BirchallA.MuirheadC. R.JamesA. C. (1986). An Analytical Method for Evaluating the Uncertainty in Personal Air Sampling Determinations of Plutonium Intakes. National Radiological Protection Board, NPRB–R187.
2.
CohenN.SpitzH. B.WrennM. E. (1977). Estimation of skeletal burden of bone-seeking radionuclides in man from in vivo scintillation measurements of the head. Health Phys. 33, 831.
3.
GriffithR. V.DeanP. N.AndersonA. L.FisherJ. C. (1978). Fabrication of a tissue-equivalent torso phantom for intercalibration of in vivo transuranic nuclide counting facilities. In: Proceedings of a Symposium on Advances in Radiation Protection Monitoring, Stockholm.
4.
IAEA (1970). IAEA Directory of Whole-Body Radioactivity Monitors, International Atomic Energy Agency, Vienna.
5.
ICRP (1966). ICRP Task Group on Lung Dynamics. Deposition and retention models for internal dosimetry of the human respiratory tract. Health Phys. 12, 173–207.
6.
ICRP (1968). Evaluation of Radiation Doses to Body Tissues from Internal Contamination due to Occupational Exposure. A Report by Committee IV of the International Commission on Radiological Protection, ICRP Publication 10. Pergamon Press, Oxford.
7.
ICRP (1971). The Assessment of Internal Contamination Resulting from Recurrent or Prolonged Uptakes, ICRP Publication 10A. Pergamon Press, Oxford.
8.
ICRP (1972). The Metabolism of Compounds of Plutonium and other Actinides, ICRP Publication 19. Pergamon Press, Oxford.
ICRP (1977a). Recommendations of the International Commission on Radiological Protection, ICRP Publication 26. Ann. ICRP1 (3), Pergamon Press, Oxford.
11.
ICRP (1977b). Radiation Protection in Uranium and other Mines, ICRP Publication 24. Ann. ICRP1 (1), Pergamon Press, Oxford.
12.
ICRP (1978). Statement from the 1978 Stockholm Meeting of the ICRP, ICRP Publication 28. Ann. ICRP2 (1), Pergamon Press, Oxford.
13.
ICRP (1979a). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Part 1. Ann. ICRP2 (3/4), Pergamon Press, Oxford.
14.
ICRP (1979b). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Supplement to Part 1. Ann. ICRP3 (1–4), Pergamon Press, Oxford.
15.
ICRP (1980a). Statement and recommendations of the 1980 Brighton meeting of the ICRP. Ann. ICRP 4 (3/4), Pergamon Press, Oxford.
16.
ICRP (1980b). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Part 2. Ann. ICRP4 (3/4), Pergamon Press, Oxford.
17.
ICRP (1981a). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Part 3. Ann. ICRP6 (2/3), Pergamon Press, Oxford.
18.
ICRP (1981b). Limits for Intakes of Radionuclides by Workers. ICRP Publication 30. Supplement to Part 2. Ann. ICRP5 (1–6), Pergamon Press, Oxford.
19.
ICRP (1982a). General Principles of Monitoring for Radiation Protection of Workers, ICRP Publication 35. Ann. ICRP9 (4), Pergamon Press, Oxford.
20.
ICRP (1982b). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Supplement A to Part 3. Ann. ICRP7 (1–3), Pergamon Press, Oxford.
21.
ICRP (1982c). Limits for Intakes of Radionuclides by Workers, ICRP Publication 30. Supplement B to Part 3. Ann. ICRP8 (1–3), Pergamon Press, Oxford.
22.
ICRP (1984). Statement from the 1984 Meeting of the ICRP, ICRP Publication 40. Ann. ICRP14 (2), Pergamon Press, Oxford.
23.
JohnsF. B., (ed.) (1975). Handbook of Radiochemical Analytical Methods, EPA–68U/4-75-001. U.S. Environmental Protection Agency, Las Vegas.
24.
JohnsonL. J.LawrenceJ. N. P. (1974). Plutonium contaminated wound experience and assay techniques at the Los Alamos Scientific Laboratory. Health Phys. 27, 55–59.
25.
