• 제목/요약/키워드: ACR Phantom

검색결과 30건 처리시간 0.019초

유방엑스선검사에서의 변형된 ACR 팬텀 제작을 통한 모조병소의 위치와 두께 변화에 따른 영상의 품질 평가 (Evaluation of Image Quality according to Insert Position and Thickness Change by Fabricating Modified ACR Phantom in Mammography)

  • 엄현자;박찬록
    • 대한방사선기술학회지:방사선기술과학
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    • 제45권2호
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    • pp.103-109
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    • 2022
  • To maintain improved image quality in mammography, the quality control process is performed using the ACR (American college of radiology) phantom. In addition, many studied were performed by fabricating the customized breast phantom to provide more information in mammography. Thus, the purpose of this study was to evaluate the image quality by designing the modified ACR phantoms. The five modified acrlylic ACR phantoms were designed by considering insert position and phantom thickness. The phantoms were consisted of 4.5, 3.0, and 1.5 cm in terms of phantom thickness, and 3.0, 2.0, and 0.5 cm in terms of insert position, respectively. The acquired images were evaluated by PSNR (peak signal to noise ratio), RMSE (root mean square error), CC (correlation coefficient), CNR (contrast to noise ratio), and COV (coefficient of variation). Based on the similarity analysis, the result is suitable between conventional and new designed phantoms. In addition, the CNR and COV results in terms of insert position showed that image quality for 0.5 cm was 2.3 and 27.4% improved compared with 2 and 3 cm, respectively. According to phantom thickness results, the CNR result for 1.5 cm and COV result for 4.5 cm were 50.1 and 62.7% improved compared with that those conditions. In conclusion, we confirmed that the image quality depends on the breast size and thickness through modified ACR phantom study.

자기공명영상에서 ACR 팬텀을 이용한 잡음전력스펙트럼 평가 (Evaluation of the Noise Power Spectrum by Using American College of Radiology Phantom for Magnetic Resonance Imaging)

  • 민정환;정회원
    • 대한방사선기술학회지:방사선기술과학
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    • 제47권1호
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    • pp.21-28
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    • 2024
  • This study was purpose to quantitative evaluation of comparison of the image intensity uniformity and noise power spectrum (NPS) by using American college of radiology (ACR) phantom for magnetic resonance imaging (MRI). The MRI was used achiva 3.0T MRI and discovery MR 750, 3.0T, the head and neck matrix shim SENSE head coil were 32 channels receive MR coil. The MRI was used parameters of image sequence for ACR standard and general hospital. NPS value of the ACR standard T2 vertical image in GE equipment was 7.65E-06 when the frequency was 1.0 mm-1. And the NPS value of the ACR hospital T1 region of interest (ROI) 9 over all vertical image in Philips equipment was 9E-08 when the frequency was 1.0 mm-1 and the NPS value of the hospital T2 ROI 9 over all vertical image in Philips equipment was 1.06E-07 when the frequency was 1.0 mm-1. NPS was used efficiently by using a general hospital vertical sequence more than the standard vertical sequence method by using the ACR phantom. Furthermore NPS was the quantitative quality assurance (QA) assessment method for noise and image intensity uniformity characteristics was applied mutatis mutandis, and the results values of the physical imaging NPS of the 3.0T MRI and ACR phantom were presented.

ACR 팬텀을 이용한 치아 임플란트 자기공명영상 인공물 분석 (Analysis of the Dental Implants MRI Artifacts by Using the ACR Phantom)

  • 신운재
    • 한국방사선학회논문지
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    • 제10권8호
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    • pp.629-635
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    • 2016
  • 자기공명영상 장치의 정도관리를 위한 ACR 팬텀은 팬텀내의 여러 구조물을 통하여 자기공명영상 화질을 평가할 수 있다. 본 연구는 3.0T 장비에서 Head coil에서 ACR 팬텀을 이용하여 임플란트와 치아 교정용 철사를 부착하여 영상의 고스트 신호 백분율과 절편 두께 정확도를 분석할 수 있었다. T1강조영상 첫 번째 절편과 열한 번째 절편의 임플란트 보철에서 절편위치 정확도는 수신대역폭이 230에서 좋게 나타났으며, 교정용 철사가 부착했을 때는 수신대역폭이 130일 때가 좋았다. 고스트 신호 백분율은 SE T1강조영상 일곱번째 절편에서 임플란트 보철에 추가된 교정용 철사의 경우에는 수신대역폭 230이 좋게 나타났다. 자기공명영상 검사에서 임플란트 보철 환자의 경우에 적절한 수신대역폭을 선택하여 영상의 왜곡과 신소 소실이 감소된 영상을 획득할 수 있을 것으로 사료된다.

