DOI QR코드

DOI QR Code

최적의 FOV를 위한 MR신호강도와 신호 대 잡음비 값의 비교분석

Analysis and Comparison of MR Signal Strength and SNR Value for Optimal FOV

  • 이상호 (선문대학교 글로컬 산학협력학부)
  • Lee, Sang-Ho (Glocal industry University cooperation department, Sun Moon University)
  • 투고 : 2018.04.10
  • 심사 : 2018.04.26
  • 발행 : 2018.04.30

초록

Despite the continuous development of software, it is continuously pursued to enlarge the examination area of FOV in order to reduce the factors of inconsistency in images that appear in continuous examination during wide area examination using contrast agent such as whole body angiography. In this study, we investigated the optimal FOV by comparing the SNR values according to the changes of FOV. The change of the FOV was gradually changed to $270{\times}200$, $300{\times}223$, $330{\times}244$, $360{\times}266$ and $380{\times}281$. SE images at TR 450 msec and TE 10 msec, FSE images at TR 2,000 msec, TE 80 msec, and GE images were scanned at TR 117 msec, and TE 16 msec. SNR values were calculated from the mean values of signal intensities of five phantom images and the signal intensity values of four background standard deviations. As a result of the study, the signal intensity and the SNR value according to the change of the FOV value gradually increased as the FOV was increased, but it was found that the SNR value decreased at a constant size. In conclusion, the results are different from previous studies that the SNR increases as the FOV increases. The cause of these results could not be confirmed. However methods that can be imaged and included within the effective FOV should be considered.

키워드

참고문헌

  1. HY Carr. Steady-state free precession in nuclear magnetic resonance. The American Physical Society, Physical Review. 1958;112(5): 1693-1701.
  2. KP Pruessmann, M Weiger, MB Scheidegger, P Boesiger. SENSE: sensitivity encoding for fast MRI. Magnetic resonance in medicine; 1999;42(5):952-62 https://doi.org/10.1002/(SICI)1522-2594(199911)42:5<952::AID-MRM16>3.0.CO;2-S
  3. K Setsompop, BA Gagoski, JR Polimeni, T Witzel, VJ Wedeen, LL Wald. Blipped-controlled aliasing in parallel imaging for simultaneous multislice echo planar imaging with reduced g-factor penalty. Magnetic Resonance in Medicine. 2012; 67(5):1210-24. https://doi.org/10.1002/mrm.23097
  4. Jae-Bok Han, Nam-Gil Choi. Flip Angle of the Optimal T1 Effect Using FLASH.: Journal of radiological science and technology; 2009;32(1):101-6.
  5. C Zhu, H Haraldsson, F Faraji, C Owens, W Gasper, S Ahn, J Liu, G Laub, MD Hope, D Saloner. Isotropic 3D black blood MRI of abdominal aortic aneurysm wall and intraluminal thrombus. Magnetic Resonance Imaging. 2016;34(1):18-25. https://doi.org/10.1016/j.mri.2015.10.002
  6. Schmidt GP, Reiser MF, Baur-Melny A. Whole-body imaging of the musculoskeletal system: the value of MR imaging. Skeletal Radiology. 2007 Dec.;36(12):1109-1119. https://doi.org/10.1007/s00256-007-0323-5
  7. Christian Wachinger, Ben Glocker, Jochen Zeltner, Nikos Paragios, et al.. Deformable Mosaicing for Whole-body MRI. Medical Image Computing and Computer-Assisted Intervention. 2008;11(2):113-21.
  8. C. Westbrook, C.K. Roth, John Talbot. MRI in Practice. Wiley-Blackwell. 2011.
  9. Callaghan PT. Principles of nuclear magnetic resonance microscopy.; Clarendon Press, Oxford. 1991.
  10. Panych LP, Chiou JG, Qin L, Kimbrell VL, Bussolari L, Mulkern RV. On replacing the manual measurement of ACR phantom images performed by MRI technologists with an automated measurement approach, Journal of Magnetic Resonance Imaging. 2016 Apr.;43(4):843-52. https://doi.org/10.1002/jmri.25052
  11. JS Lee, EH Goo, CS Park, SY Lee, HJ Lee, A Study on Compensation for Imaging Qualities Having Artifact with the Change of the Center Frequency Adjustment and Transmission Gain Values at 1.5 Tesla MRI. Korean Journal of Medical Physics. 2009:20(4):244-52.
  12. DavidG. Kruger, StephenJ. Riederer, RogerC. Grimm, and PhillipJ. Rossma :Continuously moving table data acquisition method for long FOV contrast-enhanced MRA and whole body MRI. Magnetic Resonance in Medicine. 2002 Feb.;47(2):224-31. https://doi.org/10.1002/mrm.10061