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      • CT검사의 방사선 피폭에 관한 연구

        김문찬(Moon Chan Kim),한동균(Dong Kyoon Han) 대한CT영상기술학회 2006 대한CT영상기술학회지 Vol.8 No.1

        With the recent prevalence of helical CT and multi-slice CT, which deliver higher radiation dose than conventional CT due to overbeaming effect in X-ray exposure and interpolation technique in image reconstruction. Although helical and multi-slice CT scanner provide a variety of opportunities for patient dose reduction, the potential risk for high radiation levels in CT examination can’t be overemphasized in spite of acquiring more diagnostic information. So much more concerns is necessary about dose characteristics of CT examination, especially dose efficient equipment design and dose affecting techniques as well as dose modulation software, because user’s concerns and dose efficiency built into the scanner’s design are probably the most important aspect of successful low dose clinical performance. This study was conducted to find out dose characteristics from delivered from CT examination and to evaluate organ dose of primary scan area in single detector CT and each level multi-slice CT, and finally to find out reduction factors of patient dose from survey of dose variety with change of scan parameters.

      • PET/CT 검사 환자의 피폭선량 경감을 위한 연구

        김봉수,표성재,조용귀,신채호,조진우,김창호,Kim, Bong-Su,Pyo, Sung-Jai,Cho, Yong-Gyi,Shin, Chai-Ho,Cho, Jin-Woo,Kim, Chang-Ho 대한핵의학기술학회 2009 핵의학 기술 Vol.13 No.3

        목적 : 환자의 피폭선량 감소를 위해 PET/CT검사 시Pitch를 조절하여 환자의 피폭선량을 줄일 수 있는 방법에 대해 고려해 보고 Pitch 조정이 CT 영상과 PET의 SUV값에 영향을 주어 변화가 있는지를 살펴 보고자 한다. 방법 : Siemens사의 Biograph Positron Emission Tomography (PET) Scanner (CT 형식 : TRCT-240-130 (WCT-240-130)을 사용하였다. 환자의 피폭선량 평가로는 CT 조사선량 측정기인 PTW-DIADOS 11003/1383를 사용하여 선량을 측정하였고 Pitch 조정이 CT 영상에 미치는 영향을 알아보기 위해 AAPM Standard Phantom을 이용하여 pitch 변화에 따른 CT 영상의 공간 분해능을 측정하여 비교하였다. 그리고, PET source consists of a solid radioactive cylinder phantom을 사용하여 Pitch 변화에 따른 Fusion 영상의 SUV값을 산출하여 PET/CT 영상에서 SUV값이 변하였는지 확인하였다. 결과 : 2slice CT scanner에서는 Pitch가 0.7~1.3까지는 방사선량이 크게 떨어지나 1.5~1.9까지는 방사선량의 감소가 작아졌으며 Pitch값이 커질수록 환자의 피폭선량이 작아지는 것을 알 수 있었다. 그리고 Pitch값의 증가에 따른 SUV값의 변화는 거의 없었으며. Pitch값이 PET SUV값에 영향을 주지 않는다는 것을 알 수 있었다. Pitch의 변화가 CT 영상에도 크게 영향을 주지 않는 것을 알 수 있었다. 결론 : 위의 결과로 PET/CT를 사용하는 병원은 영상의 왜곡이 없고 PET SUV값에 영향을 주지 않는 범위 내에서 각 병원에 맞는 Pitch값을 찾아서 환자의 피폭 경감을 위해 노력해야 할 것이다. 그리고 Multi-detector를 가진 CT scanner인 경우에 모두 해당 될 것이라 생각되며 향후 다른 장비에서도 이와 같은 실험이 필요하다 하겠다. Purpose: As the number of patients has increased since the installation of a PET/CT, we are now examining about 2500-3000 annually. We have realized that if we properly adjust a pitch under the same condition of a CT during a PET/CT exam, radiation quantity that reaches the patient can change. In order to reduce the exposure dose of a patient, the research examines a method of reducing the exposure dose of a patient by controlling the pitch during a PET/CT exam, viewing whether the adjustment of the pitch influences CT image and PET SUV. Methods: The equipment used is a Biograph Positron Emission Tomography (PET) Scanner (CT type: TRCT-240-130 (WCT-240-130)) of Siemens company. For the evaluation of exposure dose of a patient, we measured radiation quantities using a PTW-DIADOS 11003/1383, which is a CT radiation measurement instrument used by Siemens. We measured and analyzed the space resolutions of CT images caused by the change of pitches using an AAPM Standard Phantom in order to see how the adjustment of pitches influenced the CT images. In addition, in order to obtain SUVs caused by each change of pitches using a PET source made with a solid radioactive cylinder phantom, we confirmed whether the SUVs changed in the PET/CT images by calculating the SUVs of the fusion images caused by the change of pitches after obtaining CT and PET images and finishing the test. Results: 2slice CT scanner showed that radiation quantities largely dropped when pitches ranged from 0.7 to 1.3 and that the reduction of radiation quantities were smaller when pitches ranged from 1.5 to 1.9. That is, we found that the bigger pitch values are the smaller the radiation quantities of a patient are. Moreover, we realized that there is no change of SUVs caused by the increase of pitches and that pitch values do not influence PET SUVs and the quality of CT images. It is judged that using 1.5 as a pitch value contributes to the reduction of exposure dose of a patient as long as there is no problem in the quality of an image. Conclusions: When seeing the result of the research, hospital using a PET/CT should make an effort to reduce the exposure dose of a patient seeking pitch values appropriate for their hospital within the range in which there is no image distortion and PET SUVs are not influenced from pitches. We think that the research can apply to all multi-detectors having a CT scanner and that such a research will be needed for other equipments in the future.