JollyL.McClearenH. A.PodaG. A.WalkeW. P. (1972). Treatment and evaluation of a plutonium-238 nitrate contaminated puncture wound. Health Phys. 23, 333–341.
26.
LaneR. C.McCormickW. B.JefferiesS. J.DanylukP. (1985). Use of six-element arrays of hyperpure germanium detectors in monitoring for internal actinide contamination. In: Assessment of Radioactive Contamination in Man, p. 179, IAEA, Vienna.
27.
LaurerG. R.EisenbudM. (1986). In vivo measurements of nuclides emitting soft penetrating radiations. In: Symposium on Diagnosis and Treatment of Deposited Radionuclides, p. 189, Excerpta Medica Foundation.
28.
MasseF. X.BoltonM. M. (1970). Experience with a low cost chair type detector system for the determination of radionuclide body burdens of MIT radiation workers. Health Phys. 19, 27–35.
29.
PalmerH. E.RiekstsG. A. (1985). High purity planar germanium detectors for in vivo measurement of uranium and transuranic radionuclides. In: Assessment of Radioactive Contamination in Man, p. 93, IAEA, Vienna.
30.
RaholaT.SuomelaM.HenteläR.OjalaJ. (1985). Advantage of using a semiconductor detector for determining the internal radioactive contamination in nuclear power plant workers. In: Assessment of Radioactive Contamination in Man, p. 107. IAEA, Vienna.
31.
SchofieldG. B.HowellsH.WardF.LynnJ. C.DolphinG. W. (1974). Assessment and management of a plutonium contaminated wound case. Health Phys. 26, 541–554.
32.
StevensD. C.MarshallM. (1978). The Purposes, Methods and Accuracy of Sampling for Airborne Particulate Radioactive Materials, AERE-R9028.
33.
StevensD. C.StephensonJ. (1972). A size-selective dust sampler which conforms to the lung model proposed by the ICRP Task Group on lung dynamics, 1966. J. Aerosol. Sci. 3, 14–23.
34.
SumerlingT. J. (1980). Use of a simple body-monitoring system in a pilot study on workers exposed to unsealed γ-ray emitting material. Br. J. Ind. Med. 37, 189–193.
35.
SumerlingT. J.QuantS. P. (1982). Measurements of the human anterior chest wall by ultrasound and estimates of chest wall thickness for use in determination of transuranic nuclides in the lung. Rad. Prot. Dos. 3 (4), 203–210.
The following standard references are used unless otherwise stated:.
38.
International Commission on Radiological Protection, Radionuclide Transformations, ICRP Publication 38, Ann. ICRP, 11–13, Pergamon Press, Oxford (1983).
39.
International Commission on Radiological Protection, Limits for Intakes of Radionuclides by Workers, ICRP Publication 30, Ann. ICRP, 2 (3/4); 4 (3/4); 6 (2/3); Supplements and Index, Pergamon Press, Oxford (1979–1982).
40.
International Commission on Radiological Protection, Reference Man: Anatomical, Physiological and Metabolic Characteristics, ICRP Publication 23, Pergamon Press, Oxford (1975).
41.
CawleyC. N.CannonL. A.MoschellaJ. J. (1984a). Tritium excretion and ambient temperature. Health Phys. 46, 1155–1157.
42.
CawleyC. N.CannonL. A.MoschellaJ. J. (1984b). Models of tritium excretion following prolonged occupational exposure. Health Phys. 47, 102–106.
43.
KinslowR.MoschellaJ. J.CawleyC. N. (1984). A model of urinary tritium following multiple contaminations. Health Phys. 46, 1154–1155.
44.
NCRP (1979). National Council on Radiation Protection and Measurements, Tritium in the Environment, NCRP Report No. 62.
45.
NCRP (1980). National Council on Radiation Protection and Mesurements, Management of Persons Accidentally Contaminated with Radionuclides, NCRP Report No. 65.
46.
TakadaK.FukudaH.HattoriT.AkaiskiJ. (1981). A test to enhance the excretion of tritium in man by excessive water intake. Health Phys. 41, 825–828.
47.
ICRP (1966). ICRP Task Group on Lung Dynamics. Deposition and retention models for internal dosimetry of the human respiratory tract. Health Phys. 12, 173–207.
48.
