Effects of palladium addition on emission of mercury vapor from dental amalgam
Tài liệu tham khảo
Vimy, 1985, Intra-oral air mercury released from dental amalgam, J Dent Res, 64, 1069, 10.1177/00220345850640080901
Vimy, 1985, Serial measurements of intra-oral air mercury: estimation of daily dose from dental amalgam, J Dent Res, 64, 1072, 10.1177/00220345850640081001
Berglund, 1988, Determination of the rate of release of intra-oral mercury vapor from amalgam, J Dent Res, 67, 1235, 10.1177/00220345880670091701
Ahmad, 1990, Mercury release from amalgam: a study in vitro and in vivo, Oper Dent, 15, 207
Berglund, 1990, Estimation by a 24-hour study of the daily dose of intra-oral mercury vapor inhaled after release from dental amalgam, J Dent Res, 69, 1646, 10.1177/00220345900690100401
Olsson, 1992, Daily dose calculations from measurements of intra-oral mercury vapor, J Dent Res, 71, 414, 10.1177/00220345920710021201
Berglund, 1993, An in vitro and in vivo study of the release of mercury vapor from different types of amalgam alloys, J Dent Res, 72, 939, 10.1177/00220345930720051601
Goering, 1992, Toxicity assessment of mercury vapor from dental amalgams, Fundam Appl Toxicol, 19, 319, 10.1016/0272-0590(92)90169-I
Boyer, 1988, Mercury vaporization from corroded dental amalgam, Dent Mater, 4, 89, 10.1016/S0109-5641(88)80097-6
Derand, 1989, Mercury vapor from dental amalgams, an in vitro study, Sed Dent J, 13, 169
Eichmiller, 1997, Promising new dental materials on the horizon, Compendium, 18, 254
Blair, 1995, The physical properties of a gallium alloy restorative material, Dent Mater, 11, 277, 10.1016/0109-5641(95)80063-8
Leinfelder, 1994, After amalgam, what? Other materials fall short, J Am Dent Assoc, 125, 586, 10.14219/jada.archive.1994.0066
Washimi, 1969, Optical measurement of mercury activity in an In–Hg alloy, Jpn J Appl Phys, 8, 1268, 10.1143/JJAP.8.1268
Youdelis, 1979, Effect of indium on residual mercury content and compressive strength of amalgam, J Can Dent Assoc, 45, 60
Powell, 1989, Effect of admixed indium on mercury vapor release from dental amalgam, J Dent Res, 68, 1231, 10.1177/00220345890680080301
Okabe, 1994, Reduced mercury vapor release from dental amalgams prepared with binary Hg–In liquid alloys, J Dent Res, 73, 1711, 10.1177/00220345940730110601
O'Brien, WJ US Patent #5,242,305, 1993.
Mahler, 1984, Microprobe analysis of three high-copper amalgams, J Dent Res, 63, 921, 10.1177/00220345840630062301
Mahler, 1990, Effect of Pd on the clinical performance of amalgam, J Dent Res, 69, 1759, 10.1177/00220345900690110901
Chern Lin, 1992, Microstructure of admixed amalgams produced from Pd-containing dispersants, Dent Mater, 8, 85, 10.1016/0109-5641(92)90061-G
Jorgensen, 1980, The mechanism of marginal fracture of amalgam fillings. Acta of amalgams, J Dent Res, 59, 820
Lin, 1994, Metal release from high-copper amalgams containing palladium, Chin Med J, 53, 146
Mahler, 1994, Hg emission from dental amalgam as related to the amount of Sn in the Ag–Hg (γ1) phase, J Dent Res, 73, 1663, 10.1177/00220345940730101201
Guminski, 1990, The Hg–Pd (mercury–palladium) system, Bull Alloy Phase Diagrams, 11, 22, 10.1007/BF02841580
Berdouses, 1995, Mercury release from dental amalgams: an in vitro study under controlled chewing and brushing in an artificial mouth, J Dent Res, 74, 1185, 10.1177/00220345950740050701
Engle, 1992, Quantitation of total mercury vapor released during dental procedures, Dent Mater, 8, 176, 10.1016/0109-5641(92)90078-Q