Annals of the ICRP
Volume 36, Issue 1 , Pages 41-59 , March 2006

Chapter 3

3.6. References 

  1. Allen LH. Calcium bioavailability and absorption: a review. Am. J. Clin. Nutr. 1982;35:783–808
  2. Ballou JE, Hess JO. Biliary plutonium excretion in the rat. Health Phys. 1972;22:369–372
  3. Barton JC. The absorption of metals as a function of age. In:  Gerber GB,  Métivier H,  Smith H editor. Age-related Factors in Radionuclide Metabolism and Dosimetry. Proc. CEC Workshop, Angers, France, 1986. Lancaster: Martinus Nijhoff; 1987;p. 1–12
  4. Beach RD, Menzies IS, Clayden GS, Scopes JW. Gastrointestinal permeability changes in the preterm neonate. Arch Dis. Child. 1982;57:141–145
  5. Bedford J, Harrison GE, Raymond WHA, Sutton A. The metabolism of strontium in children. BMJ. 1960;1:589–592
  6. Bhattacharyya MH, Larsen RP, Furr HC, Peterson DP, Oldham RD, Moretti ES, et al. Adsorption of Pu, Pb and Cd to mouth surfaces during oral administration to mice. Health Phys. 1985;48:207–213
  7. Bockman DE, Cooper MD. Fine structural analysis of pinocytosis in lymphoid follicle-associated epithelium of chick bursa and rabbit appendix. Fed. Proc. 1971;30:511
  8. Book, S.A., Goldman, M., Parks, N.J., Rosenblatt, L.S., Spangler, W.L., 1983. Strontium-90 and Radium-226 Toxicity: Experimental Design and Current Status. UCD 472-128. Internal Report from Laboratory for Energy-Related Health Research. pp. 2–43.
  9. Brambell FMR. Transmission of Passive Immunity from Mother to Young. Frontiers in Biology 18. Amsterdam: North Holland; 1970;
  10. Bruce RS. Some factors influencing the absorption, retention and elimination of radioruthenium. In: Diagnosis and Treatment of Radioactive Poisoning. Vienna: IAEA; 1963;p. 207–224
  11. Bruce RS, Carr TEF. Studies in the metabolism of carrier-free radio-ruthenium - I. Preliminary investigations. Reactor Sci. Technol. 1961;14:9–17
  12. Burykina LN. The metabolism of radioactive ruthenium in the organism of experimental animals. In:  Letavel AA,  Kurlyandsicaya EP editor. The Toxicology of Radioactive Substances. Vol. 1:Oxford: Pergamon Press; 1962;p. 60–76
  13. Carr T. An attempt to quantitate the short term movement of strontium in the human adult. In:  Lenihan J,  Loutit J,  Martin J editor. Strontium Metabolism. London, UK: Academic Press; 1967;p. 139–148
  14. Clarke RM, Hardy RN. Structural changes and the uptake of polyvinyl pyrrolidone in the small intestine. J. Anat. 1971;108:79–87
  15. Cleymaet R, Bottenberg P, Slop D, Coomans D. In vivo evaluation of the level of lead in human superficial enamel using a double biopsy. Rev. Belge Med. Dent. 1993;48:72–81
  16. Coughtrey, P.J., Thorne M.C., 1983. Radionuclide distribution and transport in terrestrial and quatic ecosystems. A.A. Balkema, Rotterdam, The Netherlands. Vol. 1, pp. 170–210 (Sr); Vol. 3., pp. 275–286 (Sb); Vol. 3, pp. 341–357 (I).
