Development of PET detectors using monolithic scintillation crystals processed with sub-surface laser engraving technique
暂无分享,去创建一个
T. Yamashita | T. Moriya | S. Ohsuka | M. Watanabe | K. Fukumitsu | T. Moriya | T. Sakai | T. Okamoto | H. Takahashi | T. Yamashita | K. Fukumitsu | T. Sakai | S. Ohsuka | T. Okamoto | H. Takahashi | M. Watanabe
[1] R S Miyaoka,et al. Depth of interaction decoding of a continuous crystal detector module , 2007, Physics in medicine and biology.
[2] Simon R Cherry,et al. In vivo molecular and genomic imaging: new challenges for imaging physics. , 2004, Physics in medicine and biology.
[3] Peter Bruyndonckx,et al. Monolithic scintillator PET detectors with intrinsic depth-of-interaction correction , 2009, Physics in medicine and biology.
[4] K. Sato,et al. Development of Multi-Pixel Photon Counter (MPPC) , 2006, 2007 IEEE Nuclear Science Symposium Conference Record.
[5] Simon R Cherry,et al. Experimental characterization and system simulations of depth of interaction PET detectors using 0.5 mm and 0.7 mm LSO arrays , 2009, Physics in medicine and biology.
[6] S. Cherry,et al. A high efficiency pixelated detector for small animal PET , 2003, IEEE Transactions on Nuclear Science.
[7] Naoya Matsumoto,et al. Spherical aberration correction suitable for a wavefront controller. , 2009, Optics express.
[8] S. Cherry,et al. MicroPET II: design, development and initial performance of an improved microPET scanner for small-animal imaging. , 2003, Physics in medicine and biology.
[9] J. Benlloch,et al. Dependency of Energy-, Position- and Depth of Interaction Resolution on Scintillation Crystal Coating and Geometry , 2008, IEEE Transactions on Nuclear Science.