• 제목/요약/키워드: positron camera

검색결과 18건 처리시간 0.026초

Line Image Correction of the Positron Camera in the Secondary Beam Course of HIMAC

  • Iseki, Yasushi;Mizuno, Hideyuki;Kanai, Tatsuaki;Kanazawa, Mitsutaka;Kitagawa, Atsushi;Suda, Mitsuru;Tomitani, Takehiro;Urakabe, Eriko
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.195-198
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    • 2002
  • A positron camera, consisting of a pair of Anger-type scintillation detectors, has been developed for verifying the ranges of irradiation beams in heavy-ion radiotherapy. Images obtained by a centroid calculation of photomultiplier outputs exhibit a distortion near the edge of the crystal plane in an Anger-type scintillation detector. The images of a $\^$68/Ge line source were detected and look-up tables were prepared for the position correction parameters. Asymmetry of the position distribution detected by the positron camera was prevented with this correction. As a result, a linear position response and a position resolution of 8.6 mm were obtained over a wide measurement field.

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Resolution Improvement of the Positron Computerized Tomographic System with Hardware Approach and Superresolution Technique

  • Hong, Ki-Sang;Ra, Jong-Beom
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1979년도 하계 전자.전기연합학술발표회논문집
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    • pp.162-163
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    • 1979
  • A new detector array scheme for the positron camera for tile improved image resolution and a method for the resolution improvement of the undersampled projection data from ring positron camera are proposed. Computer simulation results are presented and problems ana limitations are discussed.

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분해능 향상을 위한 새로운 양전자 단층 촬영기의 제안 (Resolution Improvement of the Positron Computerized Tomography with a New Positron Camera Tomographic System)

  • 홍기상;나종범
    • 대한전자공학회논문지
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    • 제16권6호
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    • pp.22-30
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    • 1979
  • 새로운 구조의 양전자 전산 단층 촬영기(Positron Computerized Tomography)를 제안하고 그 시스템의 성능을 컴퓨터로 예측하였다. 이 새로운 구조의 시스템은 sampling 간격을 임의로 할 수 있기 때문에 기존의 시스템에 비해서 보다 높은 분해능의 단층 영상을 얻을 수 있다. 컴퓨터 시뮬레이션으로 이 시스템에 어떠한 artifact가 생기나 살펴 보았고 Poisson noiserk 더해졌을 때의 영상을 비교함으로써 이 시스템이 기존의 시스템보다 나은 영상을 얻을 수 있음을 확인하였다.

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Numerical Study on Range Measurement System with Positron Camera

  • Iseki, Yasushi;Futami, Yasuyuk;Tomitani, Takehiro;Kouda, Shigeru;Nishio, Teiji;Murakami, Takeshi;Kitagawa, Atsushi;Kanazawa, Mitsutaka;Urakabe, Eriko
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 1999년도 Japanese Journal of Medical Physics
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    • pp.203-206
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    • 1999
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Gamma Camera Based FDG PET in Oncology

  • 박찬희
    • 대한핵의학회:학술대회논문집
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    • 대한핵의학회 2002년도 춘계학술대회 및 총회
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    • pp.45-53
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    • 2002
  • Positron Emission Tomography(PET) was introduced as a research tool in the 1970s and it took about 20 years before PET became an useful clinical imaging modality. In the USA, insurance coverage for PET procedures in the 1990s was the turning point, I believe, for this progress. Initially PET was used in neurology but recently more than 80% of PET procedures are in oncological applications. I firmly believe, in the 21st century, one can not manage cancer patients properly without PET and PET is very important medical imaging modality in basic and clinical sciences. PET is grouped into 2 categories : conventional(c) and gamma camera $based_{(CB)}$ PET. $_{CB}PET$ is more readily available utilizing dual-head gamma cameras and commercially available FDG to many medical centers at low cost to patients. In fact there are more $_{CB}PET$ in operation than cPET in the USA. $_{CB}PET$ is inferior to cPET in its performance but clinical studies in oncology is feasible without expensive infrastructures such as staffing, rooms and equipments. At Ajou university Hospital, CBPET was installed in late 1997 for the first time in Korea as well as in Asia and the system has been used successfully and effectively in oncological applications. Ours was the fourth PET operation in Korea and I believe this may have been instrumental for other institutions got interested in clinical PET. The fellowing is a brief description of our clinical experience of FDG CBPET in oncology.