  17. Cross NA, Hillman LS, Allen SH, et al. Calcium homeostasis and bone metabolism during pregnancy, lactation and post-weaning: a longitudinal study. Am. J. Clin. Nutr. 1995;61:514–523
  18. Eisele GR, Mraz F. Absorption of 95Nb from ligated segments of the gastrointestinal tract of the rat. Health Phys. 1981;40:235–238
  19. Fagan EA, Murphy R, Chadwick VS. Measurements of intestinal permeability in human neonates. Clin. Sci. 1981;60:5
  20. Fleischer RL, Raabe OG. Fragmentation of respirable PuO2 particles in water by alpha decay – a mode of dissolution. Health Phys. 1977;32:253
  21. Fritsch P, Moutairou K, Harrison JD. Mechanisms of intestinal absorption of ingested plutonium in neonatal mammals. Radiat. Prot. Dosim. 1992;41:77–82
  22. Fritsch P, Moutairou K, Lataillade G, Beauvallet M, L’Hullier I, Lepage M. Localisation of plutonium retention in the small intestine of the neonatal rat, guinea pig, baboon, and macaca after Pu-citrate ingestion. Int. J. Radiat. Biol. 1988;54:537–543
  23. Fujita M, Yabe A, Akaishi J, Ohtani S. Relationship between ingestion, excretion and accumulation of fallout caesium-137 in man on a long time scale. Health Phys. 1966;12:1649–1653
  24. Furchner JE, Richmond CR, Drake GA. Comparative metabolism of radionuclides in mammals, VII. Retention of 106-Ru in the mouse, rat, monkey and dog. Health Phys. 1971;21:355–365
  25. Gabler WL. Absorption of fluoride through the oral mucosa of rats. Arch. Oral Biol. 1968;13:619–623
  26. Gerber GB, VanHees M, Garten CT, et al. Technetium absorption and turnover in monogastric and polygastric animals. Health Phys. 1989;57:315–319
  27. Ham GJ, Harrison JD. The gastrointestinal absorption and urinary excretion of plutonium in male volunteers. Radiat. Prot. Dosim. 2000;87:267–272
  28. Harduin, J.C., Royer, Ph., Piechowski, J., 1994. Uptake and urinary excretion of uranium after oral administration in man. Proc. CEC/US-DOE/NRPB/IPSN Workshop: Intakes of Radionuclides. September 1993, Bath. Radiat. Prot. Dosim. 53, 245–248.
  29. Harrison JD. The gastrointestinal absorption of the actinide elements. Sci. Total Environ. 1991;100:43–60
  30. Harrison, J.D., Bomford, J.A., David, A.J., 1987. The gastrointestinal absorption of plutonium and americium in neonatal mammals, in: Gerber, G.B., Métivier, H., Smith, H. (Eds.), Age-related Factors in Radionuclide Metabolism and Dosimetry. Proc. CEC Workshop, Angers, France, 1986. Martinus Nijhoff, Lancaster, pp. 27–34.
  31. Harrison JD, Fritsch P. The effect of age on the absorption and intestinal retention of ingested radionuclides. Radiat. Prot. Dosim. 1992;41:71–76
  32. Harrison JD, Leggett RW, Noßke D, Paquet F, Phipps AW, Taylor DM, et al. Reliability of the ICRP’s dose coefficients for members of the public, II. Uncertainties in the absorption of ingested radionuclides and the effect on dose estimates. Radiat. Prot. Dosim. 2001;95:295–308
  33. Harrison JD, Phipps AW. Invited editorial: Gut transfer and doses from environmental technetium. J. Radiol. Prot. 2001;21:9–11
  34. Harrison JD, Popplewell DS, David AJ. The effect of concentration and chemical form on the gastrointestinal absorption of neptunium. Int. J. Radiat. Biol. 1984;46:269–277
  35. Harrison JD, Stather JW. The assessment of doses and effects from the intake of radioactive particles. J. Anat. 1996;189:521–530
  36. Heard MJ, Chamberlain AC. Effects of meals and meal times on uptake of lead from the gastrointestinal tract in humans. Human Toxicol. 1982;1:411–415
  37. Hunt GJ, Leonard DRP, Lovett MB. Transfer of environmental plutonium and americium across human gut. Sci. Total Environ. 1986;53:89–109
  38. Hunt GJ, Leonard DRP, Lovett MB. Transfer of environmental plutonium and americium across the human gut: a second study. Sci. Total Environ. 1990;90:273–282
  39. Hunt GJ, Young AK, Bonfield RA. Transfer across the human gut of environmental technetium in lobsters (homarus gammarus L.) from the Irish Sea. J. Radiol. Prot. 2001;21:21–29
  40. Hursh JB, Neuman WR, Toribara T, Wilson H, Waterhouse C. Oral ingestion of uranium by man. Health Phys. 1969;17:619–621
