• 제목/요약/키워드: Chest dose

검색결과 488건 처리시간 0.026초

자동 노출 조절장치를 사용한 흉부 후·전 방향 방사선 검사 시 격자 유·무에 따른 환자 선량과 영상품질 비교 연구 (A Comparative Study of Patient Dose and Image Quality according to the Presence or Absence of Grid During Chest PA Radiography using an Auto Exposure Control System)

  • 이소민;김한용;김동환;주영철
    • 한국방사선학회논문지
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    • 제17권4호
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    • pp.573-579
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    • 2023
  • 본 연구는 자동노출조절장치를 사용하는 흉부 후·전 방향 방사선검사(Chest PA) 시 격자 사용 유·무 및 가상격자 사용에 따른 선량과 영상 품질의 차이 비교를 통해, Chest PA 시 임상적으로 새로운 격자 조합을 제안하고자 한다. 본 연구는 인체모형팬텀을 대상으로 Chest PA 자세에서 진행했다. 선량계는 흉추 6번 높이에 위치하였고, 조사 조건은 110 kVp, 320 mA, 1.6 mAs, SID는 180 cm, 조사야 크기는 17" × 17"로 동일하게 적용하였다. 물리적 격자를 적용한 상태와 미적용 상태에서 각각 30개의 영상을 얻었고, 물리적 격자 미적용 영상에 가상격자를 적용한 영상 30개를 추가로 획득하였다. 선량은 입사표면선량(ESD)을 측정하였고, 화질은 신호대잡음비(SNR)와 대조도대잡음비(CNR)를 측정하여 비교 분석하였다. 본 연구 결과 ESD는 물리적 격자를 사용하지 않을 경우 약 48%의 감소 효과가 있었다. SNR은 물리적 격자 미사용 시가 사용 시보다 약 32% 증가하였고, 가상격자를 사용한 경우에는 격자 사용 시 보다 약 18% 증가하였다. CNR은 물리적 격자 미사용 시가 사용 시보다 약 30% 증가하였고, 가상격자를 사용한 경우에는 격자 사용 시보다 약 16% 증가하였다. 본 연구의 결과, 물리적인 격자 대신 가상격자 사용 시 영상의 품질은 유지하되, 환자 선량은 감소시킬 수 있을 것으로 생각된다.

검사 조건 제어와 반복 재구성의 조합을 이용한 흉부 CT의 선량 저감화 방안 (Dose Reduction Method for Chest CT using a Combination of Examination Condition Control and Iterative Reconstruction)

  • 김상현
    • 한국방사선학회논문지
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    • 제17권7호
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    • pp.1025-1031
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    • 2023
  • 저선량흉부 CT (Low Dose chest CT, LDCT)에서 Scout 관전압을 변화시키고 scan parameter인 자동노출제어장치(Auto Exposure Control, AEC)와 적응식 반복재구성기법(Adaptive Statistical Iterative Reconstruction, ASIR)등을 적용하여 최적의 프로토콜을 찾음으로써 방사선 피폭선량과 화질을 평가하고자 하였다. Scout 관전압을 80, 100, 120, 140 kV로 변화시키며 LDCT 프로토콜로 5회 반복 측정 후 선량을 비교하기 위해 장비에서 제공된 Dose report를 이용하여 연구 목적에 적합한 관전압을 선택하였다. 120 kV, 30 mAs의 조건으로 기본 LDCT 촬영한 후, 이 조건에 ASIR 50%를 적용하였으며 신호대잡음비와 대조도대잡음비를 평가하기 위해 배경의 노이즈를 측정하였다. 선량 비교를 위해 장비에서 제공되는 CTDIvol과 선량길이곱(Dose length product, DLP)를 식을 이용하여 비교 분석하였다. 그 결과 S140 + LDCT + ASIR 50 + AEC를 적용한 프로토콜에서 고식적인 LCDT보다 방사선 피폭선량을 감소시키고 영상의 질을 향상시켰으며 최적의 프로토콜을 얻을 수 있었으며 LDCT는 매 검사 시 필요 이상의 피폭선량이 우려되기 때문에 적절한 Parameter를 적용하는 것이 중요하며, 향후 LDCT를 이용한 건강검진에서 국민의 건강에 이바지 하는데 긍정적인 요인으로 작용될 것으로 사료된다.