자기공명영상에서 ACR 팬텀을 이용한 해상력 특성 평가 (Evaluation of the Resolution Characteristics by Using American College of Radiology Phantom for Magnetic Resonance Imaging)

  • 민정환;정회원;한지현;이시내;김민지;김승철
    • 대한방사선기술학회지:방사선기술과학
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    • 제45권1호
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    • pp.11-17
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    • 2022
  • This study was purpose to quantitative assessment of the resolution characteristics by using American college of radiology(ACR) phantom for magnetic resonance imaging (MRI). The MRI equipment was used (Achiva 3.0T MRI, Philips system, Netherlands) and the head/neck matrix shim SENSE head coil were 32 channels(elements) receive MR coil. And the MRI equipment was used (Discovery MR 750, 3.0T MRI, GE medical system, America) and the head/neck matrix shim MC 3003G-32R 32-CH head coil were receive MR coil. As for the modulation transfer function(MTF) comparison result by using ACR magnetic resonance imaging phantom, the MTF value of the ACR standard T2 image in GE equipment is 0.199 when the frequency is 1.0 mm-1 and the MTF value of the hospital T2 image in Philips equipment is 0.528. It was used efficiently by using a general sequence more than the standard sequence method using the ACR phantom. In addition it is significant that the quantitative quality assurance evaluation method for resolution characteristics was applied mutatis mutandis, and the result values of the physical image characteristics of the 3.0T MRI device were presented.

CT 정도관리에서 ACR 팬텀을 이용한 딥러닝 모델 적용에 관한 연구 (A Study on the Application of Deep Learning Model by Using ACR Phantom in CT Quality Control)

  • 최은빈;김시온;최승원;김재희;김영균;한동균
    • 대한방사선기술학회지:방사선기술과학
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    • 제46권6호
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    • pp.535-542
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    • 2023
  • This study aimed to implement a deep learning model that can perform quantitative quality control through ACTS software used for quantitative evaluation of ACR phantom in CT quality control and evaluate its usefulness. By changing the scanning conditions, images of three modules of the ACR phantom's slice thickness (ST), low contrast resolution (LC), and high contrast resolution (HC) were obtained and classified as ACTS software. The deep learning model used ResNet18, implementing three models in which ST, HC, and LC were learned with epoch 50 and an integrated model in which three modules were learned with Epoch 10, 30, and 50 at once. The performance of each model was evaluated through Accuracy and Loss. When comparing and evaluating the accuracy and loss function values of the deep learning models by ST, LC, and HC modules, the Accuracy and Loss of the HC model were the best with 100% and 0.0081, and in the integrated model according to the Epoch value, Accuracy and Loss with epoch 50 were the best with 96.29% and 0.1856. This paper showed that quantitative quality control is possible through a deep learning model, and it can be used as a basis and evidence for applying deep learning to the CT quality control.

ACR 팬텀을 이용한 Cartesian Trajectory와 MultiVane Trajectory의 비교분석 : 영상강도 균질성과 저대조도 검체 검출률 test를 사용하여 (Comparative Analysis of Cartesian Trajectory and MultiVane Trajectory Using ACR Phantom in MRI : Using Image Intensity Uniformity Test and Low-contrast Object Detectability Test)

  • 남순권;최준호
    • 대한방사선기술학회지:방사선기술과학
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    • 제42권1호
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    • pp.39-46
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    • 2019
  • This study conducted a comparative analysis of differences between cartesian trajectory in a linear rectangular coordinate system and MultiVane trajectory in a nonlinear rectangular coordinate system axial T1 and axial T2 images using an American College of Radiology(ACR) phantom. The phantom was placed at the center of the head coil and the top-to-bottom and left-to-right levels were adjusted by using a level. The experiment was performed according to the Phantom Test Guidance provided by the ACR, and sagittal localizer images were obtained. As shown in Figure 2, slices # 1 and # 11 were scanned after placing them at the center of a $45^{\circ}$ wedge shape, and a total of 11 slices were obtained. According to the evaluation results, the image intensity uniformity(IIU) was 93.34% for the cartesian trajectory, and 93.19% for the MultiVane trajectory, both of which fall under the normal range in the axial T1 image. The IIU for the cartesian trajectory was 0.15% higher than that for the MultiVane trajectory. In axial T2, the IIU was 96.44% for the cartesian trajectory, and 95.97% for the MultiVane trajectory, which fall under the normal range. The IIU for the cartesian trajectory was by 0.47% higher than that for the MultiVane trajectory. As a result, the cartesian technique was superior to the MultiVane technique in terms of the high-contrast spatial resolution, image intensity uniformity, and low-contrast object detectability.

