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PET/CT 검사에서 SharpIR 재구성 방법의 평가

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영문명
Evaluation of SharpIR Reconstruction Method in PET/CT
발행기관
대한핵의학기술학회
저자명
김정열(Jung Yul Kim) 강천구(Chun Koo Kang) 박훈희(Hoon Hee Park) 임한상(Han Sang Lim) 이창호(Chang Ho Lee)
간행물 정보
『핵의학기술』Vol.16 No.1, 12~16쪽, 전체 5쪽
주제분류
의약학 > 방사선과학
파일형태
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발행일자
2012.04.30
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Purpose : In conventional PET image reconstruction, iterative reconstruction methods such as OSEM (Ordered Subsets Expectation Maximization) have now generally replaced traditional analytic methods such as filtered back-projection. This includes improvements in components of the system model geometry, fully 3D scatter and low noise randoms estimates. SharpIR algorithm is to improve PET image contrast to noise by incorporating information about the PET detector response into the 3D iterative reconstruction algorithm. The aim of this study is evaluation of SharpIR reconstruction method in PET/CT. Materials and Methods: For the measurement of detector response for the spatial resolution, a capillary tube was filled with FDG and scanned at varying distances from the iso-center (5, 10, 15, 20 cm). To measure image quality for contrast recovery, the NEMA IEC body phantom (Data Spectrum Corporation, Hillsborough, NC) with diameters of 1, 13, 17 and 22 for simulating hot and 28 and 37 mm for simulating cold lesions. A solution of 5.4 kBq/mL of ¹⁸F-FDG in water was used as a radioactive background obtaining a lesion of background ratio of 4.0. Images were reconstructed with VUE point HD and VUE point HD using SharpIR reconstruction algorithm. For the clinical evaluation, a whole body FDG scan acquired and to demonstrate contrast recovery, ROIs were drawn on a metabolic hot spot and also on a uniform region of the liver. Images were reconstructed with function of varying iteration number (1~10). Results: The result of increases axial distance from iso-center, full width at half maximum (FWHM) is also increasing in VUE point HD reconstruction image. Even showed an increasing distances constant FWHM. VUE point HD with SharpIR than VUE point HD showed improves contrast recovery in phantom and clinical study. Conclusion: By incorporating more information about the detector system response, the SharpIR algorithm improves the accuracy of underlying model used in VUE point HD. SharpIR algorithm improve spatial resolution for a line source in air, and improves contrast recovery at equivalent noise levels in phantoms and clinical studies. Therefore, SharpIR algorithm can be applied as through a longitudinal study will be useful in clinical.

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APA

김정열(Jung Yul Kim),강천구(Chun Koo Kang),박훈희(Hoon Hee Park),임한상(Han Sang Lim),이창호(Chang Ho Lee). (2012).PET/CT 검사에서 SharpIR 재구성 방법의 평가. 핵의학기술, 16 (1), 12-16

MLA

김정열(Jung Yul Kim),강천구(Chun Koo Kang),박훈희(Hoon Hee Park),임한상(Han Sang Lim),이창호(Chang Ho Lee). "PET/CT 검사에서 SharpIR 재구성 방법의 평가." 핵의학기술, 16.1(2012): 12-16

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