Rana V, Rudin S, Bednarek DR. A tracking system to calculate patient skin dose in real-time during neurointerventional procedures using a biplane x-ray imaging system. Medical Physics. 2016.
Jain A, Bednarek DR, Rudin S. Micro-Angiographic Fluoroscope: comparison for different input phosphors. IEEE Trans. Nucl. Sci.. 2014; 6(3).
Rudin S, Bednarek DR, Wakhloo AK, Lieber BB. U. S. Patent 6,285,739 Region of interest micro-angiography. U. S. Patent. 2001.
Daniel Bednarek, Stephen Rudin. Computer-aided bootstrap generation of characteristic curves for radiographic imaging systems.. Med Phys. 2001; 28(4).
Stephen Rudin, Yang CJ, Wang Z, Gopal A, Chattopadhyay A, Daniel Bednarek, Hoffmann KR, Miskolczi L, L Nelson Hopkins, Guterman LR, Lieber BB, Yamada S, Shiraishi K, Umazaki H, Takahashi S, Honda M. The clinical potential of x-ray flat panel detectors for dynamic images -the evaluation of animal angiographic studies using a direct conversion type flat panel detector. Toshiba Medical Review. 2000; 73.
Daniel Bednarek, Stephen Rudin. Comparison of two dose-area-product ionization chambers with different conductive surface coating for over-table and under-table tube configurations.. Health Phys. 2000; 78(3).
Liu RR, Stephen Rudin, Daniel Bednarek. Super-global distortion correction for a rotational C-arm x-ray image intensifier.. Med Phys. 1999; 26(9).
Liu R, Stephen Rudin, Daniel Bednarek. Super-global model for image intensifier distortions. Medical Physics. 1999; 26(9).
Stephen Rudin, Daniel Bednarek, Yang CY. Real-time equalization of region-of-interest fluoroscopic images using binary masks.. Med Phys. 1999; 26(7).
Stephen Rudin, Wakhloo AK, Lieber BB, Granger W, Divani AA, Daniel Bednarek, Hopkins LN. Microdroplet tracking using biplane digital subtraction angiography for cerebral arteriovenous malformation blood flow path and velocity determinations.. AJNR Am J Neuroradiol. 1999; 20(6).
Wakhloo AK, Lieber BB, Stephen Rudin, Duffy-Franckowiak M, Mericle RA, L Nelson Hopkins. Quantification of brain arteriovenous malformations(AVM)transit times using Ethiodol droplets and high-speed biplane digital subtraction angiography for enbucrilate embolization. J. Neurosurgery. 1998; 89.
Massoumzadeh P, Stephen Rudin, Daniel Bednarek. Filter Material Selection for Region of Interest Radiologic Imaging. Medical Physics. 1998; 25(2).
L Nelson Hopkins, Wakhloo AK, Stephen Rudin, Lee Guterman. Recent developments and applications in neurointervention. Toshiba Medical Review. 1997; 62.
Granger WE, Daniel Bednarek, Stephen Rudin. Survey of Primary beam exposure outside the displayed fluoroscopic FOV. Medical Physics. 1997; 24(5).
Stephen Rudin, Lee Guterman, Granger W, Daniel Bednarek, L Nelson Hopkins. Neuro-interventional Radiologic Application of Region of Interest (ROI)Imaging Techniques. Radiology. 1996; 199.
Stephen Rudin, Daniel Bednarek, Kezerashvili M, Granger W, Serghany J, Lee Guterman, L Nelson Hopkins, Massuomzadeh P, Szymanski B, Loftus R. Clinical Application of Region of Interest (ROI) Radiologic ImagingTechniques. Radiographics. 1996; 16.
Fletcher LM, Stephen Rudin, Daniel Bednarek. Method for Image Equalization of ROI Fluoroscopic Images using Mask Localization Selection and Subtraction. Computerized Med. Imag. and Graphics. 1996; 20(2).
Daniel Bednarek, Stephen Rudin. Increasing the utility of the mammographic phantom image. Radiology. 1996; 201.
Stephen Rudin, Daniel Bednarek. Minimizing radiation dose to patient and staff during fluoroscopic, nasoenteral tube insertions.. Br J Radiol. 1992; 65(770).
Stephen Rudin, Daniel Bednarek, Wong Roland. Accurate characterization of image intensifier distortion.. Med Phys. 1991; 18(6).
Stephen Rudin, Daniel Bednarek, Wong R. Improving fluoroscopic image quality with continuously variable zoom magnification.. Med Phys. 1991; 18(5).
