• 제목/요약/키워드: Medical phantom

검색결과 1,081건 처리시간 0.035초

Combined X-ray CT-SPECT System with a CZT Detector

  • Kwon, Soo-Il;Koji Iwata;Hasegawa, B-H
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.379-381
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    • 2002
  • A single CdZnTe detector is tested for suitability in a prototype CT/ SPECT system designed to acquire both emission and transmission data. The detector has the size of 1${\times}$l-cm$^2$ with 4${\times}$4 1.5${\times}$l.5mm$^2$ pixellated anodes. Since the detector is smaller than imaged object, we translated it in an arc centered at the x-ray tube to image larger objects. Pulse counting electronics with very short shaping time (50 ns) are used to satisfy high photon rates in x-ray imaging, and response linearity up to 3${\times}$10$\^$5/ counts per second per detector element is achieved. The energy resolution of 122-keV gamma-ray is measured to be 14%. We have characterized the system performance by scanning a radiographic resolution phantom .and the Hoffman brain phantom. The spatial resolution of CT and SPECT are about 1 mm and 7 mm, respectively.

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근접방사선치료 시 몬테카를로 전산모사를 이용한 인체전산팬텀의 우측 폐와 주변 장기 선량평가 (Evaluation of Absorbed Dose for the Right Lung and Surrounding Organs of the Computational Human Phantom in Brachytherapy by Monte Carlo Simulation)

  • 이준성;김양수;김민걸;김정수;이선영
    • 대한방사선기술학회지:방사선기술과학
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    • 제43권6호
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    • pp.443-451
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    • 2020
  • This study is to evaluate absorbed dose from right lung for brachytherapy and to estimate the effects of tissue heterogeneities on dose distribution for Iridium-192 source using Monte Carlo simulation. The study employed Geant4 code as Monte Carlo simulation to calculate the dosimetry parameters. The dose distribution of Iridium-192 source in solid water equivalent phantom including aluminium plate or steel plate inserted was calculated and compared with the measured dose by the ion chamber at various distances. And the simulation was used to evaluate the dose of gamma radiation absorbed in the lung organ and other organs around it. The dose distribution embedded in right lung was calculated due to the presence of heart, thymus, spine, stomach as well as left lung. The geometry of the human body was made up of adult male MIRD type of the computational human phantom. The dosimetric characteristics obtained for aluminium plate inserted were in good agreement with experimental results within 4%. The simulation results of steel plate inserted agreed well with a maximum difference 2.75%. Target organ considered to receive a dose of 100%, the surrounding organs were left the left lung of 3.93%, heart of 10.04%, thymus of 11.19%, spine of 12.64% and stomach of 0.95%. When the statistical error is performed for the computational human phantom, the statistical error of value is under 1%.

A Basic Study on the Variation of Temperature Characteristics for Attenuation Coefficient and Sound Velocity in Biological Tissues

  • Park, Heung-Ho
    • 대한의용생체공학회:의공학회지
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    • 제14권3호
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    • pp.273-282
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    • 1993
  • This study is concerned with the temperature dependence characteristics of ultrasound parameters in biological tissues, which are basic on the noninvasive deep body temperature estimation. Used parameters are ultrasonic attenuation coefficient and sound velocity In order to accomplishment our purpose, several signal processing methods were used. Attenua4iorl coefficient was estimated by spectral difference method and sound velocity was estimated by P-P method. And we also examined these methods through a series of IN VITRO experi mentis that used tissue-mimicking phantom samples and biological tissue samples. In order to imitate the biological soft tissue two kinds of phantom samples are used, one is agar phantom sample which is composed of agar, graphite, N-propyl alcohol and distilled water, and the other is fat phantom sample which is composed of pure animal fat. And the ultrasound transmission mode and reflection mode experiments are performed on the pig's spleen, kidney and fat. As a result, it is found that the temperature characteristics are uniform in case of phan- tom samples but not in biological tissues because of complicate wave propagation within them. Consequently, the possibility of temperature measurement using ultrasound on biological tissue is confirmed and its results may contribute to the establishment of reference values of internal temperature measurement of biological tissues.

