Experimental Evaluation of Correlation-Based Image Reconstruction Method for Magnetic Particle Imaging

Author(s):  
Takumi Honma ◽  
Yasutoshi Ishihara
2012 ◽  
Vol E95-D (3) ◽  
pp. 872-879 ◽  
Author(s):  
Yasutoshi ISHIHARA ◽  
Tsuyoshi KUWABARA ◽  
Takumi HONMA ◽  
Yohei NAKAGAWA

2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Anselm von Gladiss ◽  
Matthias Graeser ◽  
André Behrends ◽  
Xin Chen ◽  
Thorsten M. Buzug

Abstract Image reconstruction in magnetic particle imaging is often performed using a system matrix based approach. The acquisition of a system matrix is a time-consuming calibration which may take several weeks and thus, is not feasible for a clinical device. Due to hardware characteristics of the receive chain, a system matrix may not even be used in similar devices but has to be acquired for each imager. In this work, a dedicated device is used for measuring a hybrid system matrix. It is shown that the measurement time of a 3D system matrix is reduced by 96%. The transfer function of the receive chains is measured, which allows the use of the same system matrix in multiple devices. Equivalent image reconstruction results are reached using the hybrid system matrix. Furthermore, the inhomogeneous sensitivity profile of receive coils is successfully applied to a hybrid system matrix. It is shown that each aspect of signal acquisition in magnetic particle imaging can be taken into account using hybrid system matrices. It is favourable to use a hybrid system matrix for image reconstruction in terms of measurement time, signal-to-noise ratio and discretisation.


Author(s):  
Mandy Grüttner ◽  
Tobias Knopp ◽  
Jochen Franke ◽  
Michael Heidenreich ◽  
Jürgen Rahmer ◽  
...  

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