Evaluation of penetration and scattering components in conventional pinhole SPECT: phantom studies using Monte Carlo simulation.
暂无分享,去创建一个
Hiroshi Watabe | Hidehiro Iida | Toshiyuki Aoi | H. M. Deloar | H. Watabe | H. Iida | T. Aoi | Hossain M Deloar
[1] H. Atkins,et al. Pinhole SPECT: an approach to in vivo high resolution SPECT imaging in small laboratory animals. , 1994, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[2] Koichi Ogawa,et al. Ultra high resolution pinhole SPECT for small animal study , 1998 .
[3] Y. Yonekura,et al. Ultra-high resolution SPECT system using four pinhole collimators for small animal studies. , 1995, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[4] Ronald J. Jaszczak,et al. Quantitative small field-of-view pinhole SPECT imaging: initial evaluation , 1995 .
[5] Ronald J. Jaszczak,et al. Lead and tungsten pinhole inserts for I-131 SPECT tumor imaging: experimental measurements and photon transport simulations , 1997 .
[6] A. Fischman,et al. Cardiac blood-pool scintigraphy in rats and hamsters: comparison of five radiopharmaceuticals and three pinhole collimator apertures. , 1991, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[7] P Wollmer,et al. Pinhole emission computed tomography: method and experimental evaluation. , 1990, Physics in medicine and biology.
[8] P M Wanet,et al. Physical and clinical evaluation of high-resolution thyroid pinhole tomography. , 1996, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[9] A proposed method for correcting aperture penetration in high energy slit aperture and pinhole SPECT , 1997 .
[10] D Paix,et al. Pinhole imaging of gamma rays. , 1967, Physics in medicine and biology.
[11] L. Feldkamp,et al. Practical cone-beam algorithm , 1984 .
[12] R J Jaszczak,et al. An analytic model of pinhole aperture penetration for 3D pinhole SPECT image reconstruction. , 1998, Physics in medicine and biology.
[13] P. Acton,et al. Occupancy of dopamine D2 receptors in the mouse brain measured using ultra-high-resolution single-photon emission tomography and [123I]IBF , 2002, European Journal of Nuclear Medicine and Molecular Imaging.
[14] R. Jaszczak,et al. The effect of gamma ray penetration on angle-dependent sensitivity for pinhole collimation in nuclear medicine. , 1997, Medical physics.
[15] R. Jaszczak,et al. Pinhole collimation for ultra-high-resolution, small-field-of-view SPECT. , 1994, Physics in medicine and biology.
[16] Ronald J. Jaszczak,et al. Analytic determination of pinhole collimator sensitivity with penetration , 2001, IEEE Transactions on Medical Imaging.
[17] R. Jaszczak,et al. Improved SPECT quantification using compensation for scattered photons. , 1984, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[18] P. Acton,et al. Quantification of dopamine transporters in the mouse brain using ultra-high resolution single-photon emission tomography , 2002, European Journal of Nuclear Medicine and Molecular Imaging.
[19] Briesmeister. MCNP: a general Monte Carlo code for neutron and photon transport. Version 3A. Revision 2 , 1986 .
[20] L. Delbridge,et al. Optimal Pinhole Techniques for Preoperative Localization with Tc-99m MIBI for Primary Hyperparathyroidism , 2001, Clinical nuclear medicine.
[21] Y W Bahk,et al. Pinhole SPECT imaging in normal and morbid ankles. , 1998, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[22] D R Gilland,et al. Quantitative imaging of iodine-131 distributions in brain tumors with pinhole SPECT: a phantom study. , 1998, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.