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좌측 대퇴골에 발생한 만성골수염의 PET와 MDP scan 영상 (FDG-PET and MDP scan findings in chronic osteomyelitis of the left femur)

  • 박찬희;이명훈
    • 대한핵의학회지
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    • 제36권2호
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    • pp.143-145
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    • 2002
  • A 49-year-old male patient with a carcinoma of the right pyriform sinus had a whole-body bone scan and gamma camera based F-18 FDG-PET for staging. Tc-99m MDP bone scan depicted diffuse increased uptake in the left femur due to chronic osteomyelitis but no skeletal metastasis. F-18-FDG-PET revealed increased focal bone uptake and uptake in the draining sinus due to chronic osteomyelitis in addition to visualization of the right pyriform sinus carcinoma and right neck nodal uptake. Fluorine-18 fluorodeoxyglucose-positron emission tomography is significantly more accurate than the bone scan in pinpointing chronic osteomyelitis focus and draining soft tissue infection.

Incidental detection of myocardial ischemia during F-18 FDG CoDe PET for the evaluation of a solitary pulmonary nodule

  • Park, Chan-H.;Park, Kwang-J.;Lee, Myoung-Hoon
    • 대한핵의학회지
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    • 제35권6호
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    • pp.398-400
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    • 2001
  • The authors report a case of unsuspected myocardial ischemia detected during CoDe FDG PET (coincidence detection fluorodeoxyglucose positron emission tomogram) which was performed for the evaluation of a solitary pulmonary nodule. Camera-based FDG PET without attenuation correction often reveals false defect in the inferior wall of the left ventricle in normals due to excessive attenuation. However, this asymptomatic patient had increased uptake in the inferior wall suggesting ischemic myocardium. The scan finding was confirmed by Tl-201 myocardial SPECT and coronary angiogram. The patient then underwent successful PTCA of mild RCA and right ventricular branch followed by right upper lobectomy for small cell lung cancer.

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종양 환자에서 초고에너지(511 keV) 조준기를 이용한 전신 F-18-FDG 평면 영상: Coincidence 감마카메라 단층 촬영 영상과의 비교 (F-18-FDG Whole Body Scan using Gamma Camera equipped with Ultra High Energy Collimator in Cancer Patients: Comparison with FDG Coincidence PET)

  • 배문선;박찬희;조철우;윤석남;양승대;임상무
    • 대한핵의학회지
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    • 제33권1호
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    • pp.65-75
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    • 1999
  • 목적: 종양 환자의 평가에 있어서 초고에너지 조준기를 장착하여 511 keV에 적용시킨 감마카메라로 FDG 전신 평면 영상(FDG W/B scan)을 얻어 충분한 정보를 얻을 수 있는지 알아보고 동시에 같은 카메라로 동시계수 회로를 이용한 양전자 방출 단층촬영(FDG CoDe PET)을 실시하여 그 결과를 비교하였다. 대상 및 방법: F-18 FDG를 이용하여 초고에너지 조준기와 동시계수 양전자 방출영상에 대해 각각 팬텀 실험을 실시하였고, 악성종양이 의심되거나 진단된 환자 14명을 대상으로 FDG 전신 평면 영상과 양전자 방출 단층 영상을 얻어 방사선학적 검사, 임상적 추적관찰, 조직학적 검사 등과 비교하였다. 결과: 평면 영상에서는 해상력 13.1 mm, 민감도 2638 cpm/MBq/ml, 동시계수 영상에서는 공간 해상력 7.49 mm, 민감도 5351 cpm/MBq/ml로 측정되었다. FDG CoDe PET에서 14명의 환자 중 8명에서 FDG의 섭취가 있었다. 두 방법 모두에서 FDG 섭취가 없었던 병변은 모두 CT에서 1 cm 이하 였으나 한 예에서 2 cm 크기의 전이성 림프절을 찾지 못하였다. FDG 섭취를 보였던 병변은 모두 CT상 1.5cm 이상이거나 여러 개가 모여 있는 병변이었다. FDG W/B scan은 FDG CoDe PET와 거의 비슷한 결과를 보였으나 위음성과 위양성이 1예씩 더 있었다. FDG CoDe PET에서 보였던 다수의 폐 결절과 간 결절들이 FDG W/B scan에서 한 예를 제외하고는 모두 발견되었다. 결론: 감마카메라에 의한 FDG 영상들은 악성 종양의 감별, 병기 결정, 추적검사 등에 유용하게 쓰일 수 있을 것으로 간주되며, SPECT 카메라가 널리 보급되어 있으므로 FDG 전신 평면영상과 동시계수 양전자 방출영상은 서로 보완적으로 쓰이면서 FDG의 지역 분배 공급을 통해 기존의 PET를 대신하여 FDG를 이용한 더 많은 임상적 이용 및 영상진단을 가능하게 할 것이다.