ICRP (1971). The assessment of internal contamination resulting from recurrent or prolonged uptakes. ICRP Publication 10A, Pergamon Press, Oxford.
49.
JacksonS.DolphinG. W. (1966). The estimation of internal radiation dose from metabolic and urinary excretion data for a number of important radionuclides. Health Phys. 12, 481–500.
50.
SargentT.StaufferH. (1979). Whole-body counting of retention of 67Cu, 32P and 51Cr in man. Int. J. Nucl. Med. Biol. 6, 17–21.
51.
SpiersF. W.BeddoeA. H.KingS. D.HayterC. J.SmithA. H.BurkinshawL.RobertsB. E. (1976). The absorbed dose to bone marrow in the treatment of polycythaemia by 32P. Br. J. Radiol. 49, 133–140.
52.
SargentT.StaufferH. (1979). Whole-body counting of retention of 67Cu, 32P and 51Cr in man. Int. J. Nucl. Med. Biol. 6, 17–21.
53.
MahoneyJ. P.SmallW. J. (1968). Studies on manganese III. The biological half-life of radiomanganese in man and factors which affect this half-life. J. Clin. Invest. 47, 643–653.
54.
Bjorn-RasmussenE.CarneskogJ.CederbladA. (1980). Losses of ingested iron temporarily retained in the gastrointestinal tract. A possible auxiliary mechanism for regulation of iron absorption. Scand. J. Haematol. 25, 124–126.
55.
JohnsonJ. R.DunfordD. W. (1985). Comparison of the ICRP and MIRD models for Fe metabolism in man. Health Phys. 49, 211–219.
56.
MarxJ. J.van den BeldB.van DongenR.StrackeeL. H. (1980). Simultaneous measurement of 59Fe and 51Cr in iron absorption studies using a whole-body scanner with shielding. Nuklearmedizin19, 140–145.
57.
MarxJ. J.van den BeldB. (1981). Mucosal uptake, mucosal transfer and retention of iron: reproducibility of their measurement by whole-body counting and differences between Fe(II) and Fe(III). Nuklearmedizin20, 191–194.
58.
RobertsonJ. S.PriceR. R.BudingerT. F.FairbanksV. F.PollycareM. (1983). Radiation absorbed doses from iron-52, iron-55 and iron-59 used to study ferrokinetics. MIRD Dose Estimate Report No. 11. J. Nucl. Med. 24, 339–348.
59.
HedgeA. G.ThakkerD. M.BhatI. S. (1978). Long-term clearance of inhaled 60Co. Bull. Radiat. Prot. 1, 37–38.
60.
ICRP (1968). Evaluation of radiation doses to body tissues from internal contamination due to occupational exposure. ICRP Publication 10, Pergamon Press, Oxford.
61.
KentN. L.McCanceR. A. (1941). Biochem. J. 35, 877.
62.
LetourneauE. G.JackG. C.McCulloughR. S.HollinsJ. G. (1972). The metabolism of cobalt by the normal human male: whole-body retention and radiation dosimetry. Health Phys. 21, 377–384.
63.
ReelG.JarvelaG. L.RichmondJ. R. (1977). Early clearance of inhaled cobalt. Proc. 4th Int. Cong. Int. Rad. Prot. Assoc. 1413–1416.
64.
SmithT.EdmondsC. J.BarnabyC. F. (1972). Absorption and retention of cobalt in men by whole-body counting. Health Phys. 22, 359–367.
65.
HarrisonG. E. (1981). Whole-body retention of the alkaline earths in adult man. Health Phys. 40, 95–99.
66.
HoltzmanR. B.OrtmanM.KenneA. T. (1975). Retention and excretion of strontium-90 by a former dial painter. In: Radiological and Environmental Research Division Annual Report, ANL-75–60.
67.
ICRP (1968). Evaluation of Radiation Doses to Body Tissues from Internal Contamination due to Occupational Exposure, ICRP Publication 10, Pergamon Press, Oxford.
68.
ICRP (1971). The Assessment of Internal Contamination Resulting from Recurrent or Prolonged Uptakes, ICRP Publication 10A, Pergamon Press, Oxford.
