• Title/Summary/Keyword: 조영

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Study of Optimum Contrast Medium Quantity during Abdominal CT using Dual Energy Technique (복부 CT 검사 시 이중에너지 기법을 통한 적정한 조영제 양에 관한 연구)

  • Kang, Min;Choi, Nam-Gil;Han, Jae-Bok;Song, Jong-Nam
    • Proceedings of the Korea Contents Association Conference
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    • 2014.11a
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    • pp.211-212
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    • 2014
  • 단일에너지 복부 검사에서 사용했던 조영제 양 대비 30%, 40%, 50%, 60%, 70%로 각각 설정하여 영상을 획득한 후 대동맥, 하대정맥, 간문맥, 간실질에 관심영역을 설정하여 조영증강정도(houns -field unit; HU)를 구하여 단일에너지에서 측정된 부위와의 값을 비교 분석하였다. 그 결과 기존대비 60%로 조영제를 설정한 군에서는 대동맥 HU : $210.80{\pm}13.609$, 하대정맥 HU : $190.40{\pm}25.215$, 간문맥 $198.40{\pm}21.232$, 간실질 HU : $119.20{\pm}7.98$로 각각 측정되었으며. 단일에너지 복부 CT 검사는 대동맥 HU : $205.40{\pm}16.426$, 하대정맥 HU : $188.20{\pm}21.476$, 간문맥 HU : $195.40{\pm}22.744$, 간실질 HU : $121.00{\pm}6.595$ 이었다. 따라서 이중에너지를 이용하여 복부 조영 CT검사를 시행할 때 조영제의 양을 60%로 설정한 후 검사하는 것이 각 장기에서의 단일에너지 조영검사시와 비슷한 조영증강정도를 획득할 수 있다.

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Evaluation of the Solitary Pulmonary Nodule by Spiral Computed Topography with Contrast Enhancement (고립성 폐결절의 감별에 있어서 나선형 흉부 전산화 단층촬영시 조영증강의 의의)

  • Song, Kwang Seon;Shin, Kye Chul;Yong, Suk Joong;Ryu, Jeong Seon;Kang, Sin Goo;Kim, Chong Ju;Sung, Ki Joon
    • Tuberculosis and Respiratory Diseases
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    • v.43 no.4
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    • pp.519-526
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    • 1996
  • Background : Clinical and Radiographic studies to differentiate benign from malignant pulmonary nodules have previously focused on clinical status and the morphologic and the computed tomographic attenuation characteristics of the lung nodules. Distinctive differences in the vascularity and pathophysiology of malignant versus benign pulmonary nodules were identified. We evaluated the diagnostic method for differentiating malignant from benign solitary pulmonary nodule by contrast enhancement on the spiral CT. Method : Sixteen patients with solitary pulmonary nodule were examined(Tuberculoma 8, primary lung cancer 8). Serial thin section on the spiral CT was performed before and after(45second, 2min, 5min) the onset of the injection of 100mL of nonionic contrast material(2mL/sec). Results : There was no difference in size of nodule and pre-contrast CT number (Hounsfield unit) between benign and malignant nodules. At forty-five second after the onset of the injection, malignant neoplasms($19.6{\pm}7.9$ HU) enhanced significantly more than tuberculomas($4.9{\pm}9.4$ HU, p=0.008). At 2minute and 5 minute after, malignant neoplasms($34.0{\pm}19.2$HU, $34.0{\pm}15.4$HU) enhanced significantly more than tuberculomas ($6.7{\pm}9.7$HU, p=0.007 and $7.7{\pm}11.5$HU, p=0.011). On cut-off value 20HU(contrast enhancement) 2minute after the injection of contrast media, sensitivity was 87% and specificity was 87%. No correlation between the contrast enhancement and size of the nodules was observed. Conclusion : Studies with the use of an intravenously administered noniodinated contrast medium in examining the enhancement properties of lung nodules was performed. The contrast enhancement was useful in differential diagnosis of solitary pulmonary nodules.

