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      KCI등재 SCIE SCOPUS

      Optimal Attenuation Threshold for Quantifying CT Pulmonary Vascular Volume Ratio

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      https://www.riss.kr/link?id=A106865560

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      다국어 초록 (Multilingual Abstract)

      Objective: To evaluate the effects of attenuation threshold on CT pulmonary vascular volume ratios in children and young adults with congenital heart disease, and to suggest an optimal attenuation threshold. Materials and Methods: CT percentages of r...

      Objective: To evaluate the effects of attenuation threshold on CT pulmonary vascular volume ratios in children and young adults with congenital heart disease, and to suggest an optimal attenuation threshold.
      Materials and Methods: CT percentages of right pulmonary vascular volume were compared and correlated with percentages calculated from nuclear medicine right lung perfusion in 52 patients with congenital heart disease. The selected patients had undergone electrocardiography-synchronized cardiothoracic CT and lung perfusion scintigraphy within a 1-year interval, but not interim surgical or transcatheter intervention. The percentages of CT right pulmonary vascular volumes were calculated with fixed (80–600 Hounsfield units [HU]) and adaptive thresholds (average pulmonary artery enhancement [PAavg] divided by 2.50, 2.00, 1.75, 1.63, 1.50, and 1.25). The optimal threshold exhibited the smallest mean difference, the lowest p-value in statistically significant paired comparisons, and the highest Pearson correlation coefficient.
      Results: The PAavg value was 529.5 ± 164.8 HU (range, 250.1–956.6 HU). Results showed that fixed thresholds in the range of 320–400 HU, and adaptive thresholds of PAavg/1.75–1.50 were optimal for quantifying CT pulmonary vascular volume ratios. The optimal thresholds demonstrated a small mean difference of ≤ 5%, no significant difference (> 0.2 for fixed thresholds, and > 0.5 for adaptive thresholds), and a high correlation coefficient (0.93 for fixed thresholds, and 0.91 for adaptive thresholds).
      Conclusion: The optimal fixed and adaptive thresholds for quantifying CT pulmonary vascular volume ratios appeared equally useful. However, when considering a wide range of PAavg, application of optimal adaptive thresholds may be more suitable than fixed thresholds in actual clinical practice.

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      참고문헌 (Reference)

      1 Goo HW, "Xenon ventilation CT using dual-source and dual-energy technique in children with bronchiolitis obliterans : correlation of xenon and CT density values with pulmonary function test results" 40 : 1490-1497, 2010

      2 홍선화, "User-Friendly Vendor-Specific Guideline for Pediatric Cardiothoracic Computed Tomography Provided by the Asian Society of Cardiovascular Imaging Congenital Heart Disease Study Group: Part 1. Imaging Techniques" 대한영상의학회 20 (20): 190-204, 2019

      3 Goo HW, "Tube current reduction in pediatric non-ECGgated heart CT by combined tube current modulation" 36 : 344-351, 2006

      4 구현우, "State-of-the-Art CT Imaging Techniques for Congenital Heart Disease" 대한영상의학회 11 (11): 4-18, 2010

      5 Goo HW, "Semiautomatic three-dimensional CT ventricular volumetry in patients with congenital heart disease : agreement between two methods with different user interaction" 31 : 223-232, 2015

      6 Hyun Woo Goo, "Semiautomatic Three-Dimensional Threshold-Based Cardiac Computed Tomography Ventricular Volumetry in Repaired Tetralogy of Fallot: Comparison with Cardiac Magnetic Resonance Imaging" 대한영상의학회 20 (20): 102-113, 2019

      7 Pruckmayer M, "Scintigraphic assessment of pulmonary and whole-body blood flow patterns after surgical intervention in congenital heart disease" 40 : 1477-1483, 1999

      8 Goo HW, "Pulmonary vascular volume ratio measured by cardiac computed tomography in children and young adults with congenital heart disease : comparison with lung perfusion scintigraphy" 47 : 1580-1587, 2017

      9 Bettinger N, "Practical determination of aortic valve calcium volume score on contrast-enhanced computed tomography prior to transcatheter aortic valve replacement and impact on paravalvular regurgitation : elucidating optimal threshold cutoffs" 11 : 302-308, 2017

      10 Lee SM, "Optimal threshold of subtraction method for quantification of airtrapping on coregistered CT in COPD patients" 26 : 2184-2192, 2016

      1 Goo HW, "Xenon ventilation CT using dual-source and dual-energy technique in children with bronchiolitis obliterans : correlation of xenon and CT density values with pulmonary function test results" 40 : 1490-1497, 2010

      2 홍선화, "User-Friendly Vendor-Specific Guideline for Pediatric Cardiothoracic Computed Tomography Provided by the Asian Society of Cardiovascular Imaging Congenital Heart Disease Study Group: Part 1. Imaging Techniques" 대한영상의학회 20 (20): 190-204, 2019

      3 Goo HW, "Tube current reduction in pediatric non-ECGgated heart CT by combined tube current modulation" 36 : 344-351, 2006