JohnsonJ. R.DunfordD. W.KramerG. H. (1983). Summary of a strontium-89 contamination case. Radiat. Prot. Dosim. 5, 247–249.
71.
MacleodM. A. (1976). 47Ca and 85Sr absorption and excretion compared in normal controls. J.R. Nav. Med. Serv. 62, 17–20.
72.
SnyderW. S.CookM. J.FordM. R. (1964). Health Phys. 10, 171.
73.
WarrenJ. M.SpencerH. (1978). Comparative excretion of strontium isotopes in man. Health Phys. 34, 67–70.
74.
WengerP.CosandeyM. (1976). Retention and excretion of radium-226 and strontium-90 in two doubly contaminated persons. Health Phys. 31, 225–229.
75.
WengerP.SoucasK. (1975). Retention and excretion curves of persons containing 90Sr and 226Ra after a chronic contamination. Health Phys. 28, 145–152.
76.
WaligoraS. J. (1971). Pulmonary retention of zirconium oxide (93Nb) in man and beagle dogs. Health Phys. 20, 89–91.
77.
FurchnerJ. E.RichmondC. R.DrakeG. A. (1971). Comparative metabolism of radionuclides in mammals—VII. Retention of 106Ru in the mouse, rat, monkey and dog. Health Phys. 21, 355–365.
78.
StaraJ. F.NelsonN. S.Della RosaR. J.BustadL. K. (1971). Comparative metabolism of radionuclides in mammals: a review. Health Phys. 20, 113–137.
79.
WebberC. E.HarveyJ. W. (1976). Accidental human inhalation of ruthenium tetroxide. Health Phys. 30, 352–355.
80.
LenteJ. (1976). Animal experiments on the biokinetics of 110mAg and estimation of the radiation dose to man. Thesis, University of Berlin.
81.
NewtonD.HolmesA. (1966). A case of accidental inhalation of zinc-65 and silver-100m. Rad. Res. 29, 403–412.
82.
DunningD. E.SchwartzG. (1981). Variability of human thyroid characteristics and estimates of dose from ingested 131I. Health Phys. 40, 661–675.
83.
JohnsonJ. R. (1978). Summary of bioassay and thyroid monitoring results following an accidental exposure to 125I. Health Phys. 34, 106–107.
84.
KaulA.RoedlerH. D. (1983). Radioactive iodine, biokinetics, mean dose and dose distribution. In: Diagnostics, Therapy and Ecology of Thyroid Diseases, StieveF. E.RoedlerH. D. (eds), Berlin, Reimer.
85.
NCRP (1977). National Council on Radiation Protection and Measurements. Protection of the thyroid gland in the event of releases of radio iodine, NCRP Report No. 55.
86.
RiggsD. S. (1952). Quantitative aspects of iodine metabolism in man. Pharmac. Rev. 4, 248–370.
87.
StatherJ. W.GreenhalghJ. R. (1983). The metabolism of iodine in children and adults. NRPB-R140.
88.
WidmanJ. C.PowsnerE. R.PlutoP. A. (1980). Long-term clearance of iodine from the thyroid. Int. J. App. Radiat. Isot. 31, 375–377.
89.
SwarzG.DunningD. E. (1982). Imprecision in estimates of dose from ingested caesium-137 due to variability in human biological characteristics. Health Phys. 43, 5.
90.
LeggatR. W. (1986). Predicting the retention of caesium in individuals. Health Phys. 50, 747–759.
91.
UchiyamaM. (1977). Estimation of 137Cs body burden in Japanese, 1. The ratio of 137Cs excreted in the urine to that in the total excretion following the continuous intake of 137Cs in fall-out. J. Radiat. Res. 18 (3), 239–246.
92.
UchiyamaM. (1978). Estimation of 137Cs body burden in Japanese, 2. The biological half-life. J. Radiat. Res. 19 (3) 246–261.
93.
CherianM. G.HurshJ. B.ClarksonT. W.AllenJ. (1978). Radioactive mercury distribution in biological fluids and excretion in human subjects after inhalation of mercury vapour. Arch. Env. Health33 (3), 109–114.
94.
HurshJ. B.CherianM. G.ClarksonT. W.VostalJ. J.MailleR. V. (1976). Clearance of mercury (197Hg, 203Hg) vapour inhaled by human subjects. Arch. Env. Health31 (6), 302–309.