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Impact of Contrast Agent for PET Images with CT-based Attenuation Correction (CT 영상을 이용한 감쇠 보정 시 조영제가 PET 영상에 미치는 영향)

  • Son Hye-Kyung;Turkington Timothy G.;Kwon Yun-Young;Jung Haijo;Kim Hee-Joung
    • Progress in Medical Physics
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    • v.16 no.4
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    • pp.192-201
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    • 2005
  • Experiments and simulation were done to study the impact of contrast agent when CT scan was used to attenuation correction for PET Images in PET/CT system. Whole body phantom was imaged with various concentration of iodine-based contrast agent using CT. Mathematical emission and transmission density map with liver were made to simulate for whole body FDG Imaging. A variety of factors were estimated, including non-uniform enhancement of contrast agent, concentration and distribution size of contrast agent, noise level, image resolution, reconstruction algorithm, hypo-attenuation of contrast agent, and different time phases for contrast agent. Experimental studies showed that Hounsfield unit depends on the concentration of contrast agent and tube voltage. From the simulation data, contrast agents Introduced artifacts and degraded image quality on the attenuation-corrected PET images. The severity of these effects depends on a variety of factors, including the concentration and distribution size of contrast agent, the noise levels, and the Image resolution. These results Indicated that the impact of contrast agents should be considered with a full understanding of their potential problems in clinical PET/CT images.

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Comparison of Methods using Radial and Femoral Arteries in Coronary Angiography (심장동맥 조영술 시 노동맥과 넙다리동맥을 이용한 방법 비교)

  • Ahn, Jun-Ho;Lee, Jun-Haeng
    • Journal of the Korean Society of Radiology
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    • v.16 no.2
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    • pp.87-94
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    • 2022
  • In this study, 61 patients who underwent coronary angiography from March 2018 to August 2019 were divided into Group I (Radial, n=34 patients) and Group II (Femoral, n=27 patients), and compared and analyzed methods using radial and femoral arteries when coronary angiography was performed. As a result of comparative analysis, Catheter usage was reduced in the examination using radial artery, and in the abnormal shape of blood vessels, Loops arterial abnormalities were more in the radial artery (20.6% vs, 0%, p<0.05), and it was found that the abnormal shape of the radial vessels increased with age. 60s, 70s, 80s, 90s or older (0%, 18.2%, 25.0%, 100%)

Radiological Perspectives for Diagnosis of Vasospastic Angina with Coronary Angiography (이형성 협심증 진단 조영 검사의 방사선학적 관점)

  • Jong-Gil Kwak;Young-Hyun Seo
    • Journal of the Korean Society of Radiology
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    • v.17 no.4
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    • pp.589-595
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    • 2023
  • If complete coronary artery occlusion occurs due to severer coronary spasm, malignant arrhythmias can lead to death. Therefore, early screening for coronary artery spasm angina is essential. Among the test methods, the drug injection test through coronary angiography is generally performed. Therefore, the purpose of this study was to evaluate the advantages of ergonovine drug test for vasospasitc angina examination during coronary angiography, such as the relationship between the procedure time, contrast medium usage, and radiation exposure effects of coronary angiography. Follow-up data of 142 patients who underwent coronary angiography and variant angina examination from september 2021 to february 2023 were used. As a result of analyzing contrast usage dose and dose area product and air kerma dose and number of imaging series and procedure time, variant angina examination was statistically significantly higher than coronary angiography. (p<0.001) In conclusion, variant angina examination other than coronary artery angiography are radiologically negative. Therefore, we think it is better to avoid excessive inspection. Nevertheless, in the case of the provocation test, the longer the examination time, the higher the fluoroscopy time and the amount of contrast medium used, so it is better to conduct the test as quickly as possible or shorten it.

Automatic segmentation of the artery in coronary angiogram (심혈관 조영도에서의 관상동맥 자동영상분할)

  • Yun, Hyun Joo;Kim, Myoung-Hee
    • Proceedings of the Korea Information Processing Society Conference
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    • 2004.05a
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    • pp.1637-1640
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    • 2004
  • 관상동맥 폐색증 환자들에 대해서 시술되는 stent 삽입 시술이나 관상동맥 우회로 시술 중에는 X-ray 등의 조영 영상이 시술의 기준이 되고 있다. 따라서 조영 영상에서 혈관을 빠르게 인식하는 것은 정확하고 효과적인 시술의 필수 조건이다. 이러한 시술 중 빠르고 정확한 혈관 인식을 위하여 본 논문에서는 심혈관 조영 영상으로부터 관상동맥의 형태를 자동적으로 영상분할하기 위한 방법을 제안한다. 우선 조영 영상에서 혈관을 분명하게 인식하기 위해서는 잡음을 제거하기 위한 필터링이 필요한 데, Anisotropic diffusion을 이용한 필터링은 이미지 내 물체의 경계선을 보존하고, 영역 내의 잡음을 제거하는 데 효과적이다. 정확한 영상분할을 수행하기 위해서는 대부분의 경우 사용자가 영상 내에 관심 영역을 지정하는 인터렉션이 필요하지만 이는 사용자에게 불편함을 줄 수 있다. 따라서 이러한 번거로움을 최소화하고, 정확한 결과를 유도하기 위해서 자동 씨드 영역 추출 알고리즘을 제안한다. 따라서 조영 영상에 필터링을 적용한 후 추출된 씨드 영역과 추출된 에지와 Adaptive region-growing을 복합적으로 사용하는 영상분할을 수행하게 되면 보다 효과적인 관상동맥 영상 분할의 결과를 얻을 수 있었다.