영상의학과 이동검사 영역의 공간선량 분포에 대한 측정 및 분석 (The Measurement and Analysis by Free Space Scatter Dose Distribution of Diagnostic Radiology Mobile Examination Area)

  • 김성규;손상혁
    • 대한디지털의료영상학회논문지
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    • 제11권1호
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    • pp.5-13
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    • 2009
  • There are several reasons to take X-ray in case of inpatients. Some of them who cannot ambulate or have any risk if move are taken portable X-ray at their wards. Usually, in this case, many other people-patients unneeded X-ray test, family, hospital workers etc-are indirectly exposed to X-ray by scatter ray. For that reason I try to be aware of free space scatter dose accurately and make the point at issue of portable X-ray better in this study. kVp dose meter is used for efficiency management of portable X-ray equipment. Mobile X-ray equipment, ionization chamber, electrometer, solid water phantom are used for measuring of free space scatter dose. First of all the same surroundings condition is made as taken real portable X-ray, inquired amount of X-ray both chest AP and abdomen AP most frequently examined and measured scatter ray distribution of two tests individually changing distance. In the result of measuring horizontal distribution with condition of chest AP it is found that the mAs is decreased as law of distance reverse square but no showed mAs change according to direction. Vertical distribution showed the mAs slightly higher than horizontal distribution but it isnt found out statistical characteristic. In abdomen AP, compare with chest AP, free space scatter dose is as higher as five-hundred times and horizontal, vertical distribution are quite similar to chest AP in result. In portable X-ray test, in order to reduce the secondary exposure by free space scatter dose first, cut down unnecessary portable order the second, set up the specific area at individual ward for the test the third, when moving to a ward for the X-ray test prepare a portable shielding screen. The last, expose about 2m apart from patients if unable to do above three ways.

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저선량 CT를 이용한 폐암의 선별 검사 (Lung Cancer Screening with Low-dose Computed Tomography)

  • 황정화
    • Tuberculosis and Respiratory Diseases
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    • 제57권2호
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    • pp.118-124
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    • 2004
  • Lung cancer is the leading cause of cancer death for men and women in the industrialized world. It is desirable to detect disease at a stage when it is not causing symptoms and when control or cure is possible. If the screening test detects patients with the disease at an early stage, they can be examined to confirm the diagnosis and intervention can alter the natural history of the disease. The results of screening programs designed to detect early lung cancer using either conventional chest radiograph or sputum cytology are disappointing for a diagnostic screening test. Because of advances in helical CT imaging techniques, screening for lung cancer has been suggested as a possible method of improving outcome. Findings in recent publications suggest that substantial dose reduction is possible in chest CT. The advantages of low-dose CT are more sensitive than chest radiograph for detecting small pulmonary nodules that may be lung cancers, shorter scanning time than conventional chest CT scan without intravenous contrast injection, cheaper cost than standard CT, low radiation dose. However, the true clinical significance of the small tumors found by screening is still unknown, and their effect on mortality awaits future investigation. Furthermore, in addition to detecting an increased number of lung cancers, low-dose CT found at least one indeterminate nodule in many of all screened patients. The majority should be benign but evaluation of all these indeterminate nodules is not a trivial problem in routine practice. In conclusion, lung cancer screening with low-dose CT is a complex subject. The true effectiveness of lung cancer screening (a reduction in mortality from lung cancer) with low-dose CT can be determined through well-designed randomized control trials with enrolment of appropriate subjects.

