DocumentCode :
3168145
Title :
An application of algebraic method on MR T2 imaging of knee articular cartilage
Author :
Xu Dai ; Sharma, Gulshan B. ; Kuntze, Gregor ; Kupper, Jochen ; Frayne, Richard ; Ronsky, Janet
Author_Institution :
Biomed. Eng. Grad. Program, Univ. of Calgary, Calgary, AB, Canada
fYear :
2013
fDate :
22-23 Oct. 2013
Firstpage :
174
Lastpage :
177
Abstract :
The computation of relaxation time from quantitative magnetic resonance (MR) imaging depends on the applied algorithms. The purpose of this project was to use the algebraic curve fitting algorithm to quantify T2 mapping of knee articular cartilage for T2 relaxation time calculation. The T2 images of a healthy male volunteer´s right knee tibiofemoral joint cartilage were generated by a 3T MR imaging scanner using a spin echo multislice multiecho (MSME) Carr-Purcell Meiboom-Gill (CPMG) sequence. The medial and lateral condyle cartilage regions were further subdivided into three compartments - anterior, middle and posterior for identifying T2 values variation in between them. The T2 relaxation time mean and standard deviation in each region of interest (ROI) was calculated using the algebraic fitting algorithm and compared with conventional nonlinear algorithms. The results show that the algebraic fitting algorithm is feasible for T2 relaxation time calculation of knee tibiofemoral condyle cartilage. It is not only clear but also sensitive to T2 MR imaging of knee articular cartilage.
Keywords :
algebra; biomedical MRI; bone; curve fitting; image sequences; medical image processing; MR T2 imaging scanner; MSME Carr-Purcell Meiboom-Gill sequence; algebraic curve fitting algorithm; knee articular cartilage imaging; knee articular cartilage mapping; lateral condyle cartilage regions; magnetic flux density 3 T; medial condyle cartilage regions; nonlinear algorithms; quantitative magnetic resonance imaging; region of interest calculation; relaxation time mean deviation; relaxation time standard deviation; right knee tibiofemoral joint cartilage imaging; spin echo multislice multiecho; Fitting; Joints; Knee; Loading; Magnetic resonance imaging; Standards; T2 mapping; algebraic fitting algorithm; relaxation time;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Imaging Systems and Techniques (IST), 2013 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4673-5790-6
Type :
conf
DOI :
10.1109/IST.2013.6729686
Filename :
6729686
Link To Document :
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