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Kernel 특성에 따른 MTF 평가 및 임상적 적용에 관한 연구
유병규,이종석,권대철,Yoo, Beong-Gyu,Lee, Jong-Seok,Kweon, Dae-Cheol 한국의학물리학회 2007 의학물리 Vol.18 No.2
CT에서 커널에 따른 노이즈, 공간분해능 및 MTF를 측정하고 임상에 적용하여 영상의 질을 평가하였다. 커널은 B30 (body medium smooth), H30 (head medium smooth), S80 (special), U95 (ultra sharp)를 이용하여 측정하였다. 커널에 따른 결과에서 노이즈는 B30 (7.6 HU), U95 (38.2 HU)이었고, 공간분해능은 H30, B30 커널이 0.8 mm, U95 커널은 0.6 mm로 33.3% 영상의 질이 향상되었다. MTF (50%, 10%, 2%)에서 H30 커널은 3.25 5.68, 7.45 Ip/cm, B30 커널은 3.84, 6.25, 7.72 Ip/cm, S80 커널에서는 4.69, 9.49, 12.34 Ip/cm, U95 커널은 14.19, 20.31, 24.67 Ip/cm이었다. 커널 종류별로 영상의 임상 적용에서 두부는 H30 커널, 복부는 B30 커널, 측두골 및 폐에서는 U95 커널이 임상적 평가가 높았다. 임상에서 진단에 적용하기 위해서는 검사 부위에 맞는 커널을 선택하여 검사하여야 한다. Our objective was to evaluate the clinical feasibility of spatial domain filtering as an alternative to additional image reconstruction using different kernels in CT. Kernels were grouped as H30 (head medium smooth), B30 (body medium smooth), S80 (special) and U95 (ultra sharp). Derived from thin coilimated source images, four sets of images were generated using phantom kernels. MTF (50%, 10%, 2%) measured with H30 (3.25, 5.68, 7.45 Ip/cm) B30 (3.84, 6.25, 7.72 Ip/cm), S80 (4.69, 9.49, 12.34 Ip/cm), and U95 (14.19, 20.31, 24.67 Ip/cm). Spatial resolution for the U95 kernel (0.6 mm) was 33.3% greater than that of the H30 and B30 (0.8 mm) kernels. Initially scanned kernels images were rated for subjective image qualify, using a five-point scale. Image scanned with a convolution kernel led to an increase in noise (U95), whereas the results for CT attenuation coefficient were comparable. CT images increase the diagnostic accuracy in head (H30), abdomen (B30), temporal bone and lung (U95) kernels may be controlled by adjusting CT various algorithms, which should be adjusted to take into account the kernels of the CT undergoing the examination.