95.
NewtonD.FryF. A. (1978). The retention and distribution of radioactive mercury oxide following accidental inhalation. Ann. Occup. Hyg. 21 (1), 21–32.
96.
CosandeyM.WengerP. (1977). Long-term radium retention in contaminated dial painters. Health Phys. 33, 221–225.
97.
ICRP (1971). The Assessment of Internal Contamination Resulting from Recurrent or Prolonged Uptakes. ICRP Publication 10A, Pergamon Press, Oxford.
98.
ICRP (1973). ICRP Task Group on Alkaline Earth Metabolism in Adult Man. ICRP Publication 20, Pergamon Press, Oxford.
99.
KlemmC.MichelK.RoseE.MeringdalJ. (1970). Storage and excretion of radium-224 (thorium-X) during treatment of ankylosing spondylitis. Z. Rheumaforsh29 (7), 234–240.
100.
MuthH.OberhausenE. (1963). Physical measurements and clinical findings of persons with radium burdens. In: Assessment of Radioactivity in Man, Vol II, p. 211–223, IAEA, Vienna.
101.
RundoJ.HoltzmanR. B. (1976). Comparison of the late excretion of 226Ra and 239Pu by man. In: Health Effects of Plutonium and Radium, WebsterS. S. (ed). Salt Lake City, University of Utah.
102.
RundoJ.KeaneA. T.EsslingM. A. (1984). Long-term retention of radium in female former dial workers. In: Proceedings European Late Effects Projects Conference on Metals in Bone. Angers, France.
103.
SchlenkerR. A.KeaneA. T.HoltzmanR. B. (1982). The retention of 226Ra in human soft tissue and bone; implications for the ICRP 20 alkaline earth model. Health Phys. 42, 671–693.
104.
TooheyR. E.KeaneA. T.RundoJ. (1983). Measurement techniques for radium and the actinides in man at the Center for Human Radiobiology. Health Phys. 44 (Suppl. 1), 323–341.
105.
Van der BorghtO.ColardJ.BoulengerR. (1972). Human faecal 226Ra excretion shortly after a RaSO4 dust contamination, with alginate treatment. Health Phys. 23, 240–243.
106.
WengerP.SoucasK. (1975). Retention and excretion curves of persons containing 90Sr and 226Ra after a chronic contamination. Health Phys. 28, 145–152.
107.
WengerP.CosandeyM. (1976). Retention and excretion of radium-226 and strontium-90 in two doubly contaminated persons. Health Phys. 31, 225–229.
108.
ICRP (1971). The Assessment of Internal Contamination Resulting from Recurrent or Prolonged Uptakes. ICRP Publication 10A, Pergamon Press, Oxford.
109.
StoverB. J.AthertonD. R.KellerN.BusterD. S. (1960). Metabolism of the 228Th decay series in adult beagle dogs, 1. 228Th (RdTh). Radiat. Res. 12, 657–671.
110.
StoverB. J.AthertonD. R.BusterD. S.BruengerF. W. (1965). The 228Th decay series in adult beagles: 224Ra, 212Pb and 212Bi in selected bones and soft tissues. Radiat. Res. 26, 132–145.
111.
ACGIH (1968). American Conference of Governmental Industrial Hygienists. Threshold Limit Values in airborne contaminants for 1968, recommended and intended values. St Louis, Missouri.
112.
ACGIH (1983). American Conference of Governmental Industrial Hygienists. Threshold Limit Values for chemical substances and physical agents in the work environment with intended changes for 1983–84. Cincinnati, Ohio.
113.
AvadhanulaM. R.ChatterjeeR. M.HealeyG. J.HorvathF. J.MeasuresM. P.StackerH.PomrayC.JohnsonJ. R.DunfordD. W. (1985). Canadian uranium fuel fabrication study: I. Intake, retention and excretion monitoring results. II. Comparison of results with metabolic models. In: Proc. Symp. Assessment of Radioactive Contamination in Man 1984, p. 297–323. IAEA, Vienna.
114.
