HIGH-RESOLUTION PINHOLE SPECT FOR TUMOR IMAGING

被引:7
作者
STRAND, SE
IVANOVIC, M
ERLANDSSON, K
WEBER, DA
FRANCESCHI, D
BUTTON, T
SJOGREEN, K
机构
[1] BROOKHAVEN NATL LAB,DEPT MED,UPTON,NY 11973
[2] SUNY SB,STONY BROOK,NY
[3] LUND UNIV,DEPT RADIAT PHYS,S-22101 LUND,SWEDEN
关键词
D O I
10.3109/02841869309096147
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
High-resolution, non-invasive, 3D-imaging techniques would greatly benefit the investigation of the localization properties of tumor-specific radiopharmaceuticals in laboratory animals. The present study reports how pinhole SPECT can be applied to tumor localization studies in small laboratory animals to provide high resolution SPECT images in vivo. Pinhole SPECT was performed using a rotating scintillation camera, equipped with a pinhole collimator. The sensitivity of a 2 mm diameter collimator at 45 mm from the source is 90 cps/MBq for Tc-99m. The planar spatial resolution at a 45 mm distance is 2.2 mm. The transaxial spatial resolution, with a distance of 45 mm between the collimator aperture and the axis of rotation, is 3.1 mm. For SPECT imaging, spatial linearity is preserved across the usable field-of-view. The major advantage of the high resolution properties of pinhole tomography is demonstrated by the enhanced lesion-to-normal-brain uptake ratio achieved on tomographic slices as compared to planar images. For example, Tl-201 tumor-to-normal-brain uptake ratios of 1.1 to 1.3 observed on planar images, corresponded to ratios ranging from 3.2 to 3.7 on the SPECT slices. Examples of the activity distributions of two radiopharmaceuticals in tumor and in normal brain for sagittal and coronal images are given. In all cases, tumors are clearly delineated on the pinhole SPECT slices. The present study shows that pinhole SPECT performed with standard SPECT instrumentation can give high spatial resolution images, with a FWHM approximate to 3 mm and a sensitivity approximate to 100 cps/MBq for Tc-99m.
引用
收藏
页码:861 / 867
页数:7
相关论文
共 50 条
[11]   High-Resolution Anamorphic SPECT Imaging [J].
Durko, Heather L. ;
Barrett, Harrison H. ;
Furenlid, Lars R. .
2012 IEEE NUCLEAR SCIENCE SYMPOSIUM AND MEDICAL IMAGING CONFERENCE RECORD (NSS/MIC), 2012, :3735-3742
[12]   High-Resolution Anamorphic SPECT Imaging [J].
Durko, Heather L. ;
Barrett, Harrison H. ;
Furenlid, Lars R. .
IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 2014, 61 (03) :1126-1135
[13]   Evaluation of high-resolution pinhole SPECT using a small rotating animal [J].
Habraken, JBA ;
de Bruin, K ;
Shehata, M ;
Booij, J ;
Bennink, R ;
Smit, BLFV ;
Sokole, EB .
JOURNAL OF NUCLEAR MEDICINE, 2001, 42 (12) :1863-1869
[14]   High-Resolution Multi-Pinhole SPECT Study of Arthritic Hands [J].
Hoppin, J. W. ;
Lackas, C. ;
Wirrwar, A. ;
Ostendorf, B. ;
Scherer, A. J. ;
Schramm, N. U. .
EUROPEAN JOURNAL OF NUCLEAR MEDICINE AND MOLECULAR IMAGING, 2005, 32 :S259-S259
[15]   Multi-pinhole collimator design for small-object imaging with SiliSPECT: a high-resolution SPECT [J].
Shokouhi, S. ;
Metzler, S. D. ;
Wilson, D. W. ;
Peterson, T. E. .
PHYSICS IN MEDICINE AND BIOLOGY, 2009, 54 (02) :207-225
[16]   Ultra high resolution pinhole SPECT [J].
Ogawa, K ;
Kawade, T ;
Nakamura, K ;
Kubo, A ;
Ichihara, T .
1997 IEEE NUCLEAR SCIENCE SYMPOSIUM - CONFERENCE RECORD, VOLS 1 & 2, 1998, :1600-1604
[17]   Quantitative imaging of myocardial infarct in rats with high resolution pinhole SPECT [J].
Paul D. Acton ;
Daniel Thomas ;
Rong Zhou .
The International Journal of Cardiovascular Imaging, 2006, 22 :429-434
[18]   Quantitative imaging of myocardial infarct in rats with high resolution pinhole SPECT [J].
Acton, PD ;
Thomas, D ;
Zhou, R .
INTERNATIONAL JOURNAL OF CARDIOVASCULAR IMAGING, 2006, 22 (3-4) :429-434
[19]   Multi-pinhole collimator optimization for high resolution SPECT imaging [J].
Ivanovic, M ;
Weber, DA ;
Loncaric, S .
1997 IEEE NUCLEAR SCIENCE SYMPOSIUM - CONFERENCE RECORD, VOLS 1 & 2, 1998, :1097-1101
[20]   Optimized design of pinhole collimator for high-resolution micro-SPECT system [J].
Dai, Qiu-Sheng ;
Qi, Yu-Jin .
2008, Atomic Energy Publishing House (42)