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Development of Drugs and Technology for Radiation Theragnosis

  • Jeong, Hwan-Jeong;Lee, Byung Chul;Ahn, Byeong-Cheol;Kang, Keon Wook
    • Nuclear Engineering and Technology
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    • 제48권3호
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    • pp.597-607
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    • 2016
  • Personalized medicine is tailored medical treatment that targets the individual characteristics of each patient. Theragnosis, combining diagnosis and therapy, plays an important role in selecting appropriate patients. Noninvasive in vivo imaging can trace small molecules, antibodies, peptides, nanoparticles, and cells in the body. Recently, imaging methods have been able to reveal molecular events in cells and tissues. Molecular imaging is useful not only for clinical studies but also for developing new drugs and new treatment modalities. Preclinical and early clinical molecular imaging shows biodistribution, pharmacokinetics, mechanisms of action, and efficacy. When therapeutic materials are labeled using radioisotopes, nuclear imaging with positron emission tomography or gamma camera can be used to treat diseases and monitor therapy simultaneously. Such nuclear medicine technology is defined as radiation theragnosis. We review the current development of drugs and technology for radiation theragnosis using peptides, albumin, nanoparticles, and cells.

국산 $^{18}F$-FDG Auto Sysnthesizer의 수율 향상과 성능 개선 (Improved Radiochemical Yields, Reliability and Improvement of Domestic $^{18}F$-FDG Auto Synthesizer)

  • 박준형;임기섭;이홍진;정경일;이병철;이인원
    • 핵의학기술
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    • 제13권3호
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    • pp.147-151
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    • 2009
  • Purpose: 2-[$^{18}F$]Fluoro-2-deoxy-D-glucose ([$^{18}F$]FDG) particularly plays as a important role in Positron Emission Tomography (PET) imaging in nuclear medicine. Domestic [$^{18}F$]FDG auto synthesizers are installed in Seoul National University Bundang Hospital (SNUBH) at June 2008, these modules were known that it's synthetic yields were guaranteed in average $45{\pm}5%$ so far. To improve yields and convenience of domestic [$^{18}F$]FDG auto synthesizer, numerous trials in reaction time, base concentration, pressure and temperature were performed to increase [$^{18}F$]FDG yields. Materials and Methods: Several synthetic factors (temperature, time and pressure) and shortcoming were corrected based on many evaporation test. Syringe dispensing of tetra-butylammonium bicarbonate (TBAB) was replaced with micro pipette to prepare tetrabutyl ammonium fluoride salt ([$^{18}F$]TBAF). Troublesome refill of liquid nitrogen every 2 hours which was used to protect vacuum system was changed to charcoal cartridge, base guard filter. To monitor the volume of delivered $[^{18}O]OH_2$ from cyclotron by surveillance camera, we set up the volumetric vial on the cover of the module. In addition to, the recovery vial was added in [$^{18}F$]FDG production system to recover [$^{18}F$]FDG loss due to the leak of valve ($V_{13,14}$) in [$^{18}F$]FDG purification process. Results: When we used micro pipette for adding TBAB ($30\;{\mu}L$ in 12% $H_2O$ in acetonitrile), this quantitative dispensation has enabled to improve $5.5{\pm}1.7%$ residual fluorine-18 activity in fluorine separation cartridge compared to syringe adding. Besides, the synthetic yields of [$^{18}F$]FDG has increased $58{\pm}2.6%$ (n=19), $58{\pm}2.9%$ (n=14), $60%{\pm}2.5%$ (n=17) for 3 months. The life cycle of charcoal cartridge and base vacuum was 3 months prior to filling liquid nitrogen every 2 hours and additional side separator can prevent pump corrosion by organic solvent. After setting of volumetric indicator vial, the operator can easily monitor the total volume of irradiated $[^{18}O]OH_2$ from cyclotron. The recovery vial can be used for the stabilizer when an irregular [$^{18}F$]FDG loss was generated by the leak of valves ($V_{13,14}$). Conclusions: We has optimized appropriate synthetic conditions (temperature, time, pressure) in domestic [$^{18}F$]FDG auto synthesizer. In addition to, the remodeling with several accessories improve yields of domestic [$^{18}F$]FDG auto synthesizer with reliable reproducibility.

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