BobackM. W. (1976). A review of uranium excretion and clinical urinalysis data in accidental exposure cases. In: Conference on Occupational Health Experience with Uranium. Washington D.C., U.S. Energy Research and Development Administration.
115.
ChalabreysseJ. (1970). Etude et resultats d'examens effactues a la suite d'une inhalation de composes dits solubles d'uranium naturel. Radioprotection5, 1–17, 305–310.
116.
EidsonA. F.GriffithW. C. (1984). Techniques for yellowcake dissolution studies in vitro and their use in bioassay interpretation. Health Phys. 46, 151–163.
117.
FrostS. E.NeillW. (1985). Internal dosimetry in the Canadian uranium industry. In: Proc. Symp. Assessment of Radioactive Contamination in Man 1984, p. 285–296. Vienna.
118.
HSE (1980). Health and Safety Executive. Threshold limit values 1980. Guidance Note 15/80. London, HMSO.
119.
HeidK. R.WalshW. P.HoustonJ. R. (1976). Uranium in man based on urinary excretion data. In: Conference on Occupational Health Experience with Uranium. Washington D.C., U.S. Energy Research and Development Administration.
120.
HurshJ. B.SpoorN. L. (1973). Data on man. In: Uranium, Plutonium, Transplutonium Elements, (eds) HodgeH. C.StannardJ. N.HurshJ. B., p. 197–239. Springer-Verlag, Berlin.
121.
ICRP (1964). International Commission on Radiological Protection, Publication 6, Recommendation of the ICRP, Pergamon Press, Oxford.
122.
KeaneA. T.PolednakA. P. (1983). Retention in the chest: implications of findings in vivo and postmortem. Health Phys. 44 (Suppl. 1), 391–402.
123.
LaneR. C.McCormickW. B.JefferiesS. J.DanylukP. (1985). Use of six-element arrays of hyperpure germanium detectors in monitoring for internal actinide contamination. In: Proc. Symp. Assessment of Radioactive Contamination in Man 1984, p. 79–91. IAEA, Vienna.
124.
LawrenceJ. N. P. (1984). Uranium internal exposure evaluation based on urine assay data. LA-10246-MS.
125.
MooreR. H.KathrenR. L. (1985). A World War II uranium hexafluroide inhalation event with pulmonary implications for today. J. Occup. Med. 27 (10), 753–756.
126.
MorrowP. E.GibbF. R.LeachL. J. (1966). The clearance of UO2 dust from the lungs following single and multiple inhalation exposures. Health Phys. 12, 1217–1223.
127.
MorrowP. E.GibbF. R.BeiterH. D. (1972). Inhalation studies of uranium trioxide. Health Phys. 23, 273–280.
128.
OJEC (1980). Official Journal of the European Communities. L246, Vol 23, Luxembourg: Office for Official Publications of the European Communities.
129.
PalmerH. E.RiekstsG. A. (1985). High-purity planar germanium detectors for in vivo measurement of uranium and transuranic radionuclides. In: Proc. Symp. Assessment of Radioactive Contamination in Man 1984, p. 93–106. IAEA, Vienna.
130.
PomroyC.NoelL. (1981). Retention of uranium thorax burdens in fuel fabricators. Health Phys. 41, 393–400.
131.
PomroyC.MalmH. (1985). High purity germanium detectors for in vivo measurements of uranium and thorium. In: Proc. Symp. Assessment of Radioactive Contamination in Man 1984, p. 69–78. IAEA, Vienna.
132.
SchieferdeckerH.DilgerH.DonerfelH.RudolphW.AntonR. (1985). Inhalation of U aerosols from UO2 fuel element fabrication. Health Phys. 48, 29–48.
133.
StradlingG. N.StatherJ. W.StrongJ. C.SumnerS. A.TowndrowC. G.MoodyJ. C.LennoxA.SedgwickD.CookeN. (1985a). Metabolism of some industrial uranium tetrafluorides after deposition in the rat lung. Human Toxicol. 4, 159–168.
134.
StradlingG. N.StatherJ. W.EllanderM.SumnerS. A.MoodyJ. C.TowndrowC. G.HodgsonA.SedgwickD.CookeN. (1985b). Metabolism of an industrial uranium trioxide dust after deposition in the rat lung. Human Toxicol. 4, 563–572.
