a-Si:H TFT-Based Active Matrix Flat-Panel Imagers For Medical X-Ray Applications
暂无分享,去创建一个
[1] Marietta Garmer,et al. Digital chest radiography with a large-area flat-panel silicon X-ray detector: clinical comparison with conventional radiography , 2001, European Radiology.
[2] Ian A. Cunningham. Degradation of the detective quantum efficiency due to a nonunity detector fill factor , 1997, Medical Imaging.
[3] R. F. Wagner,et al. Toward consensus on quantitative assessment of medical imaging systems. , 1995, Medical physics.
[4] M P Capp. Radiological imaging--2000 A.D. , 1982, The Canadian journal of radiography, radiotherapy, nuclear medicine.
[5] Denny L. Y. Lee,et al. New digital detector for projection radiography , 1995, Medical Imaging.
[6] Walter Dr. Hillen,et al. Signal-to-noise performance in cesium iodide x-ray fluorescent screens , 1991, Medical Imaging.
[7] J Yorkston,et al. Initial performance evaluation of an indirect-detection, active matrix flat-panel imager (AMFPI) prototype for megavoltage imaging. , 1998, International journal of radiation oncology, biology, physics.
[8] John A. Rowlands,et al. Signal and noise analysis using transmission line model for larger-area flat-panel x-ray imaging sensors , 1999, Medical Imaging.
[9] Wei Zhao,et al. Imaging performance of amorphous selenium based flat-panel detectors for digital mammography: characterization of a small area prototype detector. , 2003, Medical physics.
[10] D Jaffray,et al. Prototype amorphous silicon array based radiotherapy portal imager , 1997, Medical Imaging.
[11] Larry E. Antonuk,et al. A Large Area, High-Resolution a-Si:H Array for X-Ray Imaging , 1994 .
[12] Kanai S. Shah,et al. X-ray imaging using lead iodide as a semiconductor detector , 1999, Medical Imaging.
[13] Andrew G. Davies,et al. Image quality of digital radiography using flat detector technology , 2003, SPIE Medical Imaging.
[14] J Yorkston,et al. Demonstration of megavoltage and diagnostic x-ray imaging with hydrogenated amorphous silicon arrays. , 1992, Medical physics.
[15] Martin Choquette,et al. Progress report on the performance of real-time selenium flat-panel detectors for direct x-ray imaging , 2002, SPIE Medical Imaging.
[16] Larry E. Antonuk,et al. Development of thin-film flat-panel arrays for diagnostic and radiotherapy imaging , 1992, Medical Imaging.
[17] J. Webster. Encyclopedia of Medical Devices and Instrumentation , 1988 .
[18] Patrik Sund,et al. Evaluation of the imaging properties of two generations of a CCD-based system for digital chest radiography. , 2002, Medical physics.
[19] G. Barnes,et al. Digital chest radiography: performance evaluation of a prototype unit. , 1985, Radiology.
[20] Falko Busse,et al. Optimization of key building blocks for a large-area radiographic and fluoroscopic dynamic digital x-ray detector based on a-Si:H/CsI:Tl flat panel technology , 2000, Medical Imaging.
[21] Satoshi Yamada,et al. Experimental evaluation of a-Se and CdTe flat-panel x-ray detectors for digital radiography and fluoroscopy , 2000, Medical Imaging.
[22] Brian G. Rodricks,et al. Improved imaging performance of a 14"x17" direct radiography system using a Se/TFT detector , 1998, Medical Imaging.
[23] Robert A. Street,et al. Flat panel imagers with pixel level amplifiers based on polycrystalline silicon thin-film transistor technology , 2002 .
[24] H. Jones. A Century of X-rays and Radioactivity in Medicine , 1994 .
[25] Matthijs Oudkerk,et al. Radiology in Medical Diagnostics: Evolution of X-Ray Applications 1895-1995 , 1995 .
[26] J. Wong,et al. Flat-panel cone-beam computed tomography for image-guided radiation therapy. , 2002, International journal of radiation oncology, biology, physics.
[27] J A Rowlands,et al. Absorption and noise in cesium iodide x-ray image intensifiers. , 1983, Medical physics.