  41. ICRP, 1979. Limits on intakes of radionuclides for workers. ICRP Publication 30, Pt. 1. Ann. ICRP 2(3/4).
  42. ICRP, 1980. Limits for intakes of radionuclides by workers. ICRP Publication 30, Pt. 2. Ann. ICRP 4(3/4).
  43. ICRP, 1981. Limits for intakes of radionuclides by workers. ICRP Publication 30, Pt. 3. Ann. ICRP 6(2/3).
  44. ICRP, 1986. The metabolism of plutonium and related elements. ICRP Publication 48. Ann. ICRP 16(2/3).
  45. ICRP, 1989a. Age-dependent doses to members of the public from intake of radionuclides. Pt. 1. ICRP Publication 56. Ann. ICRP 20(2).
  46. ICRP, 1989b. Age-dependent doses to members of the public from intake of radionuclides: Part 2. ICRP Publication 67. Ann. ICRP 23 (3/4).
  47. ICRP, 1993a. Age-dependent doses to members of the public from intake of radionuclides. Pt. 2. Ingestion dose coefficients. ICRP Publication 67. Ann. ICRP 23(3/4).
  48. ICRP, 1993b. Age-dependent doses to members of the public from intake of radionuclides: Part 1. ICRP Publication 56. Ann. ICRP 20 (2).
  49. ICRP, 1994a. Human respiratory tract model for radiological protection. ICRP Publication 66. Ann. ICRP 24(1–3).
  50. ICRP, 1994b. Dose coefficients for intake of radionuclides by workers. ICRP Publication 68. Ann. ICRP 24(4).
  51. ICRP, 1995a. Age-dependent doses to members of the public from intake of radionuclides. Pt. 3. Ingestion dose coefficients. ICRP Publication 69. Ann. ICRP 25(1).
  52. ICRP, 1995b. Age-dependent doses to members of the public from intake of radionuclides. Pt. 4. Inhalation dose coefficients. ICRP Publication 71. Ann. ICRP 25(3/4).
  53. ICRP, 2001. Doses to the embryo and fetus from intakes of radionuclides by the mother. ICRP Publication 88. Ann. ICRP 31(1–3).
  54. ICRP, 2004. Doses to infants from ingestion of radionuclides in mothers’ milk. ICRP Publication 95. Ann. ICRP 34(3/4).
  55. Inaba, J., Nishimura, Y., Ichikawa, R., 1984. Effect of age on the metabolism of some important radionuclides in the rat, in: Kaul, A., Neider, R., Pensko, J., Stieve, F.-E, Brunner, H. (Eds.), Radiation Risk Protection, Vol. I. Proc. 6th Int. Congress of IRPA. Fachverband fur Strahlenschutz e.V., Berlin, pp. 481–484.
  56. James HM, Hilburn ME, Blair JA. Effects of meals and meal times on uptake of lead from the gastrointestinal tract in humans. Human Toxicol. 1985;4:401–407
  57. Joel DD, Laissue JA, Lefevre ME. Distribution and fate of ingested carbon particles in mice. J. Reticuloendothel. Soc. 1978;24:477–487
  58. Joel DD, Sordat B, Hess MW, Cottier H. Uptake and retention of particles from the intestine by Peyer’s patches in mice. Experentia. 1984;26:694
  59. Khokhryakov VF, Suslova KG, Kudryavtseva TI, Schadilov AE, Vostroitin VV, Lagounova N, et al. Relative role of plutonium excretion with urine and feces from human body. Health Phys. 2004;86:523–527
  60. Lang S, Raunemaa T. Behavior of neutron-activated uranium dioxide dust particles in the gastrointestinal tract of the rat. Radiat. Res. 1991;126:273–279
  61. Langham, W.H., Bassett, S.H., Harris, P.S., Carter, R.E., 1950. Distribution and Excretion of Pu Administered to Man. Los Alamos Scientific Laboratory, NM, USA.