Stephen Rudin, Daniel Bednarek, Wong Roland. Computer frame freezing of fluoroscopic images.. Radiol Technol. 1991; 62(5).
Daniel Bednarek, Stephen Rudin. Blurred-mask density compression for improved reproduction of radiographs.. Invest Radiol. 1991; 26(4).
Daniel Bednarek, Stephen Rudin, Wong R. Luminance range compression for video film digitizers.. Med Phys. 1991; 18(2).
Stephen Rudin, Daniel Bednarek, Miller JA. Dose reduction during fluoroscopic placement of feeding tubes.. Radiology. 1991; 178(3).
Daniel Bednarek, Rudinger G, Stephen Rudin. Slit design considerations for rotating-aperture, scanning-beam radiography.. Med Phys. 1988; 15(1).
Stephen Rudin, Daniel Bednarek, Wong R. Rapid scanning beam digital radiography. J. Imaging Technology. 1983; 9(6).
Daniel Bednarek, Stephen Rudin, Wong R, Andres ML. Reduction of fluoroscopic exposure for the air-contrast barium enema.. Br J Radiol. 1983; 56(671).
Daniel Bednarek, Stephen Rudin, Wong Roland. Assessment of patient exposure for barium enema examinations. Investigative Radiology. 1983; 18(5).
Rudin S, Bednarek DR, Wong R. U. S. Patent 4,403,338 Process and apparatus for scatter reduction in radiography. U. S. Patent. 1983.
Daniel Bednarek, Stephen Rudin, Wong R. Artifacts produced by moving grids.. Radiology. 1983; 147(1).
Stephen Rudin, Daniel Bednarek, Wong Roland. Artifact patterns in multiple scanning beam radiography.. Med Phys. 1982; 9(3).
Stephen Rudin, Daniel Bednarek, Wong Roland. Design of rotating aperture cones for radiographic scatter reduction.. Med Phys. 1982; 9(3).
Daniel Bednarek, Stephen Rudin, Roland Wong. An optical density comparator.. Radiology. 1982; 142(2).
Rudin S. U.S. Patent 4,315,146 Process and apparatus for scatter reduction in radiography. U. S. Patent. 1982.
Daniel Bednarek, Stephen Rudin, Roland Wong. Methods of sensitometry for low energy radiography. Optical Engineering. 1982; 21(1).
Stephen Rudin, Daniel Bednarek. Scatter reduction in x-ray tomography using rotating apertures. Optical Engineering. 1981; 20(4).
Daniel Bednarek, Stephen Rudin. Modified bootstrap sensitometry in radiography. Optical Engineering. 1981; 20(2).
Stephen Rudin, Daniel Bednarek. Improving contrast in special procedures using a rotating aperture wheel (RAW) device. Radiology. 1980; 137(2).
Rudin S. U. S. Patent 4,208,588 Hand-held shielding device for radioactive material. U. S. Patent. 1980.
Stephen Rudin. Rotating aperture wheel (RAW) device for improving radiographic contrast. Optical Engineering. 1980; 19(1).
Stephen Rudin. Design of indirect imaging syringe shields. Applied Radiology. 1979; 8(4).
Stephen Rudin, Daniel Bednarek. Spatial Shaping of the Beam: Collimation, Grids, Equalization Filters, and Region of Interest Fluoroscopy.. Physical and Technical Aspects of Interventional Radiology. 1995; 3.3(323).
Stephen Rudin, Rider KL, Hart HE. Gamma camera magnifying collimator systems. Tomographic Imaging in Nuclear Medicine. 1973; Chap8.
Wahkloo AK, Mericle RA, Lieber BB, Divani AA, Granger WE, L Nelson Hopkins, Stephen Rudin. Double contrast digital subtraction angiography to determine AVM architecture and flow velocity. 1998 Congress of Neurological Surgeons. 1998.
Lieber BB, Wahkloo AK, Stephen Rudin, Duffy-Fronckowiak M, L Nelson Hopkins. Velocity and Transit time quantification in cerebral arteriovenous malformations by ethiodol droplets. Intl. Journal of Cardiovascular Medicine and Science. 1997; 1(1).
Stephen Rudin, Daniel Bednarek. Dose and image noise reduction in interventional radiology using Region of Interest (ROI) Fluoroscopic beam shift strategies. Medical Physics. 1993; 20(3).
Stephen Rudin, Daniel Bednarek. Selection of filter material in Region Of Interest (ROI) Fluoroscopy. Medical Physics. 1993; 20(3).
Stephen Rudin, Daniel Bednarek. Non-hardening x-ray beam attenuating filters. Medical Physics. 1993; 20(3).