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CT Scan Findings of Rabbit Brain Infection Model and Changes in Hounsfield Unit of Arterial Blood after Injecting Contrast Medium (토끼 뇌감염 모델의 CT 소견과 조영제 주입 후 동맥혈의 Hounsfield Unit의 변화)

  • Ha, Bon-Chul;Kwak, Byung-Kook;Jung, Ji-Sung
    • The Journal of the Korea Contents Association
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    • v.12 no.9
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    • pp.270-279
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    • 2012
  • This paper explores CT findings of a rabbit brain infection model injected with Escherichia coli and investigates the changes in Hounsfield unit (HU) of arterial blood over time. The brain infection model was produced by injecting E. coli $1{\times}10^7$ CFU/ml, 0.1 ml through the burr hole in the calvarium; 2~3 mm in depth from the dura mater, and contrast-enhanced CT, dynamic CT and arterial blood CT images were gained. It was found that various brain infections such as brain abscess, ventriculitis and meningitis. The CT image of brain abscess showed a typical pattern which the peripheral area was strongly contrast-enhanced while the center was weakly contrast-enhanced. The CT image of ventriculitis showed a strong contrast-enhancement along the lateral ventricle wall, and the CT image of meningitis showed a strong contrast-enhancement in the area between the telencephalon and the diencephalon. In dynamic CT images, the HU value of the infection core before injecting contrast medium was $31.01{\pm}3.55$. By 10 minutes after the injection, the value increased gradually to $40.36{\pm}3.76$. The HU value in the areas of the marginal rim where was hyper-enhanced showed $47.23{\pm}3.12$ before contrast injection, and it increased to $63.59{\pm}3.31$ about 45 seconds after the injection. In addition, the HU value of the normal brain tissue opposite to the E. coli. injected brain was $39.01{\pm}3.24$ before the injection, but after the contrast injection, the value increased to $49.01{\pm}4.29$ in about 30 seconds, and then it showed a gradual decline. In the arterial blood CT, the HU value before the contrast injection was $87.78{\pm}6.88$, and it increased dramatically between 10 to 30 seconds until it reached a maximum value of $749.13{\pm}98.48$. Then it fell sharply to $467.85{\pm}62.98$ between 30 seconds to 45 seconds and reached a plateau by 60 seconds. Later, the value showed a steady decrease and indicated $188.28{\pm}25.03$ at 20 minutes. Through this experiment, it was demonstrated that the brain infection model can be produced by injecting E. coli., and the characteristic of the infection model can be well observed with contrast-enhanced CT scan. The dynamic CT scan showed that the center of the infection was gradually contrast-enhanced, whereases the peripheral area was rapidly contrast-enhanced and then slowly decreased. As for arterial blood, it increased significantly between 10 seconds to 30 seconds after the contrast medium injection and decreased gradually after reaching a plateau.

Assessment of Additional MRI-Detected Breast Lesions Using the Quantitative Analysis of Contrast-Enhanced Ultrasound Scans and Its Comparability with Dynamic Contrast-Enhanced MRI Findings of the Breast (유방자기공명영상에서 추가적으로 발견된 유방 병소에 대한 조영증강 초음파의 정량적 분석을 통한 진단 능력 평가와 동적 조영증강 유방 자기공명영상 결과와의 비교)

  • Sei Young Lee;Ok Hee Woo;Hye Seon Shin;Sung Eun Song;Kyu Ran Cho;Bo Kyoung Seo;Soon Young Hwang
    • Journal of the Korean Society of Radiology
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    • v.82 no.4
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    • pp.889-902
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    • 2021
  • Purpose To assess the diagnostic performance of contrast-enhanced ultrasound (CEUS) for additional MR-detected enhancing lesions and to determine whether or not kinetic pattern results comparable to dynamic contrast-enhanced magnetic resonance imaging (DCE-MRI) of the breast can be obtained using the quantitative analysis of CEUS. Materials and Methods In this single-center prospective study, a total of 71 additional MR-detected breast lesions were included. CEUS examination was performed, and lesions were categorized according to the Breast Imaging-Reporting and Data System (BI-RADS). The sensitivity, specificity, and diagnostic accuracy of CEUS were calculated by comparing the BI-RADS category to the final pathology results. The degree of agreement between CEUS and DCE-MRI kinetic patterns was evaluated using weighted kappa. Results On CEUS, 46 lesions were assigned as BI-RADS category 4B, 4C, or 5, while 25 lesions category 3 or 4A. The diagnostic performance of CEUS for enhancing lesions on DCE-MRI was excellent, with 84.9% sensitivity, 94.4% specificity, and 97.8% positive predictive value. A total of 57/71 (80%) lesions had correlating kinetic patterns and showed good agreement (weighted kappa = 0.66) between CEUS and DCE-MRI. Benign lesions showed excellent agreement (weighted kappa = 0.84), and invasive ductal carcinoma (IDC) showed good agreement (weighted kappa = 0.69). Conclusion The diagnostic performance of CEUS for additional MR-detected breast lesions was excellent. Accurate kinetic pattern assessment, fairly comparable to DCE-MRI, can be obtained for benign and IDC lesions using CEUS.