  62. Larsen, R.P., Bhattacharyya, M.H., Oldham, R.D., Moretti, E.S., Spaletto, M.I., 1981. Continued studies of the gastrointestinal absorption of plutonium in rodents, in: Annual Report for Radiological and Environmental Research Division. ANL-81-85 (Pt. II). Argonne National Laboratory, Illinois, pp. 105–116.
  63. Larsen, R.P., Bhattacharyya, M.H., Oldham, R.D., et al., 1984. Gastrointestinal absorption and retention of plutonium and uranium in the baboon, in: Environmental Research Division Annual Report, July 1982–June 1983. ANL-83-100-Pt. 2. Argonne National Laboratory, Argonne, IL, USA, pp. 51–60.
  64. Larsen, R.P., Orlandini, K.A., 1984. Gastrointestinal absorption of uranium in man, in: Environmental Research Division Annual Report, July 1982–June 1983. ANL-83-100-Pt. 2. Argonnne National Laboratory, Illinois, pp. 46–50.
  65. Lataillade, G., Fritsch, P., Duserre, C., Rateau, G., Verry, M., Métivier, H., 1992. Absorption gastrointestinale du plutonium et du neptunium chez le singe babouin nouveau né. CEA-R-5598. Gif sur Yvette, CEA, pp. 1–19.
  66. Lataillade G, Verry M, Rateau G, Métivier H, Masse R. Plutonium solubility in rat and monkey lungs after inhalation of industrial plutonium oxide and mixed uranium and plutonium oxide. Int. J. Radiat. Biol. 1995;67:373–380
  67. Lecce JG, Broughton CW. Cesation of the uptake of macromolecules by neonatal guinea pig, hamster and rabbit intestinal epithelium and transport in the blood. J. Nutrition. 1973;103:744–750
  68. Le Roy GV, Rust JH, Hasterlik RJ. The consequences of ingestion by man of real and simulated fall-out. Health Phys. 1966;12:449–473
  69. Leggett RW. A model of the retention, translocation, and excretion of systemic Pu. Health Phys. 1985;49:1115–1137
  70. Leggett RW. A generic age-dependent biokinetic model for calcium-like elements. Radiat. Prot. Dosim. 1992;41:183–198
  71. Leggett RW. A retention-excretion model for americium in humans. Health Phys. 1992;62:288–310
  72. Leggett RW. Reliability of the ICRP’s dose coefficients for members of the public. I. Sources of uncertainty in the biokinetic models. Radiat. Prot. Dosim. 2001;95:199–213
  73. Leggett RW. Reliability of the ICRP’s dose coefficients for members of the public. III. Plutonium as a case study of uncertainties in the systemic biokinetics of radionuclides. Radiat. Protect. Dosim. 2003;106:103–120
  74. Leggett, R.W., Eckerman, K.F., 1984. A model for the age-dependent skeletal retention of plutonium, in: Kaul, A., Neider, R., Pensko, J. (Eds.), Radiation Risk Protection. Fachverband fur Strahlenschutz e.V., Berlin, pp. 454–457.