      • KCI등재

        State-of-the-Art CT Imaging Techniques for Congenital Heart Disease

        구현우 대한영상의학회 2010 Korean Journal of Radiology Vol.11 No.1

        CT is increasingly being used for evaluating the cardiovascular structures and airways in the patients with congenital heart disease. Multi-slice CT has traditionally been used for the evaluation of the extracardiac vascular and airway abnormalities because of its inherent high spatial resolution and excellent air-tissue contrast. Recent developments in CT technology primarily by reducing the cardiac motion and the radiation dose usage in congenital heart disease evaluation have helped expand the indications for CT usage. Tracheobronchomalacia associated with congenital heart disease can be evaluated with cine CT. Intravenous contrast injection should be tailored to unequivocally demonstrate cardiovascular abnormalities. Knowledge of the state-of-the-art CT imaging techniques that are used for evaluating congenital heart disease is helpful not only for planning and performing CT examinations, but also for interpreting and presenting the CT image findings that consequently guide the proper medical and surgical management.

      • Clinical Study of Tumor Angiogenesis and Perfusion Imaging Using Multi-slice Spiral Computed Tomography for Breast Cancer

        Xu, Na,Lei, Zhen,Li, Xiao-Long,Zhang, Jun,Li, Chen,Feng, Guo-Quan,Li, Di-Nuo,Liu, Jing-Yi,Wei, Qiang,Bian, Ting-Ting,Zou, Tian-Yu Asian Pacific Journal of Cancer Prevention 2013 Asian Pacific journal of cancer prevention Vol.14 No.1

        Objectives: To explore the correlation between multi-slice spiral CT (MSCT) perfusion parameters and the expression of vascular endothelial growth factor (VEGF) as well as matrix metalloproteinase-2 (MMP-2) in breast cancer. Methods: Forty five breast cancer patients and 16 patients with benign breast tumor, both confirmed by pathology examination, were enrolled. All underwent MSCT perfusion imaging to obtain perfusion maps and data for parameters including blood flow (BF), blood volume (BV) and permeability surface (PS). Cancer patients did not receive treatment prior to surgery. The expression of VEGF and MMP-2 were examined with both immunohistochemistry and Western blotting. Results: The levels of VEGF and MMP-2 by immunohistochemistry were significantly higher in the breast cancer group (P < 0.01) than the benign tumor group. Relative OD values from Western blotting were also higher in cancer cases (P < 0.05). Similarly, the mean MSCT perfusion parameters (BF, BV, PS) were significantly higher in the breast cancer group (P < 0.01), BF and BV positively correlating with VEGF expression (r = 0.878 and 0.809 respectively, P < 0.01); PS and VEGF and MMP-2 expression were also positively correlated (r= 0.860, 0.786 respectively, P < 0.01). Conclusion: There is a correlation between breast cancer MSCT perfusion parameters and VEGF andMMP-2 expression, which might be useful for detection of breast lesions, qualitative diagnosis of breast cancer, and evaluation of breast cancer treatment.