흉부 CT 검사에서 환자 팔의 위치에 따른 영상의 화질과 선량 비교 (Comparison of Image Quality and Dose According to the Arm Positioning in the Chest CT)

  • 유무연;박샘;장희정;이효진;이종웅;권대철
    • 한국방사선학회논문지
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    • 제8권2호
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    • pp.75-79
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    • 2014
  • 흉부 CT와 같이 조직 대조도 차이가 큰 부위의 CT 검사도 환자의 팔의 위치에 따른 아티팩트 발생과 화질저하, 과다피폭 등을 방지하기 위하여 환자의 손을 머리 위로 올리고 검사를 시행하고 있다. 흉부 CT와 같이 조직 대조도 차이가 큰 부위의 검사에서 환자 팔의 위치에 따라 화질저하, 과다피폭 등이 발생한다. 2012년 서울의 K 대학병원 흉부 CT 검사는 1,642건이었다. 이중 118건이 팔을 올리지 않고 흉부 CT검사를 시행하였다. 정상적으로 팔을 올리고 검사한 그룹은 총 DLP 값의 평균이 275 $mGy{\cdot}cm$로 나타났으며 팔을 올리지 않고 검사한 그룹의 총 DLP값 평균은 312.46 $mGy{\cdot}cm$로 나타났다. 동일 환자의 경우 후향적 조사에서 적극적으로 팔을 올리고 검사한 경우 총 DLP 값이 267.5 $mGy{\cdot}cm$로 조사되었고 팔을 올리지 않고 검사한 경우 총 DLP 값이 307.5 $mGy{\cdot}cm$로 나타났다. 흉부 CT 검사에서 검사자가 적극적으로 팔을 올리지 않고 검사하면 인체의 가장 두꺼운 부위인 어깨부위를 통과한 X-ray 광자의 부족으로 인해 선형 아티팩트가 발생하였다. 흉부 CT 검사시 적극적으로 팔을 올려서 검사하는 노력으로 적은 피폭선량과 양질의 의료영상을 환자에게 제공할 수 있는 선량 최적화의 방법이 될 것이다.

흉부 전·후방향 검사 시 고관전압 및 산란선 후처리 소프트웨어 적용이 화질과 선량에 미치는 영향 (Effect of High Tube Voltage and Scatter Ray Post-processing Software on Image Quality and Radiation Dose During Chest Anteroposterior Radiography)

  • 김종석;주영철;이승근
    • 대한방사선기술학회지:방사선기술과학
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    • 제44권4호
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    • pp.295-300
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    • 2021
  • This study aims to present new chest AP examination exposure conditions through a study on the effect on image quality and patient dose by applying high tube voltage and scatter ray post-processing software during chest AP examination in digital radiography equipment. This study was used a human body phantom and in the chest AP position, the dosimeter was placed horizontally at the thoracic spine 6. The experiment was conducted by dividing into a low tube voltage (70 kVp, 400 mA, 3.2 mAs) group and a high tube voltage (100 kVp, 400 mA, 1.2 mAs) group. The collimation size (14″× 17″) and the source to image receptor distance(110 cm) were same applied to both groups. Radiation dose was presented to dose area product and entrance surface dose. Image quality was compared and analyzed by comparing the difference between the signal-to-noise ratio and the contrast-to-noise ratio of the image according to the application of the scatter ray post-processing software under each condition. The average value of the entrance surface dose in the low and high tube voltage conditions was 93.04±0.45 µGy and 94.25±1.51 µGy, which was slightly higher in the high tube voltage condition, but the dose area product was 0.97±0.04 µGy and 0.93±0.01 µGy. There was a statistically significant difference in the group mean value(p<0.01). In terms of image quality, the values of the signal-to-noise ratio and the contrast noise ratio were higher in the high tube voltage than in the low tube voltage, and decreased when the scattering line post-processing function was used, but the contrast resolution was improved. If there is a scatter ray post-processing function during chest AP examination, it is helpful to actively utilize it to improve the image quality. However, when this function is not available, I thought that applying a higher tube voltage state than a low tube voltage state will help to realize images with a large amount of information without changing the dose.