은(Ag)이온이 함유된 항균필름이 MRI에 미치는 영향 (Effect of Antibacterial Film Containing Silver Ions on MRI)

  • 신병근;김성후;안성민
    • 대한방사선기술학회지:방사선기술과학
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    • 제44권3호
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    • pp.219-224
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    • 2021
  • The purpose of these experiments is often to scan infected patients with MRI. Therefore, it is to investigate whether the antibacterial film containing silver ions, which is a non-magnetic substance, affects magnetic resonance imaging. In this experiment, the ACR phantom was used, not the patient. The ACR phantom was wrapped in an antibacterial film and the SNR, CNR, sagittal localization image, and geometrical accuracy were compared before and after. The experiment was performed 10 times and the averaged values were compared. There were no significant differences in the results of all experiments. The FDA recommends removing metal and antibacterial film masks during MRI scans. The reason is that there was one case of injury with facial burns. When I touched the antibacterial film to check the fever during the 2 hour experiment, I did not feel any particular fever. In light of the experimental results, it would be helpful to use an antibacterial film when testing an infected patient. The reason is that there isn't a difference before and after the experiment of SNR, CNR, and sagittal localization images.

Flangeless Esser PET Phantom 영상 자동 분석 프로그램의 유용성 평가 (Usefulness Assessment of Automatic Analysis Program for Flangeless Esser PET Phantom Images)

  • 남궁창경;남기표;김경식;김정선;임기천;신상기;조시만;동경래
    • 핵의학기술
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    • 제13권1호
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    • pp.63-66
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    • 2009
  • Purpose: ACR (American College of Radiology) offers variable parameters to PET/CT quality control by using ACR Phantom. ACR Phantom was made to evaluate parameters which are uniformity, attenuation, scatter, contrast and resolution. Manual analysis method wasn't good for the use of QC because values of parameter were changed as it may user and it takes long time to analysis. Ki-Chun Lim, a nuclear scientist in AMC, developed program that automatically analysis values of parameter by using ACR Phantom to overcome above problems. In this study, we evaluated automatic analysis program's usability, through the comparing SUV of each method, reproducibility of SUV when repeated analysis and the time required. Materials and Methods: Using Flangeless Esser PET Phantom, the ideal ratio of 4 : 1 hot cylinder and BKG but it actually showed a ratio of 3.89 to 1 hot cylinder and BKG. SIEMENS Biograph True Point 40 was used in this study. We obtained images using ACR phantom at Fusion WB PET Scan condition (2 min/bed) and 120 kV, 100 mAs CT condition. Using True X method, 3 iterations, 14 subsets, Gaussian filter, FWHM 4 mm and Zoom Factor 1.0, $168{\times}168$ image size. We obtained Max. & Min. SUV and SUV Mean values at Cylinder (8, 12, 16, 25 mm, Air, Bone, Water, BKG) by automatic program and obtained SUV by manual method. After that, we compared manual and automatic method. we estimate the time required from opened the image data to final work sheet was completed. Results: Automatic program always showed same result and same the time required. At 8, 12, 16 and 25 m cylinder, manual method showed 6.69, 3.46, 2.59, 1.24 CV values. The larger cylinder size became, the smaller CV became. In manual method, bone, air, water's CV were over 9.9 except BKG (2.32). Obtained CV of Mean SUV showed BKG was low (0.85) and bone was high (7.52). The time required was 45 second, 882 second respectably. Conclusions: As a result of difference automatic method and manual method, automatic method showed always same result, manual method showed that the smaller hot cylinders became, the lager CV became. Hot cylinders mean region size, the smaller hot cylinder size becomes we had some trouble in doing ROI poison setting. And it means increase in variation of SUV. The Study showed the time required of automatic method was shorten then manual method.

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SPECT/CT 장비에서 정량분석을 위한 핵종 별 Broad Quantification Calibration 시행 및 SUV 평가를 위한 팬텀 실험에 관한 연구 (A study on Broad Quantification Calibration to various isotopes for Quantitative Analysis and its SUVs assessment in SPECT/CT)