      • KCI등재

        Coronary Artery Stent Evaluation Using a Vascular Model at 64-Detector Row CT: Comparison between Prospective and Retrospective ECG-Gated Axial Scans

        Shigeru Suzuki,Shigeru Furui,Tatsuro Kaminaga,Akiyoshi Miyazawa,Yasunari Ueno,Kumiko Konno,Sadatoshi Kuwahara,Dhruv Mehta 대한영상의학회 2009 Korean Journal of Radiology Vol.10 No.3

        Objective: We wanted to evaluate the performance of prospective electrocardiogram (ECG)-gated axial scans for assessing coronary stents as compared with retrospective ECG-gated helical scans. Materials and Methods: As for a vascular model of the coronary artery, a tube of approximately 2.5-mm inner diameter was adopted and as for stents, three (Bx-Velocity, Express2, and Micro Driver) different kinds of stents were inserted into the tube. Both patent and stenotic models of coronary artery were made by instillating different attenuation (396 vs. 79 Hounsfield unit [HU]) of contrast medium within the tube in tube model. The models were scanned with two types of scan methods with a simulated ECG of 60 beats per minute and using display field of views (FOVs) of 9 and 18 cm. We evaluated the in-stent stenosis visually, and we measured the attenuation values and the diameter of the patent stent lumen. Results: The visualization of the stent lumen of the vascular models was improved with using the prospective ECG-gated axial scans and a 9-cm FOV. The inner diameters of the vascular models were underestimated with mean measurement errors of -1.10 to -1.36 mm. The measurement errors were smaller with using the prospective ECG-gated axial scans (Bx-Velocity and Express2, p < 0.0001; Micro Driver, p = 0.0004) and a 9-cm FOV (all stents: p < 0.0001), as compared with the other conditions, respectively. The luminal attenuation value was overestimated in each condition. For the luminal attenuation measurement, the use of prospective ECG-gated axial scans provided less measurement error compared with the retrospective ECG-gated helical scans (all stents: p < 0.0001), and the use of a 9-cm FOV tended to decrease the measurement error. Conclusion: The visualization of coronary stents is improved by the use of prospective ECG-gated axial scans and using a small FOV with reduced blooming artifacts and increased spatial resolution. Objective: We wanted to evaluate the performance of prospective electrocardiogram (ECG)-gated axial scans for assessing coronary stents as compared with retrospective ECG-gated helical scans. Materials and Methods: As for a vascular model of the coronary artery, a tube of approximately 2.5-mm inner diameter was adopted and as for stents, three (Bx-Velocity, Express2, and Micro Driver) different kinds of stents were inserted into the tube. Both patent and stenotic models of coronary artery were made by instillating different attenuation (396 vs. 79 Hounsfield unit [HU]) of contrast medium within the tube in tube model. The models were scanned with two types of scan methods with a simulated ECG of 60 beats per minute and using display field of views (FOVs) of 9 and 18 cm. We evaluated the in-stent stenosis visually, and we measured the attenuation values and the diameter of the patent stent lumen. Results: The visualization of the stent lumen of the vascular models was improved with using the prospective ECG-gated axial scans and a 9-cm FOV. The inner diameters of the vascular models were underestimated with mean measurement errors of -1.10 to -1.36 mm. The measurement errors were smaller with using the prospective ECG-gated axial scans (Bx-Velocity and Express2, p < 0.0001; Micro Driver, p = 0.0004) and a 9-cm FOV (all stents: p < 0.0001), as compared with the other conditions, respectively. The luminal attenuation value was overestimated in each condition. For the luminal attenuation measurement, the use of prospective ECG-gated axial scans provided less measurement error compared with the retrospective ECG-gated helical scans (all stents: p < 0.0001), and the use of a 9-cm FOV tended to decrease the measurement error. Conclusion: The visualization of coronary stents is improved by the use of prospective ECG-gated axial scans and using a small FOV with reduced blooming artifacts and increased spatial resolution.

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