  75. Leggett RW, Harrison JD. Fractional absorption of ingested U in humans. Health Phys. 1995;68:1–15
  76. Leggett RW, Harrison JD. Fractional absorption of ingested uranium in humans. Health Phys. 1995;68:484–498
  77. Leggett RW, Williams LR. A model for the kinetics of potassium in healthy humans. Phys. Med. Biol. 1986;31:23–42
  78. Leggett RW, Williams LR. A biokinetic model for rubidium in humans. Health Phys. 1988;55:685–702
  79. Leggett RW, Bouville A, Eckerman KF. Reliability of ICRP’s systemic biokinetic models. Radiat. Prot. Dosim. 1998;79:335–342
  80. Leggett RW, Eckerman KF, Williams LR. Strontium-90 in bone; a case study in age-dependent dosimetric modelling. Health Phys. 1982;43:307–322
  81. Leggett RW, Williams LR, Melo DR, Lipsztein JL. A physiologically based biokinetic model for cesium in the human body. Sci. Total Environ. 2003;317:235–255
  82. Lengemann FW. Overall aspects of calcium and strontium absorption. In:  Wasserman RH editors. The Transfer of Calcium and Strontium Across Biological Membranes. New York: Academic Press; 1963;p. 85–96
  83. Matsusaka, N., Inaba, J., Ichikawa, R., Ikeda, M., Ohkubo, Y., 1969. Some special features of nuclide metabolism in juvenile mammals. In: Sikov, M.R., Mahlam, D.D. (Eds), Radiobiology of the Fetal and Juvenile Mammal. USAEC, Division of Technical Information Extension, Oak Ridge, TN, USA, pp. 217–226.
  84. McAughey, J.J., Vernon, L., Haines, J., Sanders, T., Clark, R., 1994. Fractional gut absorption of strontium, barium and neodymium following administration of stable isotope tracers, in: Proc. 9th Int. Conf. on Heavy Metals in the Environment. Toronto, 1993.
  85. McClellan, R.O., Bustad, L.K., 1964. Gastrointestinal absorption of 85Sr titanate, in: Hanford Biology Research Annual Report for 1963. Rickland, WA, USA (HW 80500). pp. 100–101.
  86. Métivier H, Madic C, Bourges J, Masse R. Valency five, similarities between plutonium and neptunium in gastrointestinal uptake. In:  Bulman RA,  Cooper JR editor. Speciation of Fission and Activation Products in the Environment. London: Elsevier Applied Science Publishers; 1985;p. 175–178
  87. Métivier H, Masse R, Lafuma J. Metabolism of plutonium introduced as tri-N-butyl phosphate complex in the rat and removal attempts by DTPA. Health Phys. 1983;44:623–634
  88. Métivier H, Masse R, Lafuma J. Effet de la masse sur l’absorption intestinale du neptunium V chez le singe et le rat. Radioprotection. 1983;18:13–17
  89. Mewhinney, J.A., Muggenburg, B.A., McClellan, R.O., Miglio, J.J., 1976. The effect of varying physical and chemical characteristics of inhaled plutonium aerosols on metabolism and excretion, in: Proc. Int. Seminar on Diagnosis and Treatment of Incorporated Radionuclides. IAEA, Vienna, pp. 87–97.
  90. Mussalo-Rauhamma H, Jaakola T, Miettinen JK, Laiho K. Plutonium in Finnish Lapps – an estimate of the gastrointestinal absorption of plutonium by man based on a comparison of the plutonium content of Lapps and Southern Finns. Health Phys. 1984;46:549–559
  91. NEA, 1988. Committee on Radiation Protection and Public Health. Gastrointestinal Absorption of Selected Radionuclides. Report by an NEA expert group. NEA OECD, Paris.
  92. Newton D, Talbot RJ, Kang C, Warner AJ. Uptake of Pu by the human liver. Radiat. Prot. Dosim. 1998;80:385–395
  93. Nomura R. Experimental study on biological effect of cadmium. Cadmium distribution in teeth and various viscera of dogs. Nippon Eiseigaku Zasshi. 1980;35:550–564
  94. Owen RL. Sequential uptake of horseradish peroxidase by lymphoid follicle epithelium of Peyer’s patches in the normal unobstructed mouse intestine: an ultrastructural study. Gastroenterology. 1977;72:440–451
  95. Patten JR, Whitford GM, Stringer GI, Pashley DH. Oral absorption of radioactive fluoride and iodide in rats. Arch. Oral Biol. 1978;23:215–217
  96. Rahola, T., Aaran, R., Miettinen, J.K., 1972. Half-time studies of mercury and cadmium by whole-body counting, in: Assessment of Radioactive Contamination in Man. IAEA-SM-150/13. International Atomic Energy Agency, Vienna, Austria, pp. 553–562.