여성의 흉부 CT 검사 시 압박밴드 사용에 따른 선량 감소효과 (Dose Reduction Effect by using Compression Band during Chest CT Examination in Female Patients)

  • 김인수;조용인
    • 한국방사선학회논문지
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    • 제15권4호
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    • pp.445-453
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    • 2021
  • CT 검사는 의료 방사선 검사 중 높은 피폭 선량으로 발암의 위험성을 높일 수 있다고 보고되고 있으며, 특히 여성의 흉부 CT 검사 시 방사선에 민감한 유방에 대한 방사선 노출이 불가피하다. 이에 본 연구에서는 여성의 흉부 CT 검사 시 압박밴드 착용에 따른 선량 감소효과에 대해 평가하고, 검사 시 노출되는 유효선량에 기인한 생애 암 발생 위험도를 추정하였다. 그 결과 압박밴드 사용 시 흉부 외부 둘레가 작아짐에 따른 실효 관전류량이 감소되었으며, 이로 인해 CT 선량지수와 유효선량 또한 감소된 것으로 분석되었다. 또한 흉부 CT 검사에 의한 생애 암 발생 위험도는 압박밴드 착용 시 30대 여성 기준으로 모든 암에서 10만명 당 3.2명, 고형암에서 10만명 당 0.2명, 유방암에서 10만명 당 0.8명 정도의 암 발생 위험도를 감소시키는 결과를 나타내었다. 추후 CT 검사 시 적절한 검사 조건 사용과 더불어 압박밴드와 같은 선량 최적화 방안을 통해 암 발생 위험을 줄일 수 있을 것으로 판단된다.

흉부의 ANALOG-DIGITAL 영상에 대한 비교 평가

  • 장영애;문희석;임한영;오현주;김성수;김영일
    • 대한디지털의료영상학회논문지
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    • 제2권1호
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    • pp.74-82
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    • 1996
  • This paper were studied the evaluation in compare with the conventional and AMBER of analog images, PACS and CR of digital images which were collected every ten sampling chest images with the J.J.Vucicuh chest evaluated chart, and were measured the chest phantom surface dose and the density of several part in chest images. The evaluated numbers were total 22 persons who were 6 persons of the M.D., 6 of the radiotechnological professors and 10 of the radiotechnologists. The obtained results summarized as following : 1. Approaching the optimum standard density of the several part in chest images drew near at the lung round region density in PACS images, the sternum region density in CR and AMBER images, the heart region density in CR AMBER images, the diaphram region density in AMBER and conventional images. 2. The evaluation measured surface dose were appeared orderly lesser dose at the AMBER images (spine 21 mR, lung 2mR, heart 12mR, apex 6mR) than the conventional images(32 mR), CR images(38mR) and PACS images(81mR). 3. The anatomical physical evaluation marks were taken the highest points at CR images(88.3), and orderly PACS images(82), AMBER images(79.2) and conventional images(65.2). 4. It is exposured with lesser surface dose at the analog images, but analog images leaves much room for image quality improvement, and digital images demand for lesser exposure surface dose, although excellent image quality.

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흉부 전산화단층촬영검사를 위한 최적의 저선량 프로토콜에 관한 팬텀연구 (A Phantom Study for the Optimal Low-dose Protocol in Chest Computed Tomography Examination)