Stephen Rudin, Daniel Bednarek. Region of Interest Fluoroscopy applied to interventional radiologic procedures. RSNA Scientific Program. 1992.
Stephen Rudin, Daniel Bednarek, Wong R. Parameterization of image intensifier distortion. Medical Physics. 1991; 18(3).
Stephen Rudin, Daniel Bednarek, Wong R. Continuously-variable zoom magnification for fluoroscopy. Medical Physics. 1991; 18(3).
Stephen Rudin, Daniel Bednarek. Substantial dose reduction in selected fluoroscopic procedures. Medical Physics. 1991; 18(3).
Stephen Rudin, Daniel Bednarek, Wong R, Kaczmarek RG, Kaczmarek RV, Alker G. High contrast clinical imaging with a rapid multiple scanning beam device: Effects of aperture pattern zone boundaries. RSNA Scientific Program. 1986.
Daniel Bednarek, Stephen Rudin, Wong R. Artifacts patterns of anti-scatter grids. Medical Physics. 1981; 8(4).
Daniel Bednarek, Stephen Rudin, Wong R. Evaluation of sensitometry at mammographic energies. Medical Physics. 1981; 8(4).
Stephen Rudin, Daniel Bednarek, Wong R, Andres MLR, Leslie EV. Fluoroscopic dose reduction using iris control. Medical Physics. 1981; 8(4).
Stephen Rudin, Daniel Bednarek, Wong R. Rotating aperture cones for scatter reduction in diagnostic radiology. RSNA Scientific Program. 1980.
Stephen Rudin, Daniel Bednarek, Wong R. Synchronization and overlap artifacts in multiple scanning beam radiography. RSNA Scientific Program. 1980.
Stephen Rudin, Daniel Bednarek. Scatter reduction in cone beam CT using a Scanning Cylindrical Aperture Tomography (SCAT) device. Medical Physics. 1980; 7(4).
Daniel Bednarek, Stephen Rudin. Clinical Sensitometry. Medical Physics. 1980; 7(4).
Stephen Rudin. Perspective on radiation protection and risks. Empire State Assn. for Med. Techn. Program Announcement. 1980.
Daniel Bednarek, Stephen Rudin. A comparison of modified bootstrap and conventional methods of sensitometry in medical radiology. Am. J. Roentg.. 1980; 134.
Stephen Rudin, Daniel Bednarek. A RAW device for x-ray tomography. Am. J. Roentg.. 1980; 134.
Stephen Rudin, Daniel Bednarek. The RAW device - a rotating aperture wheel anti-scatter system for dynamic radiology. Medical Physics. 1979; 6(4).
Zacuto P, Stephen Rudin, Hart HE. Performance characteristics of a focusing collimator coincidence scanning systems. Phys. Med. Biol.. 1977; 22.
Sherman AA, Stephen Rudin, Mc Dougall RS. Dose measurement of mixed beta and gamma fields of homogenously distributed isotope using powder and solid TLD‘s. Phys. Med. Biol.. 1970; 15.
Bardfeld PA, Stephen Rudin, Sherman AA. Measurement of Radiation dose from radioisotopic scanning procedures using thermoluminescent dosimeters. J. Nuclear Medicine. 1970; 11.
Kenneth Hoffmann, D. P. Nazareth, L. Miskolczi, B. Nemes, A. Gopal, Stephen Rudin, Daniel Bednarek. Measurement of vessel sizes: comparison of manual and automated techniques. ; 2001(221P).
U.S. Patent No. 10079003, Imaging a ROI Method and Device for Imaging a ROI. New technology disclosure, SUNY Research Foundation, Technology Transfer Office (2018)
U.S. Patent No. 10019795, Focal spot de-blurring Focal spot de-blurring, joint patent filed by Toshiba Medical Systems Corp. and University at Buffalo (2018)
U.S. Patent No. 9613438, X-ray Diagnostic Apparatus X-ray Diagnostic Apparatus and Medical Image Processing Method, joint patent filed by Toshiba Medical Systems Corp. and University at Buffalo (2017)
U.S. Patent No. 6285739, Micro-Angiography Radiographic Imaging Apparatus and Method for Vascular Interventions (2001)
U.S. Patent No. 4403338, Scatter reduction Process and appratus for scatter reduction in radiography (1983)
U.S. Patent No. 4315146, Scatter reduction Process and apparatus for scatter reduction in radiography (1982)
U.S. Patent, No. 4208588, Shielding device Hand held shielding device for radioactive material (1980)