[28] Olivier Tousignant,et al. Imaging performance of an amorphous selenium flat-panel detector for digital fluoroscopy , 2003, SPIE Medical Imaging.
[29] M. Danielsson,et al. Evaluation of a photon counting X-ray imaging system , 2000, 2000 IEEE Nuclear Science Symposium. Conference Record (Cat. No.00CH37149).
[30] Larry E. Antonuk,et al. A programmable, low noise, multichannel ASIC for readout of pixelated amorphous silicon arrays , 2000 .
[31] L. Antonuk,et al. Additive noise properties of active matrix flat-panel imagers. , 2000, Medical physics.
[32] Kanai S. Shah,et al. Comparison of PbI2 and HgI2 for direct detection active matrix x-ray image sensors , 2002 .
[33] Norbert Conrads,et al. Dynamic x-ray imaging system based on an amorphous silicon thin-film array , 1998, Medical Imaging.
[34] J A Rowlands,et al. X-ray imaging with amorphous selenium: X-ray to charge conversion gain and avalanche multiplication gain. , 2002, Medical physics.
[35] Qihua Zhao,et al. System performance of a prototype flat-panel imager operated under mammographic conditions. , 2003, Medical physics.
[36] Mats Danielsson,et al. Measurements on a full-field digital mammography system with a photon counting crystalline silicon detector , 2003, SPIE Medical Imaging.
[37] Richard L. Weisfield,et al. Large Area 2-Dimensional a-Si:H Imaging Arrays , 1992 .
[38] John A. Rowlands,et al. Investigation of lag and ghosting in amorphous selenium flat-panel x-ray detectors , 2002, SPIE Medical Imaging.
[39] J A Rowlands,et al. Digital radiology using active matrix readout of amorphous selenium: detectors with high voltage protection. , 1998, Medical physics.
[40] Thierry Ducourant,et al. New CsI/a-Si 17" x 17" x-ray flat-panel detector provides superior detectivity and immediate direct digital output for general radiography systems , 1998, Medical Imaging.
[41] Brian G. Rodricks,et al. Filtered gain calibration and its effect on frequency-dependent DQE and image quality in Se-based general radiography and full-field mammographic digital imaging , 2001 .
[42] Robert A. Street,et al. Technology and Applications of Amorphous Silicon , 2000 .
[43] B. McCurdy,et al. Dosimetric investigation and portal dose image prediction using an amorphous silicon electronic portal imaging device. , 2001, Medical physics.
[44] Isaias D. Job,et al. 40 x 30 cm flat-panel imager for angiography, R&F, and cone-beam CT applications , 2001 .
[45] Larry E. Antonuk,et al. Radiation damage of amorphous silicon photodiode sensors , 1994 .
[46] Robert A. Street,et al. Lateral conduction in structured amorphous silicon p+–i–n+ photodiodes , 2000 .
[47] Yi Wang,et al. Evaluation of novel direct- and indirect-detection active matrix flat-panel imagers (AMFPIs) for mammography , 2003, SPIE Medical Imaging.
[48] John A. Rowlands,et al. Digital radiology using self-scanned readout of amorphous selenium: design considerations for mammography , 1995, Medical Imaging.
[49] Norbert Conrads,et al. Fluoroscopic x-ray imaging with amorphous silicon thin-film arrays , 1994, Medical Imaging.
[50] John A. Rowlands,et al. Digital radiology using self-scanned readout of amorphous selenium , 1993, Medical Imaging.
[51] Martin Choquette,et al. Direct conversion detector for digital mammography , 1999, Medical Imaging.
[52] R. Street,et al. Large Area Electronics for Flat Panel Imagers Progress and Challenges , 2002 .
[53] W. Zhao,et al. Digital radiology using active matrix readout: amplified pixel detector array for fluoroscopy. , 1999, Medical physics.
[54] R. Street,et al. Factors Affecting Image Quality for Megavoltage and Diagnostic X-Ray a-Si:H Imaging Arrays. , 1992 .
[55] Neil C. Bird,et al. 2D Image Sensing Arrays with NIP Diodes , 1993 .
[56] Thierry Ducourant,et al. Amorphous silicon x-ray image sensor , 1996, Medical Imaging.
