Investigative Magnetic Resonance Imaging
- Volume 6 Issue 1
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- Pages.64-72
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- 2002
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- 2384-1095(pISSN)
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- 2384-1109(eISSN)
Hybrid Two-Dimensional Proton Spectroscopic Imaging of Pediatric Brain: Clinical Application
소아 뇌에서의 혼성 이차원 양성자자기공명분광법의 임상적 응용
- Sung Won Youn (Department of Radiology, College of Medicine Kyungpook University, Kyungpook National University Hospital) ;
- Sang Kwon Lee (Department of Radiology, College of Medicine Kyungpook University, Kyungpook National University Hospital) ;
- Yongmin Chang (Department of Radiology, College of Medicine Kyungpook University, Kyungpook National University Hospital) ;
- No Hyuck Park (Department of Radiology, College of Medicine Kyungpook University, Kyungpook National University Hospital) ;
- Jong Min Lee (Department of Radiology, College of Medicine Kyungpook University, Kyungpook National University Hospital)
- Published : 2002.06.01
Abstract
Purpose : To introduce and demonstrate the advantages of the new hybrid two-dimensional (2D) proton spectroscopic imaging (SI) over the single voxel spectroscopy (SVS) and conventional 2D SI in the clinical application of spectroscopy for pediatric cerebral disease. Materials and Methods : Eighty-one hybrid 2D proton spectroscopic imaging was performed in 79 children (36 normal infants and children, 10 with hypoxic-ischemic injury, 20 with toxic-metabolic encephalopathy, seven with brain tumor, three with meningoencephalitis, one with neurofibromatosis, one with Sturge-Weber syndrome and one with lissencephaly) ranging in age from the third day of life to 15 years. In adult volunteers (n=5), all three techniques including hybrid 2D proton SI, SVS using PRESS sequence, and conventional 2D proton SI were performed. Both hybrid 2D proton SI and SVS using PRESS sequence were performed in clinical cases (n=). All measurements were performed with a 1.5-T scanner using standard head quadrature coil. The 16
목적 : 소아 뇌 질환에서의 자기공명분광법의 임상적 적용에 있어서 단일화적소 양성자 자기공명분광법과 고식적 이차원 양성자 자기공명분광법에 비해 혼성 이차원 양성자 자기공명분광법이 가지는 장점에 대하여 알아보고자 하였다. 대상 및 방법 : 생후 3일에서 15세까지의 79명의 소아 (정상소아 36명, 저산소성-허혈성 뇌 손상 10명, 대사성 질환 20명, 뇌막염-뇌염 3명, 뇌종양 7명, 신경섬유종증 1명, Sturge-Weber 증후군 1명, lissencephaly 1명)를 대상으로 81회의 혼성 이차원 양성자 자기공명분광검사를 시행하였다. 성인자원자(n=5)에서 단일화적소 양성자 자기공명분광법, 고식적 이차원 양성자 자기공명분광법, 그리고 혼성 이차원 양성자 자기공명분광법 모두를 실시하였고, 환아군 중 일부(n=12)에서 PRESS기법을 이용한 단일화적소 분광법과 혼성 이차원 양성자 자기공명 분광법을 함께 시행하였다. 1.5-T 초전도영상장치 하에서 standard head quatrature coil을 이용하여 양성자 자기공명분광을 얻었다. Phase encoding step은 16