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관절염 진단용 광음향 이미징 시스템 개발을 위한 선행 연구 (A Preliminary Study on Developing a Photoacoustic Imaging System for Inflammatory Arthritis Diagnosis)

  • 윤종인;박지원
    • The Journal of Korean Physical Therapy
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    • 제22권4호
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    • pp.83-89
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    • 2010
  • Purpose: The goal of this study was to investigate the feasibility for the early diagnosis of inflammatory arthritis by the reconstruction of three-dimensional photoacoustic imaging with a tissue phantom. Methods: Q-switched Nd:YAG laser (l = 532 nm) was applied to a tissue phantom to generate photoacoustic waves, and the acquired photoacoustic signals at different positions around the sample were used to recombine the distribution of the optical absorption and the images were subsequently generated through a reconstruction algorithm. Results: From the acquired photoacoustic signals, the surface andinner core of the phantom was clearly distinguished. Furthermore, the back-projection algorithm was able to reconstruct two-dimensional and three-dimensional photoacoustic images that contained the optical absorption property information of the tissue phantom. Conclusion: The results indicate that the photoacoustic imaging technique has many advantages such as high optical contrast and high acoustic resolution. The acquired images can be used for the early diagnosis of inflammatory arthritis by the structural information obtained from the region of interest.

Design of Multipurpose Phantom for External Audit on Radiotherapy

  • Lim, Sangwook
    • 한국의학물리학회지:의학물리
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    • 제32권4호
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    • pp.122-129
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    • 2021
  • Purpose: This study aimed to design a multipurpose dose verification phantom for external audits to secure safe and optimal radiation therapy. Methods: In this study, we used International Atomic Energy Agency (IAEA) LiF powder thermoluminescence dosimeter (TLD), which is generally used in the therapeutic radiation dose assurance project. The newly designed multipurpose phantom (MPP) consists of a container filled with water, a TLD holder, and two water-pressing covers. The size of the phantom was designed to be sufficient (30×30×30 cm3). The water container was filled with water and pressed with the cover for normal incidence to be fixed. The surface of the MPP was devised to maintain the same distance from the source at all times, even in the case of oblique incidence regardless of the water level. The MPP was irradiated with 6, 10, and 15 MV photon beams from Varian Linear Accelerator and measured by a 1.25 cm3 ionization chamber to get the correction factors. Monte Carlo (MC) simulation was also used to compare the measurements. Results: The result obtained by MC had a relatively high uncertainty of 1% at the dosimetry point, but it showed a correction factor value of 1.3% at the 5 cm point. The energy dependence was large at 6 MV and small at 15 MV. Various dosimetric parameters for external audits can be performed within an hour. Conclusions: The results allow an objective comparison of the quality assurance (QA) of individual hospitals. Therefore, this can be employed for external audits or QA systems in radiation therapy institutions.

제작된 선량 검증용 IMRT 팬텀의 몬테칼로 시뮬레이션: 예비적 연구 (A Monte Carlo Simulation for the Newly Developed Head-and-Neck IMRT Phantom: a Pilot Study)

  • 강세권;정광호;주라형;조병철;오도훈;김수산;김경주;배훈식;한영이;신은혁;박성호;임천일
    • 한국의학물리학회지:의학물리
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    • 제18권3호
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    • pp.126-133
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    • 2007
  • 세기조절방사선치료(Intensity modulated radiation therapy, IMRT) 선량의 정확도를 원격으로 점검할 수 있는 시스템 구축을 목적으로, 두경부용 팬텀을 제작하였다. 팬텀은 공기 및 뼈 구조물의 교체 장착을 통해, 균질 혹은 비균질 팬텀으로 이용할 수 있다. 일차적으로 단일 빔 및 세 빔의 조사에 대한 몬테칼로(Monte Carlo, MC) 전산모사를 시행하고, 이온 전리함 및 열형광선량계(thermoluminescent dosimeter, TLD)를 이용한 측정과 비교하였다. TLD의 판독은 독립된 두 기관에서 수행하였다. 단일 빔의 경우, 균질 및 비균질 팬텀에 대한 이온 전리함 측정 결과는 MC전산모사 결과와 대체로 2% 수준에서 일치하였으며, TLD 의 경우에는 기관에 따라 2% 혹은 7%수준의 차이를 보였다. 세 빔을 이용한 비교의 경우에는, 이온 전리함은 -5% 수준, TLD의 경우에는 $+2{\sim}+3%$ 수준의 차이를 보였다. 원격 선량 검증을 위해서는 TLD 판독의 신뢰도 향상이 필요한 것으로 판단되었다. MC 전산모사는 새로운 팬텀 개발 시에, 선량 측정값의 신뢰도 확보에 이용될 수 있다.