[57] Tieer Gu,et al. Thin-film transistor array technology for high-performance direct-conversion x-ray sensors , 1998, Medical Imaging.
[58] Manabu Tanaka,et al. Development of a selenium-based flat-panel detector for real-time radiography and fluoroscopy , 1998, Medical Imaging.
[59] Richard L. Weisfield,et al. Amorphous Silicon Sensor Arrays for X-Ray and Document Imaging , 1997 .
[60] U Neitzel,et al. Image quality of a digital chest radiography system based on a selenium detector. , 1994, Medical physics.
[61] G T Barnes,et al. Digital radiography of the chest: design features and considerations for a prototype unit. , 1983, Radiology.
[62] A. Theuwissen,et al. Solid-State Imaging with Charge-Coupled Devices , 1995 .
[63] Robert A. Street,et al. Long-time transient conduction in a-Si:H p─i─n devices , 1991 .
[64] Martin Choquette,et al. Performance of a real-time selenium-based x-ray detector for fluoroscopy , 2001, SPIE Medical Imaging.
[65] P. Granfors,et al. Performance of a 41X41-cm2 amorphous silicon flat panel x-ray detector for radiographic imaging applications. , 2000, Medical physics.
[66] Larry E. Antonuk,et al. Large-area 97-μm pitch indirect-detection active-matrix flat-panel imager (AMFPI) , 1998, Medical Imaging.
[67] Tao-Yi. Fu. INFORMATION TRANSFER EFFICIENCY OF X-RAY IMAGE INTENSIFIER-BASED IMAGING SYSTEMS. , 1984 .
[68] Srinivasan Vedantham,et al. Solid-state fluoroscopic imager for high-resolution angiography: parallel-cascaded linear systems analysis. , 2004, Medical physics.
[69] J. Wong,et al. Characterization of a fluoroscopic imaging system for kV and MV radiography. , 2000, Medical physics.
[70] Larry E. Antonuk,et al. High-resolution, high-frame-rate, flat-panel TFT array for digital x-ray imaging , 1994, Medical Imaging.
[71] J A Rowlands,et al. Origins of flare in x-ray image intensifiers. , 1990, Medical physics.
[72] Richard L. Weisfield,et al. Amorphous Silicon Sensor Arrays for X-Ray and Document Imaging , 1997 .
[73] S Suryanarayanan,et al. Full breast digital mammography with an amorphous silicon-based flat panel detector: physical characteristics of a clinical prototype. , 2000, Medical physics.
[74] Richard Aufrichtig,et al. DQE(f) of an amorphous-silicon flat-panel x-ray detector: detector parameter influences and measurement methodology , 2000, Medical Imaging.
[75] Denny L. Y. Lee,et al. Direct-conversion imaging panel having a charge transport layer with controlled time constant , 2002, SPIE Medical Imaging.
[76] M J Yaffe,et al. Effect of finite phosphor thickness on detective quantum efficiency. , 1989, Medical physics.
[77] M B Williams,et al. Analysis of the detective quantum efficiency of a developmental detector for digital mammography. , 1999, Medical Physics (Lancaster).
[78] J. Yorkston,et al. Radiation response characteristics of amorphous silicon arrays for megavoltage radiotherapy imaging , 1991, Conference Record of the 1991 IEEE Nuclear Science Symposium and Medical Imaging Conference.
[79] J. Boyer,et al. Computer Electronic Radiography For Early Detection Of Vascular Disease , 1979, Other Conferences.
[80] Youming Li,et al. Amorphous silicon image sensor for x-ray applications , 1995, Electronic Imaging.
[81] Larry E. Antonuk,et al. Amorphous Silicon Sensor Arrays for Radiation Imaging , 1990 .
[82] Douglas Albagli,et al. Performance of a flat-panel cardiac detector , 2001, SPIE Medical Imaging.
[83] Richard L. Weisfield,et al. High-resolution high fill factor a-Si:H sensor arrays for medical imaging , 1999, Medical Imaging.
[84] Larry E. Antonuk,et al. Large-area flat-panel amorphous silicon imagers , 1995, Medical Imaging.
[85] Richard L. Weisfield,et al. Characteristics of a-Si Pixel Arrays for Radiation Imaging , 1991 .