135.
WiseK. (1984). Human variability and the uncertainty of committed dose for uranium. Radiat. Prot. Aust. 2 (1), 35–40.
136.
AdamsN.FellT. P. (1985). Developments in the interpretation of plutonium-in-urine monitoring. In: Assessment of Radioactive Contamination in Man 1984, p. 257–264, IAEA, Vienna.
137.
AdamsN. (1986). Inference of uptake and retention of plutonium from its cumulative urinary excretion and post mortem autopsy data. Rad. Prot. Dosim. 14 (3), 219–222.
138.
BirchallA.MuirheadC. R.JamesA. C. (1986). An Analytical Method for Evaluating the Uncertainty in Personal Air Sample Determinations of Plutonium Intakes. NRPB-R187.
139.
BreuerF.ClementeG. F.StrambiE.TestaC. (1980). A case of internal contamination with plutonium oxide. In: Proceedings 5th Symposium. IRPA.
140.
DarleyP. J. (1985). The effect of particle collection statistics on the estimation of airborne contamination levels. In: Second International Workshop on Lung Dosimetry, Cambridge. Proceedings to be published.
141.
DurbinP. W. (1972). Plutonium in man: a new look at the old data. In: Radiobiology of Plutonium, StoverB. J.LeeW. S. S. (eds). The J.W. Press, Salt Lake City.
142.
HallR. M.PodaG. A.FlemingR. R.SmithJ. A.AikenS. C. (1978). A mathematical model for estimation of plutonium in the human body from urine data. Health Phys. 34, 419–431.
143.
HeidK. R. (1983). A comparison of systemic burdens at autopsy to estimates based on health physics data for selected plutonium workers. Health Phys. 44 (Suppl. 1), 477.
144.
ICRP (1972). The Metabolism of Compounds of Plutonium and Other Actinides. ICRP Publication 19, Pergamon Press, Oxford.
145.
ICRP (1986). The Metabolism of Plutonium and Related Elements. ICRP Publication 48, Ann. ICRP, 16, 2/3.
146.
ICRP (in press). Limits for Intakes of Radionuclides by Workers. ICRP Publication 30, Part 4. Ann. ICRP, 19, 4.
147.
JechJ. J.AndersenB. V.HeidK. R. (1972). Interpretation of human urinary excretion of plutonium for cases treated with DTPA. Health Phys. 22, 787–792.
148.
JonesS. R. (1985). Derivation and validation of a urinary excretion function for plutonium applicable over tens of years post uptake. Rad. Prot. Dos. 11, 19–27.
149.
LanghamW. H.BassettS. H.HarrisP. S.CarterR. E. (1980). Distribution and excretion of plutonium administered intravenously to man. Health Phys. 38, 103–1060 (originally published at Los Alamos Scientific Laboratory Report—LA-1151).
150.
LawrenceJ. N. P. (1978). A History of PUQFUA Plutonium Body Burden (Q) from Urine Assays, Los Alamos Scientific Laboratory Report LA-7403-H.
151.
LawrenceJ. N. P. (1987). Some further PUQFUA studies. In: Proceedings of the Department of Energy Workshop on Radiobioassay and Internal Dosimetry, PNL-SA-14043, CONF-860146, UC-41.
152.
LeggetR. W. (1985). A model of the retention, translocation and excretion of systemic plutonium. Health Phys. 49 (6) 1115–1137.
153.
MossW. D.GautierM. A. (1985). Additional short-term plutonium urinary excretion data for the 1945–1947 plutonium injection studies. In: Occupational Health and Environmental Research 1983: Health Safety and Environment Division, Los Alamos Scientific Laboratory Report LA-10365-PR.
154.
NenotJ. C.StatherJ. W. (1979). The Toxicity of Plutonium, Americium and Curium. Commission of the European Communities, Pergamon Press, Oxford.
155.
OhlenschlaegerL.SchieferdeckerH.Schmidt-MartinW. (1984). Systemic burden and body burden of Pu in man: Comparison of results from bioassay and autopsy. Health Phys. 46, 833–838.
156.
ParkinsonW. W.HenleyL. C. (1981). A proposed long-term excretion equation for plutonium. Health Phys. 40, 327–331.
