AlpenE. L.Powers-RisiusP. (1981). The relative biological effect of high-LET charged particles for spermatogonial killing. Radiat. Res. 88, 132–143.
2.
AtkinsH. L.FairschildR. G.RobertsonJ. S. (1972). Dose-rate effects on RBE of californium and radium reactions of pig skin. Radiology103, 439–446.
3.
BairW. J.RichmondC. R.WacholzB. W. (1974). A radiobiological assessment of the spatial distribution of radiation dose from internal plutonium. USAEC, WASH-1320.
4.
BairW. J.MétivierH.ParkJ.MasseR.StevensD. L.LafumaJ.WatsonC. R.NolibeD. (1980). Comparison of early mortality in baboons and dogs after inhalation of 239PuO2. Radiat. Res. 82, 588–610.
5.
BarendsenG. W. (1967). Mechanisms of action of different ionizing radiations on the proliferative capacity of mammalian cells. In: Theoretical and Experimental Biophysics, Vol. 1, pp. 167–231 (ColeA., ed.). Dekker, New York.
6.
BarendsenG. W. (1968). Responses of cultured cells, tumours and normal tissues to radiations of different linear energy transfer. In: Current Topics in Radiation Research, Vol. 4, pp. 293–356 (EbertHoward, eds). North-Holland Publishing Company, Amsterdam.
7.
BarendsenG. W. (1979). Influence of radiation quality on the effectiveness of small doses for induction of reproductive death and chromosome aberrations in mammalian cells. Int. J. Radiat. Biol. 36, 49–63.
8.
BarendsenG. W. (1982). Dose fractionation, dose rate and iso-effect relationships for normal tissue responses. Int. J. Radiat. Oncol. Biol. Phys. 8, 181–197.
9.
BarendsenG. W. (1984). Dose—effect relationships for various responses of mammalian cells to radiations of different linear energy transfer. J. Soc. Radiol. Prot. 4, 143–152.
10.
BatemanJ. L.JohnsonH. A.BondV. P.RossiH. H. (1968). The dependence of RBE on the energy of fast neutrons for spermatogonia depletion in mice. Radiat. Res. 35, 86–101.
11.
BatemanJ. L.RossiH. H.KellererA. M. (1972). Dose-dependence of fast neutron RBE for lens opacification in mice. Radiat. Res. 51, 381–390.
12.
BattermannJ. J. (1982). Results of d + T fast neutrons on advanced tumours of bladder and rectum. Int. J. Radiat. Oncol. Biol. Phys. 8, 2159–2164.
13.
BattermannJ. J.HartG. A. M.BreurK. (1981). Dose—effect relations for tumour control and complication rate after fast neutron therapy for pelvic tumours. Br. J. Radiol. 4, 899–904.
14.
BEIRIV (1988). Health risks of radon and other internally deposited alpha emitters. Committee on the Biological Effects of Ionizing Radiation. National Academy Press, Washington, DC.
15.
BewleyD. K. (1971). Physical characteristics of fast neutron beams. Eur. J. Cancer, 99–104.
16.
BianchiM.QuintilianiM.BaarliJ.SullivanA. H. (1969). Survival of mouse type-B spermatogonia for the study of the biological effectiveness of very high-energy neutrons. Int. J. Radiat. Biol. 15, 185–189.
17.
BianchiM.EbertM.KeeneJ. P.QuintilianiM. (1972). Survival of type A and B spermatogonia in the mouse testis after exposure to high dose-rates of electrons. Int. J. Radiat. Biol. 22, 191–195.
18.
BianchiM. (1983). Cytotoxic insult to germinal tissue. Part I. Testis. In: Cytotoxic Insult to Tissue: Effects on Cell Lineages, pp. 259–307 (PottenC. S.HendryJ. H., eds). Churchill Livingstone, Edinburgh.
19.
BirdR. P.RohrigN. M.ColvettR. C.GeardC. R.MarinoS. (1980). Inactivation of synchronized Chinese hamster V-79 cells with charged particle track segments. Radiat. Res. 82, 277–290.
20.