[86] Tatsuya Yamazaki,et al. Novel large-area MIS-type x-ray image sensor for digital radiography , 1998, Medical Imaging.
[87] John A. Rowlands,et al. Large-area solid state detector for radiology using amorphous selenium , 1992, Medical Imaging.
[88] J. H. Stephen,et al. The effect ofγ-irradiation on amorphous silicon field effect transistors , 1983 .
[89] R. Street,et al. Radiation damage studies of amorphous-silicon photodiode sensors for applications in radiotherapy X-ray imaging , 1990 .
[90] Douglas Albagli,et al. Performance of advanced a-Si/CsI-based flat-panel x-ray detectors for mammography , 2003, SPIE Medical Imaging.
[91] Eric R. Fossum,et al. CMOS image sensors: electronic camera-on-a-chip , 1997 .
[92] Ehsan Samei,et al. An experimental comparison of detector performance for direct and indirect digital radiography systems. , 2003, Medical physics.
[93] J. R. Hughes,et al. Amorphous Silicon Image Sensor Arrays , 1992 .
[94] R. Street,et al. Crosstalk and lateral conduction effects in continuous-sensor amorphous silicon imagers , 2001 .
[95] Phillip C. Bunch. Detective Quantum Efficiency Of Selected Mammographic Screen-Film Combinations , 1989, Medical Imaging.
[96] H Liu,et al. Charge-coupled device detector: performance considerations and potential for small-field mammographic imaging applications. , 1992, Medical physics.
[97] K. W. Taylor,et al. Imaging And Noise Limitations Of Cesium Iodide X-Ray Image Intensifiers , 1984, Other Conferences.
[98] Kouhei Suzuki,et al. Development and evaluation of a large-area selenium-based flat-panel detector for real-time radiography and fluoroscopy , 1999, Medical Imaging.
[99] D. Jaffray,et al. A ghost story: spatio-temporal response characteristics of an indirect-detection flat-panel imager. , 1999, Medical physics.
[100] J Yorkston,et al. Signal, noise power spectrum, and detective quantum efficiency of indirect-detection flat-panel imagers for diagnostic radiology. , 1998, Medical physics.
[101] Robert A. Street,et al. Approaching the theoretical x-ray sensitivity with Hgl2 direct detection image sensors , 2002, SPIE Medical Imaging.
[102] Hans Roehrig,et al. Noise Power Spectrum, MTF, And DQE Of Photoelectronic Radiographic Systems , 1984, Other Conferences.
[103] Richard L. Van Metter,et al. Conversion noise measurement for front and back x-ray intensifying screens , 1990, Medical Imaging.
[104] J Yorkston,et al. Empirical and theoretical investigation of the noise performance of indirect detection, active matrix flat-panel imagers (AMFPIs) for diagnostic radiology. , 1997, Medical physics.
[105] Arokia Nathan,et al. Active pixel image sensor for large-area medical imaging , 2003, SPIE Medical Imaging.
[106] Weidong Huang,et al. A data acquisition system for flat-panel imaging arrays , 1993 .
[107] Larry E. Antonuk,et al. Considerations for High Frame Rate Operation of Two-Dimensional a-Si:H Imaging Arrays , 1993 .
[108] L. Antonuk,et al. Radiation damage of amorphous silicon, thin-film, field-effect transistors. , 1996, Medical physics.
[109] A Fenster,et al. A spatial-frequency dependent quantum accounting diagram and detective quantum efficiency model of signal and noise propagation in cascaded imaging systems. , 1994, Medical physics.
[110] Larry E. Antonuk,et al. Evaluation of direct detection and indirect detection active matrix flat-panel imagers (AMFPIs) for digital mammography , 2001, SPIE Medical Imaging.
[111] Brian G. Rodricks,et al. Development of a novel high-resolution direct conversion x-ray detector , 2000, Medical Imaging.
[112] R. Street,et al. Hydrogenated amorphous silicon: Index , 1991 .
[113] Isaias D. Job,et al. Flat-panel imaging system for fluoroscopy applications , 1998, Medical Imaging.