  • 김영근;양숙;왕태욱;김은혜
    • 대한방사선기술학회지:방사선기술과학
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    • 제44권2호
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    • pp.101-107
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    • 2021
  • The purpose of this study was to evaluate optimal CT scan parameters to minimize patient dose to the irradiation and maintain satisfactory image quality in low-dose chest computed tomography (CT) scans. In a chest anthropomorphic phantom, chest CT scans were performed at different kVp and mA within reference of 3.4mGy in volume CT Dose Index (CTDIvol). The following quantitative parameters had been statistically evaluated: image noise, signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and figure of merit (FOM). Nine radiographers conducted the blind test to select the optimal kVp-mA combination. Results indicated that the kVp-mA combination of 80kVp-90mA, 100kVp-50mA, 120kVp-30mA and 140kVp-30mA were obtained high SNR and CNR. The 120kVp-30mA combination offered good compromise in the FOM, which showed the quality and dose performance. In the blind test, an image of 80kVp-90mA obtained a high score with 4.7 points, and 120kVp-10mA or 140kVp-10mA with a low tube current were observed severe noise and poor image quality, thus resulting in decreased diagnostic accuracy. On the other hand, in the combination of high kVp and high mA(140kVp-90mA), the image quality was improved, but the radiation dose was also increased. the FOM value of 140kVp-90mA was lower than 120kVp-30mA. The application of appropriate scan parameters in low-dose chest CT scans produced satisfactory results in dose and image quality for the accuracy of the clinical diagnosis.

Glass dosimeter와 PCXMC Program을 이용한 소아피폭선량 측정 및 분석 (Measurement and Analysis of Pediatric Patient Exposure Dose Using Glass dosimeter and a PC-Based Monte Carlo Program)

  • 김영은;이정화;홍선숙;이관섭
    • 대한디지털의료영상학회논문지
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    • 제14권2호
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    • pp.9-14
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    • 2012
  • Exposed dose of young child should be managed necessarily. Young child is more sensitive than adult of a Radioactivity, especially, and lives longer than adult. Must reduce exposed dose which follows The ALARA(As Low As Reasonably Achievable)rule is recommended by ICRP(International Commission on Radiological Protection)within diagnostic useful range. Therefore, We have to prepare Pediatric DRL(Diagnostic Reference Level) in Korea as soon as possible. Consequently, in this study, wish to estimate organ dose and effective dose using PCXMC Program(a PC-Based Monte Carlo Program), and measure ESD(Entrance surface dose)and organ dose using Glass dosimeter, and then compare with DRL which follows EC(European Commission)and NRPB(National Radiological Protection Board). Using glass dosimeter and PCXMC programs conforming to the International Committee for Radioactivity Prevention(ICRP)-103 tissue weighting factor based on the item before the organs contained in the Chest, Skull, Pelvis, Abdomen in the organ doses and effective dose and dose measurements were evaluated convenience. In a straightforward way to RANDO phantom inserted glass dosimeter(GD352M)by using the hospital pediatric protocol, and in a indirect way was PCXMC the program through a virtual simulation of organ doses and effective dose were calculated. The ESD in Chest PA is 0.076mGy which is slightly higher than the DRL of NRPB(UK) is 0.07mGy, and is lower than the DRL of EC(Europe) which is 0.1mGy. The ESD in Chest Lateral is 0.130mGy which is lower than the DRL of EC(Europe) is 0.2mGy. The ESD in Skull PA is 0.423mGy which is 40 percent lower than the DRL of NRPB(UK) is 1.1mGy and is 28 percent lower than the DRL of EC(Europe) is 1.5mGy. The ESD in Skull Lateral is 0.478mGy which is half than the DRL of NRPB(UK) is 0.8mGy, is 40 percent lower than the DRL of EC(Europe) is 1mGy. The ESD in Pelvis AP is 0.293mGy which is half than the DRL of NRPB(UK) is 0.60mGy, is 30 percent lower than the DRL of EC(Europe)is 0.9mGy. Finally, the ESD in Abdomen AP is 0.223mGy which is half than the DRL of NRPB(UK) is 0.5mGy, and is 20 percent lower than the DRL of EC is 1.0mGy. The six kind of diagnostic radiological examination is generally lower than the DRL of NRPB(UK)and EC(Europe) except for Chest PA. Shouldn't overlook the age, body, other factors. Radiological technician must realize organ dose, effective dose, ESD when examining young child in hospital. That's why young child is more sensitive than adult of a Radioactivity.

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