  • 고현수;최재민;박순기
    • 핵의학기술
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    • 제26권2호
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    • pp.20-31
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    • 2022
  • Broad Quantification Calibration(B.Q.C)은 SPECT/CT 장비에서 정량적인 평가(Quantitative Analysis)에 사용되는 표준 섭취 계수(Standard Uptake Value; SUV) 측정을 위한 Calibration 이다. Tc-99m, I-123, I-131, Lu-177 네 가지 핵종 별로 B.Q.C 를 시행한 후 SUV 가 정확하게 측정되는지를 검증하기 위해 팬텀 실험을 추가로 시행하였다. SPECT 장비를 위한 국제 기준이 아직까지 명확하게 마련되지 있지 않아 ACR Esser PET phantom을 이용하여 감마카메라 장비에서 사용하는 핵종 별로 SUV 측정을 위한 기반 작업을 수행하고자 하였다. 실험에 사용 된 SPECT/CT 장비는 SIEMENS 사의 Symbia Intevo 16과 Symbia Intevo Bold 두 장비이다. B.Q.C는 point source 를 이용하여 각 detector 에 감도를 인식시켜주는 sensitivity cal. 을 1 차로 시행하고, cylinder phantom 을 이용하여 Volume Sensitivity Factor(VSF)를 산출하는 volume sensitivity cal.을 추가로 시행한다. SUV 측정을 위해 ACR Esser PET phantom을 이용하여 Tc-99m, I-123, I-131, Lu-177 네 가지 핵종 별로 팬텀 영상을 획득하고, 배후방사능(BKG)의 SUVmean와 네 개의 hot vial(25, 16, 12, 8 mm)에서의 SUVmax를 측정하였다. Intevo 16, Intevo Bold 두 장비간의 SUV 차이를 비교하기 위해 SPSS ver. 21(IBM company, USA)을 이용하여 Mann-Whitney 검정을 시행하였다. B.Q.C 시행에 따른 네 가지 핵종 별로, 각 장비와 Detector 1, 2 에서의 Sensitivity(CPS/MBq) 및 VSF 는 다음과 같다(Intevo 16 D1 sensitivity/D2 sensitivity/VSF, Intevo Bold 순). Tc-99m 에서는 87.7/88.6/1.08, 91.9/91.2/1.07, I-123에서는 79.9/81.9/0.98, 89.4/89.4/0.98, I-131에서는 124.8/128.9/0.69, 130.9, 126.8/0.71, Lu-177 에서는 8.7/8.9/1.02, 9.1/8.9/1.00 이었다. ACR Esser PET 팬텀 실험에서 SUV 결과는 다음과 같다(Intevo 16 BKG SUVmean/25mmSUVmax/16mm/12mm/ 8mm, IntevoBold순). Tc-99m에서는 1.03/2.95/2.41/1.96/1.84, 1.03/2.91/2.38/1.87/1.82, I-123에서는 0.97/2.91/2.33/ 1.68/1.45, 1.00/2.80/2.23/1.57/1.32, I-131에서는 0.96/1.61/ 1.13/1.02/0.69, 0.94/1.54/1.08/0.98/0.66, Lu-177에서는 1.00/ 6.34/4.67/2.96/2.28, 1.01/6.21/4.49/2.86/2.21 이었다. 두 장비 간의 팬텀 실험 별 SUV 차이를 비교하기 위해 MannWhitney 검정을 시행한 결과, 통계적으로 유의한 차이가 없었다(z=-0.338, p=0.735). 기존 감마카메라는 단면 영상의 육안적인 평가만 가능하였다면, SPECT/CT 영상을 통해 해부학적 정보와 3차원 단층 영상 획득 및 SUV 측정으로 정량 분석이 가능하게 되었다. 주로 사용하는 Tc-99m 뿐만 아니라 I-123, I-131, Lu-177 핵종에 대해서도 Broad Quantification Calibration 을 시행하여 핵종 별로 정량적인 정보를 획득 할 수 있는 기반 작업이 수행 되었고, ACR Esser PET phantom 실험을 통해 SUV 측정의 신뢰도에 대한 검증도 수행 되었다. 장비의 성능 및 정량분석의 재현성을 유지하기 위해 주기적인 장비의 정도관리가 필요할 것이며, 이를 통해 Bone SPECT/CT 뿐만 아니라 기타 다른 SPECT/CT 영상 검사의 추적관찰 및 동위원소 치료 분야에서도 치료반응을 평가하는 등의 많은 도움이 될 것으로 사료된다.

PET/CT 팬텀의 3D 프린팅 소재 적용 가능성 평가 (Evaluation of the Applicability of PET/CT Phantom as a 3D Printing Material)

  • 이주영;김지현;박훈희
    • 대한방사선기술학회지:방사선기술과학
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    • 제45권5호
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    • pp.423-431
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    • 2022
  • The purpose of this study is to present objective information in applying 3D printing technology for PET/CT (Positron Emission Tomography/Computed Tomography) performance evaluation and use it as a basic research that can be applied to various purposes in the future. Phantoms were manufactured with step wedge of ABS(Acrylonitrile Butadiene Styrene) and ACR(Acrylic acid) material. The counts for each ROI(Region of Interest) were analyzed through image acquisition in PET/CT. And the variation rate of counts and CNR(Contrast Noise Ratio) was evaluated. In the counts analysis, the effect of thickness occurred. In addition, in the variation rate analysis, the thickness setting of steps wedge 4 to 5 levels should be considered first. These results minimize quantitative and qualitative changes in the phantom manufactured based on 3D printing, and enable more stable PET/CT performance evaluation. Based on 3D printing in PET/CT, various phantoms are expected to be produced in the future. If the characteristics of each material are considered and applied through the basic research such as this research, the result of the phantom manufactured through 3D printing can be more meaningful and will be used in a wide range.