3차원 치료계획용 전산화단층촬영에서 영상증강을 위한 최적의 프로토콜에 관한 연구

  • 이상규;이석;김주호;백종걸;조정희;신동봉;박재일
    • The Journal of Korean Society for Radiation Therapy
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    • v.14 no.1
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    • pp.15-22
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    • 2002
  • 1. 목적 : 방사선종양학과에서 3차원 치료계획용 전산화단층촬영 시 조영제 주입율에 따른 CT 값(hounsfield unit, H.U) 변화를 정량적으로 평가하여 최적의 영상증강효과 및 방사선치료계획을 위한 기초 프로토콜을 제시하고자 한다. 2. 대상 및 방법: 연세암센터 방사선종양학과에서 3차원 치료계획용 전산화단층촬영을 시행한 상복부(폐암)환자 20명을 대상으로 하였다. 조영제 양(130mL)은 일정하게 고정하였고, 조영제주입율을 1.2, 1.5, 2.0 mL/sec로 변화시켜가며 조영제를 주입하면서 3차원 방사선치료계획영상에 적합한 조영제주입율(contrast flow rate)과 지연시간(delay time)을 도출하였고, CT 값을 측정하여 정량적 평가를 시행하였다. 관심부위는 폐동맥과 폐정맥으로 하였다. 그리고, 환자 기본정보, 조영제주입율, H.U 등 영상증강에 영향을 미치는 인자들을 통계처리 프로그램인 SPSS를 이용하여 최적의 영상을 획득할 수 있는 기초 프로토콜을 작성하였다. 3. 결과 : 폐암환자의 전산화단층촬영영상 획득 시 3차원 방사선치료계획에 적합한 영상을 얻을 수 있는 조건중 조영제주입율은 1.5 mL/sec 이었고, 지연시간은 $60{\sim}70$초이었다. 통계처리를 수행한 결과 환자의 기본정보 및 조영제주입율 등이 영상증강에 영향을 미치는 인자임을 알 수 있었다. 본 연구에서 작성한 기초 프로토콜을 이용하여 3차원 방사선치료계획 시 정확한 종양 및 정상조직 설정이 용이하게 되어 방사선치료 효율을 극대화 할 수 있었다. 4. 결론 : 방사선종양학과에서 3차원 치료계획용 전산화단층촬영 시 사용할 수 있는 기초적인 영상획득 프로토콜을 도출하였고, 향후 더 많은 임상경험과 정량적 평가가 수반된다면 임상에 적극 사용할 수 있을 것이라 사료된다.

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Parametric Imaging with Respiratory Motion Correction for Contrast-Enhanced Ultrasonography (조영증강 초음파 진단에서 호흡에 의한 흔들림을 보정한 파라미터 영상 생성 기법)

  • Kim, Ho-Joon;Cho, Yun-Seok
    • KIPS Transactions on Software and Data Engineering
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    • v.9 no.2
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    • pp.69-76
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    • 2020
  • In this paper, we introduce a method to visualize the contrast diffusion patterns and the dynamic vascular patterns in a contrast-enhanced ultrasound image sequence. We present an imaging technique to visualize parameters such as contrast arrival time, peak intensity time, and contrast decay time in contrast-enhanced ultrasound data. The contrast flow pattern and its velocity are important for characterizing focal liver lesions. We propose a method for representing the contrast diffusion patterns as an image. In the methods, respiratory motion may degrade the accuracy of the parametric images. Therefore, we present a respiratory motion tracking technique that uses dynamic weights and a momentum factor with respect to the respiration cycle. Through the experiment using 72 CEUS data sets, we show that the proposed method makes it possible to overcome the limitation of analysis by the naked eye and improves the reliability of the parametric images by compensating for respiratory motion in contrast-enhanced ultrasonography.