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1.
Korean Journal of Medical Physics ; : 145-151, 2009.
Article in Korean | WPRIM | ID: wpr-137643

ABSTRACT

This study aims to evaluate CT (Computed Tomography) characteristics through the estimation of HU (Hounsfield Unit) and the corresponding variations using coefficient of variation values for various materials as a function of physical factor. HU values for various materials with varying densities as a function of physical factor were measured using MDCT (Siemens SOMATOM Sensation 4, Germany). The results showed that the HU values were decreased and increased as a function of kVp and material density, respectively. Especially, the HU values for bone and iodine at 140 kVp were 32% and 42% smaller than those at 80 kVp, respectively. In case of iodine, the HU values also decreased and increased as a function of kVp and concentration, respectively. While the HU values were fixed as a function of mAs. The decreased ratio of HU values between 80 keV and 140 keV was different at various concentration and maximum difference was shown as 1.73 at 3% concentration. These results indicated that it may be possible to separate composition of materials, e.g. iodine and bone, using single source CT. The results showed that dual energy techniques using single source CT can be applied to material separation and expand CT imaging techniques to other practical applications.


Subject(s)
Iodine , Sensation
2.
Korean Journal of Medical Physics ; : 145-151, 2009.
Article in Korean | WPRIM | ID: wpr-137642

ABSTRACT

This study aims to evaluate CT (Computed Tomography) characteristics through the estimation of HU (Hounsfield Unit) and the corresponding variations using coefficient of variation values for various materials as a function of physical factor. HU values for various materials with varying densities as a function of physical factor were measured using MDCT (Siemens SOMATOM Sensation 4, Germany). The results showed that the HU values were decreased and increased as a function of kVp and material density, respectively. Especially, the HU values for bone and iodine at 140 kVp were 32% and 42% smaller than those at 80 kVp, respectively. In case of iodine, the HU values also decreased and increased as a function of kVp and concentration, respectively. While the HU values were fixed as a function of mAs. The decreased ratio of HU values between 80 keV and 140 keV was different at various concentration and maximum difference was shown as 1.73 at 3% concentration. These results indicated that it may be possible to separate composition of materials, e.g. iodine and bone, using single source CT. The results showed that dual energy techniques using single source CT can be applied to material separation and expand CT imaging techniques to other practical applications.


Subject(s)
Iodine , Sensation
3.
Journal of the Korean Pediatric Society ; : 492-498, 1992.
Article in Korean | WPRIM | ID: wpr-161206

ABSTRACT

No abstract available.


Subject(s)
Calcium , Fetal Blood , Phosphorus
4.
Journal of the Korean Pediatric Society ; : 723-728, 1992.
Article in Korean | WPRIM | ID: wpr-119665

ABSTRACT

No abstract available.


Subject(s)
Nevus, Pigmented
5.
Journal of the Korean Pediatric Society ; : 211-218, 1992.
Article in Korean | WPRIM | ID: wpr-128409

ABSTRACT

No abstract available.


Subject(s)
Thrombocytosis
6.
Journal of the Korean Pediatric Society ; : 573-576, 1991.
Article in Korean | WPRIM | ID: wpr-193822

ABSTRACT

No abstract available.


Subject(s)
Humans , Parents , Siblings
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