A Method to Obtain the CT Attenuation Coefficient and Image Noise of Various Convolution Kernels in the Computed Tomography

Convolution Kernel의 종류에 따른 CT 감약계수 및 노이즈 측정에 관한 연구

  • Kweon, Dae-Cheol (Department of Diagnostic Radiology, Seoul National University Hospital) ;
  • Yoo, Beong-Gyu (Department of Radiotechnology, Wonkwang Health Science College) ;
  • Lee, Jong-Seok (Department of Radiotechnology, Wonkwang Health Science College) ;
  • Jang, Keun-Jo (Department of Diagnostic Radiology, Presbyterian Medical Center)
  • Published : 2007.05.30

Abstract

Our objective was to evaluate the CT attenuation coefficient and noise of spatial domain filtering as an alternative to additional image reconstruction using different kernels in abdominal CT. Derived from thin collimated source images was generated using abdomen B10 (very smooth), B20 (smooth), B30 (medium smooth), B40 (medium), B50 (medium sharp), B60 (sharp), B70 (very sharp) and B80 (ultra sharp) kernels. Quantitative CT coefficient and noise measurements provided comparable HU (hounsfield) units in this respect. CT attenuation coefficient (mean HU) values in the abdominal were 60.4$\sim$62.2 HU and noise (7.6$\sim$63.8 HU) in the liver parenchyma. In the stomach a mean (CT attenuation coefficient) of -2.2$\sim$0.8 HU and noise (10.1$\sim$82.4 HU) was measured. Image reconstructed with a convolution kernel led to an increase in noise, whereas the results for CT attenuation coefficient were comparable. Image medications of image sharpness and noise eliminate the need for reconstruction using different kernels in the future. CT images increase the diagnostic accuracy may be controlled by adjusting CT various kernels, which should be adjusted to take into account the kernels of the CT undergoing the examination.

영상 획득과 재구성 방법에 따라 CT 감약계수는 다양성을 보이고 관심 영역의 노이즈는 정밀도에 영향을 준다. 인체에서 간 실질조직과 위장의 물의 CT 감약계수와 노이즈를 커널에 따라 측정하였다. 다중채널 CT 스캐너를 이용하여 복부를 스캔 하였고, 커널은 B10 (very smooth), B20 (smooth), B30 (medium smooth), B40 (medium), B50 (medium sharp), B60 (sharp), B70 (very sharp), B80 (ultra sharp)으로 재구성하여 간의 실질 조직과 물이 들어 있는 위장 부위를 ROI 기능을 이용하여 평균의 CT감약계수와 표준편차인 노이즈를 측정하여 영상을 비교하였다. 간의 실질 조직에서 CT감약계수는 커널에 따라 60.4에서 69.2 HU사이에서 분포하여 차이가 없었으나, 노이즈는 커널(7.6$\sim$63.8 HU)이 높아질수록 증가하였다. 물의 CT감약계수는 -2.2 HU에서 0.8 HU사이에서 측정되었고, 노이즈는 커널(10.1$\sim$82.4 HU)이 높아질수록 증가하였다. 영상의 질을 높이기 위해서는 검사 부위에 따라 노이즈를 감소하기 위해 적절한 커널을 선택하여 CT 검사를 하여야 한다.

Keywords