[114] J H Siewerdsen,et al. Strategies to improve the signal and noise performance of active matrix, flat-panel imagers for diagnostic x-ray applications. , 2000, Medical physics.
[115] Kanai S. Shah,et al. Comparative study of Pbl2 and Hgl2 as direct detector materials for high-resolution x-ray image sensors , 2001, SPIE Medical Imaging.
[116] M. Rabbani,et al. Detective quantum efficiency of imaging systems with amplifying and scattering mechanisms. , 1987, Journal of the Optical Society of America. A, Optics and image science.
[117] Kanai S. Shah,et al. Mercuric iodide and lead iodide x-ray detectors for radiographic and fluoroscopic medical imaging , 2003, SPIE Medical Imaging.
[118] R. A. Street,et al. Thermal generation currents in hydrogenated amorphous silicon p - i - n structures , 1990 .
[119] Berkman Sahiner,et al. Digital indirect-detection x-ray imagers with microlens focusing: effects of Fresnel reflections from the microlens layer , 2003, SPIE Medical Imaging.
[120] Zhenxue Jing,et al. Characterization of a full-field digital mammography detector based on direct x-ray conversion in selenium , 2002, SPIE Medical Imaging.
[121] Robert A. Street,et al. Radiological x-ray response of polycrystalline mercuric-iodide detectors , 2000, Medical Imaging.
[122] Larry E. Antonuk,et al. Large area, flat-panel a-Si:H arrays for x-ray imaging , 1993, Medical Imaging.
[123] J Yorkston,et al. Empirical investigation of the signal performance of a high-resolution, indirect detection, active matrix flat-panel imager (AMFPI) for fluoroscopic and radiographic operation. , 1997, Medical physics.
[124] Martin Choquette,et al. Direct selenium x-ray detector for fluoroscopy, R&F, and radiography , 2000, Medical Imaging.
[125] Youming Li,et al. High-resolution amorphous silicon image sensor , 1996, Medical Imaging.
[126] Torsten Solf,et al. Temporal artifacts in flat dynamic x-ray detectors , 2001, SPIE Medical Imaging.
[127] R. K. Swank. Absorption and noise in x‐ray phosphors , 1973 .
[128] Larry E. Antonuk,et al. Design and performance of a low noise, 128-channel ASIC preamplifier for readout of active matrix flat-panel imaging arrays , 2002 .
[129] Ziad Shukri,et al. Selenium direct-converter structure for static and dynamic x-ray detection in medical imaging applications , 1998, Medical Imaging.
[130] J. Rowlands,et al. Detective quantum efficiency of x-ray image intensifiers: comparison of scintillation spectrum and rms methods. , 1984, Medical physics.
[131] Kanai S. Shah,et al. High-resolution direct-detection x-ray imagers , 2000, Medical Imaging.
[132] S. Nelson,et al. Radiation imaging with 2D a-Si sensor arrays , 1991, Conference Record of the 1991 IEEE Nuclear Science Symposium and Medical Imaging Conference.
[133] J A Rowlands,et al. X-ray imaging using amorphous selenium: feasibility of a flat panel self-scanned detector for digital radiology. , 1995, Medical physics.
[134] J A Rowlands,et al. X-ray imaging using amorphous selenium: determination of Swank factor by pulse height spectroscopy. , 1998, Medical physics.
[135] Larry E. Antonuk,et al. An asynchronous, pipelined, electronic acquisition system for Active Matrix Flat-Panel Imagers (AMFPIs) , 1999 .
[136] J A Rowlands,et al. X-ray imaging with amorphous selenium: detective quantum efficiency of photoconductive receptors for digital mammography. , 1995, Medical physics.
[137] U Bottigli,et al. First x-ray images with a double-sided microstrips silicon crystal. A novel detector for digital radiography? , 1992, Physics in medicine and biology.
[138] Anthony R. Franklin,et al. Amorphous Silicon Photodiode-Thin Film Transistor Image Sensor with Diode on Top Structure , 1997 .
[139] Marcelo Mulato,et al. Simulated and measured data-line parasitic capacitance of amorphous silicon large-area image sensor arrays , 2001 .
[140] K. Lam,et al. Relative dosimetry using active matrix flat-panel imager (AMFPI) technology. , 1999, Medical physics.