  97. Refsum SB, Schreiner B. Iron excretion from the goblet cells of the small intestine of man. Scand. J. Gastroenterol. 1980;15:1013–1020
  98. Renaud-Salis V, Lataillade G, Métivier H. Effect of mass, oxidation state and duration of chronic ingestion on plutonium absorption in fed rats. Int. J. Radiat. Biol. 1990;58:691–704
  99. Runkle GE, Snipes MB, McClellan RO, Cuddihy RG. Metabolism and dosimetry of inhaled 106RuO4 in Fischer-344 rats. Health Phys. 1980;39:543–553
  100. Sasser LB, Jarboe GE, Walter BK, Kelman BJ. Absorption of mercury from ligated segments of the rat gastrointestinal tract. Proc. Soc. Exp. Biol. Med. 1978;157:57–60
  101. Shimmins J, Smith D, Nordin B, et al. A comparison between calcium-45 and strontium-85 absorption, excretion and skeletal uptake. In:  Lenihan J,  Louti J,  Martin J editor. Strontium Metabolism. London, UK: Academic Press; 1967;p. 149–160
  102. Smith, V.H., 1970. Fate of ingested 238PuO2 in miniature swine, in: Pacific Northwest Laboratory Annual Report for 1969. Pt. 1. Biomedical Sciences. BNWL-1306. Richland, Washington, pp. 62–63.
  103. Snipes MB. Metabolism and dosimetry of 106Ru inhaled as 106RuO4 by beagle dogs. Health Phys. 1981;41:303–317
  104. Spencer, H., Kramer, L., Norris, C., Samachson, J., 1972. Certain aspects of radiostrontium metabolism in man, in: Lenihan, J.M. (Ed.), Proc. 2nd Int. Symp. Strontium Metabolism, Western Regional Hospital Board, Glasgow, UK, pp. 335–346.
  105. Spencer H, Samachson J, Laszlo D. Metabolism of strontium-85 and calcium-45 in man. Metabol. Clin. Exp. 1960;9:916–925
  106. Stara JF, Nelson NS, Della Rosa RJ, Bustad LK. Comparative metabolism of radionuclides in mammals: a review. Health Phys. 1971;20:113–137
  107. Stather JW, Howden S, Carter RF. A method for investigating the metabolism of the transportable fraction of plutonium aerosols. Phys. Med. Biol. 1975;20:106–109
  108. Stather JW, Harrison JD, David AJ, Sumner SA. The gastrointestinal absorption of plutonium in the hamster after ingestion at low concentrations in drinking water. Health Phys. 1981;41:780–783
  109. Suguri S, Ohtani S, Oshino M, Yanagishita K. The behavior of strontium 85 in a normal man following a single ingestion – application of the whole body counter for the retention. Health Phys. 1963;9:529–535
  110. Sullivan MF. Absorption of actinide elements from the gastrointestinal tract of neonatal animals. Health Phys. 1980;38:173–185
  111. Sullivan MF. Absorption of actinide elements from the gastrointestinal tract of rats, guinea pigs and dogs. Health Phys. 1980;38:159–171
  112. Sullivan, M.F., 1981. Influence of plutonium mass on absorption from the gastrointestinal tract of adult and neonatal rodents, in: Pacific Northwest Laboratory Annual Report for 1980. Pt. 1. Biomedical Sciences. PNL-3700. Richland, Washington, pp.185–186.
  113. Sullivan, M.F., Cross, F.T., Dagle, G.E., 1987. Dosimetry of the gastrointestinal tract, in: Gerber, G.B., Métivier, H., Smith, H. (Eds.), Age-related Factors in Radionuclide Metabolism and Dosimetry. Proc. CEC Workshop, Angers, France, 1986. Martinus Nijhoff, Lancaster, pp. 49–66.
  114. Sullivan, M.F., Miller, B.M., Ryan, J.L., 1982. Gut-related radionuclide studies, in: Pacific Northwest Laboratory Annual Report for 1981. Pt. 1. Biomedical Sciences. PNL-4100. Richland, Washington, pp.119–122.
