Evaluation of Internal Doses of Mercury at Intermittent Exposure to Elemental Mercury
279
Cheri an MG, Hursh JB, Clarkson TW, Allen JA (1978) Radioactive mercury distribution in biological
fluids and excretion in human subjects after inhalation of mercury vapour. Arch Environ Health
33:109-114
Horvat M (1989) Development and study of analytical methods for determination oflow level mercury
concentration and its application in analysis of biological and other environmental samples. Ph. D.
Thesis University of Ljubljana, Siovenija
Hursh JB, Clarkson TW, Cherian MG, Vostal JV, Maille RV (1976) Clearance of mercury (HgI97,
Hg203) vapor inhaled by human subjects. Arch Environ Health 31:302-309
Kellershohn C, Comar D, Poec C LE (1965) Determination of the mercury content of human blood by
activation analysis. J Lab Clin Med 66:169-176
Kobal AB (1991) Occupational exposure to elemental mercury and its influence on mercury in blood,
erythrocytes, plasma, exhaled breath and urine, and catalase activity in erythrocytes. Ph. D. Thesis
University of Ljubljana, Siovenija
Kobal AB (1994) Quicksilber aus Idrija-historisch und aktuell-eine arbeitsmedizinische Betrachtung.
Zentralbl Arbeitsmed 44:200-210
Kobal AB, Dizdarevic T (1996) The health safety programme for workers exposed to elemental
mercury at the mine in Idrija. 4th Int Conf on Mercury as a global pollutant, Congress Centre
Hamburg, Germany, 4-8 Aug 1996, Abstracts p 16
Kosta L, Byrne AR (1969) Activation analysis of mercury in biological samples at nanogram levels.
Talanta 16:1297-1303
Lauwerys R, Buchet JP (1973) Occupational exposure to mercury vapors and biological action. Arch
Environ Health 27:65-68
Nakaaki K, Fukobari S, Tada (1975) An experimental study of inorganic mercury vapour exposure.
J Sci Lab 12:705-716
Piotrowski 1, Trojanowska B, Mozilnicka EM (1975) Excretion kinetics and variabilty of urinary
mercury in workers exposed to mercury vapor. Int Arch Occup Environ Health 35:245-256
Roels H, Abdeladim S, Ceulemans E, Lauwerys R (1987) Relationships between the concentrations of
mercury in air and in blood or urine in workers exposed to mercury vapour. Ann Occup Hyg 2:135145
Salls ten G, Barregard L, Schiitz A (1993) Decrease in mercury concentration in blood after long-term
exposure: a kinetic study of chloralkali workers. Br J Ind Med 50:814-821
Schaller KH, Triebig G (1984) Personenbezogene Probennahme von Quecksilberdampfen am
Arbeitsplatz. Arbeitsmed Sozialmed Praventivmed 19:289-292
Suzuki T, Miyama T, Katsunuma H (1970) Mercury contents in the red cells, plasma, urine and hair
from workers exposed to mercury vapour. Ind Health 8:39-47
Vokac Z, Gundersen N, Magnus P, Jebens E, Bakka T (1980) Circadian rhythnicity of the urinary
excretion of mercury, potassium and catecholamines in unconventional shift-work systems. Scand
J Work Environ Health 6:188-196
World Health Organization (1976) Environmental health criteria I:Mercury. WHO, Geneva
279
Cheri an MG, Hursh JB, Clarkson TW, Allen JA (1978) Radioactive mercury distribution in biological
fluids and excretion in human subjects after inhalation of mercury vapour. Arch Environ Health
33:109-114
Horvat M (1989) Development and study of analytical methods for determination oflow level mercury
concentration and its application in analysis of biological and other environmental samples. Ph. D.
Thesis University of Ljubljana, Siovenija
Hursh JB, Clarkson TW, Cherian MG, Vostal JV, Maille RV (1976) Clearance of mercury (HgI97,
Hg203) vapor inhaled by human subjects. Arch Environ Health 31:302-309
Kellershohn C, Comar D, Poec C LE (1965) Determination of the mercury content of human blood by
activation analysis. J Lab Clin Med 66:169-176
Kobal AB (1991) Occupational exposure to elemental mercury and its influence on mercury in blood,
erythrocytes, plasma, exhaled breath and urine, and catalase activity in erythrocytes. Ph. D. Thesis
University of Ljubljana, Siovenija
Kobal AB (1994) Quicksilber aus Idrija-historisch und aktuell-eine arbeitsmedizinische Betrachtung.
Zentralbl Arbeitsmed 44:200-210
Kobal AB, Dizdarevic T (1996) The health safety programme for workers exposed to elemental
mercury at the mine in Idrija. 4th Int Conf on Mercury as a global pollutant, Congress Centre
Hamburg, Germany, 4-8 Aug 1996, Abstracts p 16
Kosta L, Byrne AR (1969) Activation analysis of mercury in biological samples at nanogram levels.
Talanta 16:1297-1303
Lauwerys R, Buchet JP (1973) Occupational exposure to mercury vapors and biological action. Arch
Environ Health 27:65-68
Nakaaki K, Fukobari S, Tada (1975) An experimental study of inorganic mercury vapour exposure.
J Sci Lab 12:705-716
Piotrowski 1, Trojanowska B, Mozilnicka EM (1975) Excretion kinetics and variabilty of urinary
mercury in workers exposed to mercury vapor. Int Arch Occup Environ Health 35:245-256
Roels H, Abdeladim S, Ceulemans E, Lauwerys R (1987) Relationships between the concentrations of
mercury in air and in blood or urine in workers exposed to mercury vapour. Ann Occup Hyg 2:135145
Salls ten G, Barregard L, Schiitz A (1993) Decrease in mercury concentration in blood after long-term
exposure: a kinetic study of chloralkali workers. Br J Ind Med 50:814-821
Schaller KH, Triebig G (1984) Personenbezogene Probennahme von Quecksilberdampfen am
Arbeitsplatz. Arbeitsmed Sozialmed Praventivmed 19:289-292
Suzuki T, Miyama T, Katsunuma H (1970) Mercury contents in the red cells, plasma, urine and hair
from workers exposed to mercury vapour. Ind Health 8:39-47
Vokac Z, Gundersen N, Magnus P, Jebens E, Bakka T (1980) Circadian rhythnicity of the urinary
excretion of mercury, potassium and catecholamines in unconventional shift-work systems. Scand
J Work Environ Health 6:188-196
World Health Organization (1976) Environmental health criteria I:Mercury. WHO, Geneva