      4 구현우, "State-of-the-Art CT Imaging Techniques for Congenital Heart Disease" 대한영상의학회 11 (11): 4-18, 2010

      5 Goo HW, "Semiautomatic three-dimensional CT ventricular volumetry in patients with congenital heart disease : agreement between two methods with different user interaction" 31 : 223-232, 2015

      6 Hyun Woo Goo, "Semiautomatic Three-Dimensional Threshold-Based Cardiac Computed Tomography Ventricular Volumetry in Repaired Tetralogy of Fallot: Comparison with Cardiac Magnetic Resonance Imaging" 대한영상의학회 20 (20): 102-113, 2019

      7 Pruckmayer M, "Scintigraphic assessment of pulmonary and whole-body blood flow patterns after surgical intervention in congenital heart disease" 40 : 1477-1483, 1999

      8 Goo HW, "Pulmonary vascular volume ratio measured by cardiac computed tomography in children and young adults with congenital heart disease : comparison with lung perfusion scintigraphy" 47 : 1580-1587, 2017

      9 Bettinger N, "Practical determination of aortic valve calcium volume score on contrast-enhanced computed tomography prior to transcatheter aortic valve replacement and impact on paravalvular regurgitation : elucidating optimal threshold cutoffs" 11 : 302-308, 2017

      10 Lee SM, "Optimal threshold of subtraction method for quantification of airtrapping on coregistered CT in COPD patients" 26 : 2184-2192, 2016

      11 Goo HW, "Myocardial delayed-enhancement CT : initial experience in children and young adults" 47 : 1452-1462, 2017

      12 Sabiniewicz R, "Lung perfusion scintigraphy in the diagnosis of peripheral pulmonary stenosis in patients after repair of Fallot tetralogy" 5 : 11-13, 2002

      13 구현우, "Is It Better to Enter a Volume CT Dose Index Value before or after Scan Range Adjustment for Radiation Dose Optimization of Pediatric Cardiothoracic CT with Tube Current Modulation?" 대한영상의학회 19 (19): 692-703, 2018

      14 Goo HW, "Individualized volume CT dose index determined by cross-sectional area and mean density of the body to achieve uniform image noise of contrast-enhanced pediatric chest CT obtained at variable kV levels and with combined tube current modulation" 41 : 839-847, 2011

      15 Goo HW, "Haemodynamic findings on cardiac CT in children with congenital heart disease" 41 : 250-261, 2011

      16 Yanagawa N, "Effect of threshold on the correlation between airflow obstruction and low attenuation volume in smokers assessed by inspiratory and expiratory MDCT" 56 : 438-446, 2015

      17 Shi K, "Dual-source computed tomography for evaluating pulmonary artery in pediatric patients with cyanotic congenital heart disease : comparison with transthoracic echocardiography" 85 : 187-192, 2016

      18 Scholten ET, "Detection and quantification of the solid component in pulmonary subsolid nodules by semiautomatic segmentation" 25 : 488-496, 2015

      19 Goo HW, "Computed tomography pulmonary vascular volume ratio in children and young adults with congenital heart disease : the effect of cardiac phase" 48 : 915-922, 2018

      20 Hyun Woo Goo, "Computed Tomography Pulmonary Vascular Volume Ratio Can Be Used to Evaluate the Effectiveness of Pulmonary Angioplasty in Peripheral Pulmonary Artery Stenosis" 대한영상의학회 20 (20): 1422-1430, 2019

      21 구현우, "Comparison of Chest Pain Protocols for Electrocardiography-Gated Dual-Source Cardiothoracic CT in Children and Adults: The Effect of Tube Current Saturation on Radiation Dose Reduction" 대한영상의학회 19 (19): 23-31, 2018

      22 Goo HW, "Combined prospectively electrocardiography-and respiratory-triggered sequential cardiac computed tomography in free-breathing children : success rate and image quality" 48 : 923-931, 2018

      23 구현우, "Combined Electrocardiography- and RespiratoryTriggered CT of the Lung to Reduce Respiratory Misregistration Artifacts between Imaging Slabs in Free-Breathing Children: Initial Experience" 대한영상의학회 18 (18): 860-866, 2017

      24 Tricarico F, "Cardiovascular CT angiography in neonates and children : image quality and potential for radiation dose reduction with iterative image reconstruction techniques" 23 : 1306-1315, 2013

      25 Park S, "Automatic reconstruction of the arterial and venous trees on volumetric chest CT" 40 : 071906-, 2013

      26 Koch K, "Assessment of right ventricular function by 16-detectorrow CT : comparison with magnetic resonance imaging" 15 : 312-318, 2005

      27 Goo HW, "Advanced functional thoracic imaging in children : from basic concepts to clinical applications" 43 : 262-268, 2013

      28 Hayabuchi Y, "Accurate quantification of pulmonary artery diameter in patients with cyanotic congenital heart disease using multidetector-row computed tomography" 154 : 783-788, 2007

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      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2016-11-15 학회명변경 영문명 : The Korean Radiological Society -> The Korean Society of Radiology KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2006-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.61 0.46 1.15
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.93 0.84 0.494 0.06
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