157.
RamsdenD. (1983). Modifications to the ICRP model for inhaled plutonium oxide based on the observed lung clearance and urinary excretion. In: Current Concepts and Lung Dosimetry, (FisherD. R., ed.), p. 116–126. Technical Information Centre, U.S. Department of Energy.
158.
RundoJ.StarzykP. M.SedletJ.LarsenR. P.OldhamR. N.RobinsonJ. J. (1971). The excretion rate and retention of plutonium 1000 days after acquisition. In: Diagnosis and Treatment of Incorporated Radionuclides, IAEA, Vienna.
159.
SchofieldG. B. (1980). Biological control in a plutonium production facility. Br. J. Radiol. 53, 398.
160.
TaylorN. A. (1985). Computer methods for assessment of uptake from prolonged occupational exposure. In: Assessment of Radioactive Contamination in Man 1984, p. 445–458, IAEA, Vienna.
161.
VoelzG. L.HemplemannL. M.LawrenceJ. N. P.MossW. D. (1979). A 32-year follow-up of Manhattan Project plutonium workers. Health Phys. 37, 445–485.
162.
VoillequéP. G. (1970). AERIN, a code for acute aerosol inhalation exposure calculations. Health Phys. 19, 427–432.
163.
CohenN.SassoT. L.WrennM. E. (1979). Metabolism of americium-241 in man: an unusual case of internal contamination of a child and his father. In: Radioactivity Studies Progress Report, New York University.
164.
EdvardssonK. A.LindgrenL. (1975). Elimination of americium-241 after a case of accidental inhalation. In: Diagnosis and Treatment of Incorporated Radionuclides, Vienna.
165.
FasiskaB. C.BohningD. E.BrodskyA.HormJ. (1971). Urinary excretion of americium-241 under DTPA therapy. Health Phys. 21, 523–529.
166.
FryF. A. (1976). Long-term retention of americium-241 following accidental inhalation. Health Phys. 31 (1), 13–20.
167.
GriffithW. C.McWhinneyJ. A.MuggenburgB. A.BoeckerB. B.CuddihyR. S. (1981). Model for estimating body burdens of 241Am from excretion analysis. In: Inhalation Toxicology Research Institute Annual Report.
168.
ICRP (1986). The Metabolism of Plutonium and Related Elements. ICRP Publication 48, Ann. ICRP, 16, 2/3.
169.
ICRP. Limits for Intakes of Radionuclides by Workers. ICRP Publication 30, Part 4. Ann. ICRP, in press.
170.
SandersS. M. (1974). Excretion of 241Am and 244Cm following two cases of accidental inhalation. Health Phys. 27 (4), 359–365.
171.
SchofieldG. B.HowellsH.WardF.LynnJ. C.DolphinG. W. (1974). Assessment and management of a plutonium contaminated wound case. Health Phys. 26, 541–554.
172.
TooheyR. E.WalkupR. E.LarsenR. P.OldhamR. D. (1968). Urinary excretion rate of 241Am produced in vivo. Radiological and Environmental Research Division Annual Report, ANL-79–65.
173.
SandersS. M. (1974). Excretion of 241Am and 244Cm following two cases of accidental inhalation. Health Phys. 27 (4), 359–365.
174.
ICRP (1986). The Metabolism of Plutonium and Related Elements. ICRP Publication 48. Ann. ICRP, 16, 2/3.
175.
NewtonD.EagleM. C. (1972). The measurement of californium-252 in vivo. Health Phys. 23, 817.
176.
PodaG. A.HallR. M. (1975). Two californium-252 inhalation cases. Health Phys. 29, 407–409.
177.
RundoJ.SedletJ. (1973). Retention and elimination of berkelium-249, californium-249 following acute accidental inhalation. Radiological and Environmental Research Division Annual Report, ANL-8060.
178.
PiechowskiJ.MenouxB. (1984). Rétention et Excrétion des Radionucléides après Incorporation par Inhalation chez l'Homme Adulte, CEA-R-5266.
179.
PiechowskiJ.MenouxB. (1985). Protocole de Surveillance Individuelle pour les Contaminations par Inhalation de Radionucleides en Milieu Professionnel, CEA-R-5305.