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심근 관류 SPECT에서 핵종에 따른 Uniformity correction map 설정을 통한 영상의 질 비교 (The difference of image quality using other radioactive isotope in uniformity correction map of myocardial perfusion SPECT)

  • 송재혁;김경식;이동훈;김성환;박장원
    • 핵의학기술
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    • 제19권2호
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    • pp.87-92
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    • 2015
  • SPECT에서 Uniformity는 균일한 방사능을 갖는 선원에 대하여 균일한 영상을 제공하는 능력이다. 영상에서 다양한 이유로 불균일이 발생하게 되고, 불균일은 artifacts를 발생시켜 임상적으로 진단하는데 영향을 줄 수 있다. Uniformity correction map은 검사에 사용되는 방사성 동위원소를 이용하여 영상에서 Uniformity의 변동폭을 최소화 시켜주는 역할을 한다. 본원에서 시행되고 있는 $^{201}Tl$을 이용한 심근 SPECT에서는 $^{99m}Tc$으로 기본 설정되어 있는 Uniformity correction map을 사용하고 있으며, 이에 따라 본 연구에서는 $^{201}Tl$$^{99m}Tc$ 두 가지 핵종으로 Uniformity correction map을 각각 설정하였을 때 영상의 질에 차이가 있는지 비교 분석하고, 영상의 질을 최적화 할 수 있는 방법에 대하여 모색해 보고자 한다. 장비는 GE Ventri Gamma camera, Flood phantom, Jaszczak ECT phantom을 이용하였다. 실험에 앞서 Collimator를 제거한 상태에서 Detector 표면 중심으로부터 2.5 m 떨어진 지점에 1 cc 주사기에 $^{99m}Tc$ 25.9 Mbq, $^{201}Tl$ 14.8 Mbq의 방사성 동위원소를 주입한 point source를 이용하여 장비사에서 권고하는 $6{\times}10^7count$$^{99m}Tc$$^{201}Tl$ 각각의 방사성 동위원소로 Uniformity Mapping을 실시하였다. Flood phantom에는 $^{201}Tl$ 21.3 kBq/mL, Jaszczak ECT phantom에는 $^{201}Tl$ 33.4 kBq/mL를 주입하여 phantom을 제작하였다. Flood Phantom으로 획득된 데이터는 Xeleris ver 2.05 프로그램을 이용하여 Integral uniformity, Differential uniformity을 두 가지 항목에 대하여 분석하였다. Jaszczak ECT Phantom으로 획득된 데이터를 본원에서 자체 개발한 Interactive Data Language 프로그램에 입력하여 Integral uniformity, Contrast, Coefficient of variation, Spatial Resolution을 4가지 항목에 대하여 분석하였다. Flood phantom test 에서는 $^{99m}Tc$에서의 Flood I.U값은 3.6%, Flood D.U값은 3.0%으로 나타났고, $^{201}Tl$ Flood I.U값은 3.8%, Flood D.U값은 2.1%으로 나타났다. 이를 통해 $^{201}Tl$으로 Uniformity correction map을 설정하였을 때, Flood I.U값은 감소하였으나 Flood D.U은 향상되어 Flood 영상에서는 크게 영상의 질이 개선되었는지는 알 수 없었다. 반면 Jaszczak ECT Phantom test에서는 $^{99m}Tc$에서의 SPECT I.U값은 13.99%, Coefficient of variation값은 4.89%, contrast값은 0.69, $^{201}Tl$에서의 SPECT I.U값은 11.37%, Coefficient of variation값은 4.79%, contrast값은 0.78로 나타났으며, 육안 분석을 실시한 Spatial Resolution 항목에서는 육안으로 큰 차이를 보이지 않았다. 이를 통해 $^{201}Tl$으로 Uniformity correction map을 설정하였을 때, Spatial Resolution 을 제외한 SPECT I.U, Coefficient of variation, Contrast 세 항목에서 각각 18%, 2%, 13%의 향상된 수치를 보였다는 점에서 영상의 질이 개선되었음을 알 수 있었다. Uniformity correction map이 영상의 질을 크게 좌우할 수 없으나, 개선의 효과를 가져다 준다는 점에서 임상적으로 진단에 영향을 주는지 또한 다른 검사에서 또 다른 방사성 동위원소로 Uniformity correction map을 설정했을 경우 영상의 질을 개선시킬 수 있는지에 관하여 추가적인 연구가 필요할 것으로 사료된다.

