
Geffrin, Jean-Michel .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2007, 55 (11) :3279-3292
[16]   Inversion algorithm and measurement system for microwave tomography of buried object [J].
Dourthe, C ;
Pichot, C ;
Dauvignac, JY ;
Cariou, J .
RADIO SCIENCE, 2000, 35 (05) :1097-1108
[17]   Viable Three-Dimensional Medical Microwave Tomography: Theory and Numerical Experiments [J].
Fang, Qianqian ;
Meaney, Paul M. ;
Paulsen, Keith D. .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2010, 58 (02) :449-458
[18]  
Gabriel C., 1996, Tech. Rep. N.AL/OE-TR-1996-0037
[19]   Sensitivity of the Distorted Born Iterative Method to the Initial Guess in Microwave Breast Imaging [J].
Gao, Fuqiang ;
Van Veen, Barry D. ;
Hagness, Susan C. .
IEEE TRANSACTIONS ON ANTENNAS AND PROPAGATION, 2015, 63 (08) :3540-3547
[20]   On Super-Resolution With an Experimental Microwave Tomography System [J].
Gilmore, Colin ;
Mojabi, Puyan ;
Zakaria, Amer ;
Pistorius, Stephen ;
LoVetri, Joe .
IEEE ANTENNAS AND WIRELESS PROPAGATION LETTERS, 2010, 9 :393-396