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    "abstract": "This paper describes improvements developed for motion picture film projectors, in particular, new designs for the intermittent, or Geneva mechanism, and for a Universal lamp house. These new designs are intended to improve the quality of the overall screen image as well as light efficiency and uniformity, resulting in significant increases in screen luminance.",
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    "authors": [
      {
        "affiliation": "Eastman Kodak Co., Rochester. NY 14650; Entertainment Imaging business unit of Eastman Kodak Co.",
        "bio": "Christopher L. DuMont is a senior technical associate in the Entertainment Imaging business unit of Eastman Kodak Co. He has a B.S. from RIT in Imaging Science, and a M.S. in analytical chemistry, also from RIT. He has worked in motion picture systems studies for the last 12 years, and in the military doing remote sensing, prior to working at Kodak. He has worked on developing new negative, intermediate, hybrid and digital products for use in the motion picture industry. Dumont's most recent projects were developing the Kodak PreView System and novel technologies for use in the exhibition industry. Dumont has been the author and presenter of papers at numerous SMPTE conferences. He holds six U.S. patents in the imaging science field for Kodak.",
        "name": "C. L. DuMont"
      },
      {
        "affiliation": "Eastman Kodak Co., Rochester. NY 14650; Eastman Kodak Co.",
        "bio": "Andrew F. Kurtz is a senior research scientist at Eastman Kodak Co., where he has worked on the development of optical technologies and prototype systems for film scanning, laser printing, and image projection. His work related to the development of optical systems generally, and illumination systems and optical devices in particular, has resulted in 18 issued U.S. patents. He is a recipient of a 1998 Prime Time Emmy Award from the Academy of Television Arts & Sciences for Outstanding Achievement in Engineering Development for his work on the Spirit Datacine telecine system. Kurtz received both B.S. and M.S. degrees in optics from the University of Rochester. He is a member of the SPIE, SMPTE, and SID.",
        "name": "A. F. Kurtz"
      },
      {
        "affiliation": "Eastman Kodak Co., Rochester. NY 14650; Engineering Physics Laboratory, Eastman Kodak Co.",
        "bio": "Barry D. Silverstein is a senior research scientist, Engineering Physics Laboratory, Eastman Kodak Co. He received a B.S. in optics from the University of Rochester in 1984. His career with Eastman Kodak has been in the design and development of optical read/write disk storage systems, space optics, laser printing systems, and image projection systems. He has specialized in the design of optical systems and in the packaging of micro-optical components and opto-electronic devices. Silverstein has received two U.S. patents related to optical systems design.",
        "name": "B. D. Silverstein"
      },
      {
        "affiliation": "Eastman Kodak Co., Rochester. NY 14650; Eastman Kodak Co.",
        "bio": "David H. Kirkpatrick is a senior development engineer at Eastman Kodak Co. His responsibilities in the Commercial and Government Systems group include development and processing of equipment for large ground-based and orbiting mirror systems, including the Chandra X-Ray Observatory launched by NASA in July 1999. Before joining Kodak, he was involved in machine tool design and development work at Gleason Works. He has contributed to three issued U.S. patents, generally related to gear and drive mechanisms. Kirkpatrick received a BSME degree from Lehigh University in 1972.",
        "name": "D. H. Kirkpatrick"
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      "holder": "Society of Motion Picture and Television Engineers, Inc.",
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        "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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      "year": "2001",
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        "confidence": "high",
        "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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    "docTitle": "Design Improvements for Motion Picture Film Projectors",
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      "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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        "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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      "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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      "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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    "pages": "785–791",
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      "confidence": "high",
      "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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      "confidence": "high",
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        "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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        "note": "Parsed from journal_metadata XML (_source/SMPTE/APTARA/DL Project Files/08182015 BACKFILE JOURNAL FRESH/smptej_110_11/MIJR15Vol110No11.xml)",
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      "note": "Parsed from NLM article XML (_source/SMPTE/HIGHWIRE/Source Bak/smptej/10.5594_J16428.xml)",
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        "confidence": "medium",
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