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Development of an Advanced Deformable Phantom to Analyze Dose Differences due to Respiratory Motion

  • Shin, Dong-Seok;Kang, Seong-Hee;Kim, Dong-Su;Kim, Tae-Ho;Kim, Kyeong-Hyeon;Koo, Hyun-Jae;Cho, Min-Seok;Ha, Jin-Suk;Yoon, Do-Kun;Suh, Tae Suk
    • 한국의학물리학회지:의학물리
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    • 제28권1호
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    • pp.1-10
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    • 2017
  • The difference between three-dimensional (3D) and four-dimensional (4D) dose could be affected by factors such as tumor size and motion. To quantitatively analyze the effects of these factors, a phantom that can independently control each factor is required. The purpose of this study is to develop a deformable lung phantom with the above attributes and evaluate the characteristics. A phantom was designed to simulate diaphragm motion with amplitude in the range 1~7 cm and period up to ${\geq}2s$ of regular breathing. To simulate different tumors sizes, custom molds were created using a 3D printer and filled with liquid silicone. The accuracy of the phantom diaphragm motion was assessed by comparing measured motion with predicted motion. Because the phantom diaphragm motion is not identical to the tumor motion, the correlation between the diaphragm and tumor motions was calculated by a curve fitting method to emulate user-intended tumor motion. Tumors of different sizes were located at same position, and tumor set-up positions were evaluated. The accuracy of phantom diaphragm motion was better than 1 mm. The diaphragm-tumor correlation showed that the tumor motion in the superior-inferior direction increased with increasing diaphragm motion. The tumor motion was larger in the $10cm^3$ tumor than in the $90cm^3$ tumor. The range of difference between the tumor set-up positions was 0 to 0.45 cm. This phantom showed independently adjusting factors such as tumor size and motion to facilitate quantitative analysis of the dosimetric impact of respiratory motion according to these factors.

조영제 희석률에 따른 조영증강 자기공명혈관조영검사의 신호강도 평가 (Evaluation of the signal intensity of magnetic resonance angiography in accordance with the dilution rate of the contrast agent)

  • 최관우;서성미;손순룡
    • 한국산학기술학회논문지
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    • 제15권8호
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    • pp.5124-5130
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    • 2014
  • 조영제의 희석률 변화에 따른 신호강도를 분석하여 조영증강 자기공명혈관조영검사 시 점도와 삼투압에 따른 부작용을 최소화하고 신호강도를 높여 영상의 질을 향상시키고자 하였다. 연구방법은 조영제가 혈관에 주입되면 혈액과 희석되어 mol 농도가 변화되고, 그에 따라 신호강도의 변화를 일으킴에 착안하여 phantom을 제작하였다. phantom 결과를 바탕으로 임상실험은 2013년 11월부터 2014년 1월까지 조영제를 희석한 군(30명)과 희석하지 않은 군(30명)으로 구분하여 뇌혈관의 신호강도를 비교하였다. 연구결과, 조영제 mol 농도 변화에 따른 phantom의 신호강도는 0.0125mmol부터 급격히 증가하다 20mmol에서 최고점을 이룬 후 200mmol부터 평형을 이루었다. 임상실험에서도 조영제를 희석하여 검사한 영상의 신호강도가 모두 높게 나타나, 1000mmol 조영제 사용에 비해 500mmol로 희석하여 사용함이 최고점인 20mmol에 근접하여 우수함을 알 수 있었다. 결론적으로 조영제를 희석하여 사용함으로써 점도와 삼투압을 저하시키고, 영상의 질을 향상시킬 수 있었으므로 임상적용의 유용성이 높다고 할 수 있다.