  115. Sullivan MF, Gorham LS, Miller BM. The effect of X-rays, DTPA and aspirin on the absorption of plutonium from the gastrointestinal tract of rats. Radiat. Res. 1983;94:89–96
  116. Sullivan MF, Miller BM, Gorham LS. Nutritional influences on plutonium absorption from the gastrointestinal tract of the rat. Radiat. Res. 1983;96:580–591
  117. Sullivan MF, Miller BM, Ryan JL. The effect of mass on the gastrointestinal absorption of plutonium and neptunium. Radiat. Res. 1983;94:199–209
  118. Sullivan, M.F., Buschbom, R.L., Miller, R.A., Ruemmler, P.S., Ryan, J.L., 1984a. Gut-related Studies of Radionuclide Toxicity. PNL-5000 Pt1 UC 48. Pacific Northwest Laboratory: Annual Report. Pacific Northwest Laboratory, Battelle, USA, pp. 61–64.
  119. Sullivan MF, Miller BM, Goebel JC. Gastrointestinal absorption of metals (51Cr, 65Zn, 95mTc, 109Cd, 113Sn, 147Pm, 238Pu. by rats and swine. Environ. Res. 1984;35:439–453
  120. Sullivan MF, Ruemmler PS, Ryan JL. Effects of fasting and/or oxidizing and reducing agents on absorption of neptunium from the gastrointestinal tract of mice and adult or neonatal rats. Radiat. Res. 1984;100:519–526
  121. Taylor DM, Bligh PH, Duggan MH. The absorption of calcium, strontium, barium and radium from the gastrointestinal tract of the rat. Biochem J. 1962;83:25–29
  122. Thompson RC, Weeks MH, Hollis L, Ballou JF, Oakley WD. Metabolism of radioruthenium in the rat. Am. J. Roentgen. 1958;79:1026–1044
  123. Udall JN, Pang K, Fritze L, Kleinman R, Walker WA. Development of gastrointestinal mucosal barrier: I. The effect of age on intestinal permeability to macromolecules. Pediatr. Res. 1981;15:241–244
  124. Van Campen DR, Mitchell EA. Absorption of Cu64, Zn65, Mo99 and Fe59 from ligated segments of the rat gastrointestinal tract. J. Nutr. 1965;86:120–124
  125. Wagner MJ. Absorption of fluoride by the gastric mucosa in the rat. J. Dent. Res. 1962;41:667–674
  126. Weeks MH, Katz J, Oakley WD, Ballou JE, George LA, Bustad LK, et al. Further studies on the gastrointestinal absorption of plutonium. Radiat. Res. 1956;4:339–347
  127. Werner, E., Roth, P., Hansen, Ch., 1987. Intestinal absorption of metals, in: Gerber, G.B., Métivier, H., Smith, H. (Eds.), Age-related Factors in Radionuclide Metabolism and Dosimetry. Proc. CEC Workshop, Angers, France, 1986. Martinus Nijhoff, Lancaster, pp. 27–33.
  128. Wesenberg GB, Wesenberg F. Effect of cadmium on the immune response in rats. Environ. Res. 1983;31:413–419
  129. Widdowson EM, Slater EJ, Harrison GE, Stutton A. Absorption, excretion and retention of strontium by breast-fed and bottle-fed babies. Lancet. 1960;2:941–944
  130. Wiseman G. Absorption from the Intestine. London: Academic Press; 1964;
  131. Wrenn MD, Singh NA, Ruth H, Rallison MI, Burleigh DP. Gastrointestinal absorption of soluble uranium from drinking water by man. Radiat. Prot. Dosim. 1989;26:119–122
  132. Yamagata N, Iwashima K, Iinuma TN, Watari K, Nagai T. Uptake and retention experiments of radioruthenium in man – I. Health Phys. 1969;16:159–166

PII: S0146-6453(06)00010-8

doi: 10.1016/j.icrp.2006.03.006

Annals of the ICRP
Volume 36, Issue 1 , Pages 41-59 , March 2006