BlakeleyE. A.NgoF. Q. H.CurtisS. B.TobiasC. A. (1984). Heavy ion radiobiology: cellular studies. Adv. Radiat. Biol. 11, 295–389.
21.
BoeckerB. B.HahnF. F.MuggenburgB. A.GuilmetteR. A.GriffithW. C.McClellanR. O. (1988). The relative effectiveness of inhaled alpha- and beta-emitting radionuclides in producing lung cancer. In: Proc. Seventh Int. Congress of IRPA, Sidney, 10–17 April 1988. Radiation Protection Practice, Vol. 11.
22.
BonnettD. E.BlakeS. W.ShawJ. E.BewleyD. K. (1988). The Clatterbridge high energy neutron facility: specification and performance. Br. J. Radiol. 61, 38–46.
23.
BoozJ. (1976). Microdosimetric spectra and parameters of low-LET radiations. In: Proc. Fifth Symposium on Microdosimetry, pp. 311–346 (BoozJ.EbertH. G.SmithB. G. R., eds). EUR5452d-e-f-Commission of the European Communities, Luxembourg.
24.
BreiterN.KneschaurekP.BurgerG.HuckowskiJ.TrottK. R. (1986). The RBE for fast neutrons (2 MeV) for chronic radiation damage to the large bowel of rats after single dose and fractionated irradiation. Int. J. Radiat. Biol. 49, 1031–1038.
25.
BroerseJ. J.BarendsenG. W.Van KersenG. R. (1968). Survival of cultured human cells after irradiation with fast neutrons of different energies in hypoxic and oxygenated conditions. Int. J. Radiat. Biol. 13, 559–572.
26.
BroerseJ. J.BarendsenG. W. (1973). Relative biological effectiveness of fast neutrons for effects on normal tissues. Current Topics in Radiation Research Quarterly8, 305–350.
27.
CaswellR. S.CoyneJ. J. (1976). Microdosimetric spectra and parameters of fast neutrons. In: Proc. Fifth Symp. On Microdosimetry, pp. 97–126 (BoozJ.EbertH. G.SmithB. G. R., eds). EUR5452d-e-f-Commission of the European Communities, Luxembourg.
28.
CatterallM.BewleyD. K. (1979). Radiotherapy with Fast Neutron Beams. Academic Press.
29.
CemberH.StemmerK. (1964). Lung cancer from radioactive cerium chloride. Health Phys. 10, 43–48.
30.
ChanP. C.LeukoE.LiscoH.AdelsteinS. J. (1976). The radiotoxicity of I-125 in mammalian cells. Radiat. Res. 67, 332–343.
31.
CurtisS. B.SchillingW. A.TenfordeT. S.CrabtreeS. F.HowardJ.LymanJ. T. (1982). Survival of oxygenated and hypoxic tumour cells in the extended-peak regions of heavy charged-particle beams. Radiat. Res. 90, 292–309.
32.
DavidsJ. A. G. (1970). Bone marrow syndrome in CBA mice exposed to fast neutron of 1.0 MeV mean energy. Effect of syngenic bone-marrow transplantation. Int. J. Radiat. Biol. 17, 173–179.
33.
DeanF. K.BushongS. C.PrasadN.BrineyS. (1972). The relative biological effectiveness of californium-252 on acute mammalian cell lethality. Radiology104, 699–703.
34.
DenekampJ.FowlerJ. F.KrachtK.ParnellC. J.FieldS. B. (1966). Recovery and repopulation in mouse skin after irradiation with cyclotron neutrons as compared with 250 kVp X-rays or 15 MeV electrons. Radiat. Res. 29, 71–84.
35.
DenekampJ.JoinerM. C.MaughanR. L. (1984). Neutron RBEs for mouse skin at low doses per fraction. Radiat. Res. 98, 317–322.
36.
De Ruiter-BootsmaA.KramerM. F.De RoojiD. G.DavidsJ. A. G. (1976). Response of stem cells in the mouse testis to fission neutrons of 1 MeV mean energy and 300 kV x-rays; methodology, dose—response studies, relative biological effectiveness. Radiat. Res. 67, 56–68.
37.
Dia PaoloM.BianchiM.BaarliJ. (1978). Lens opacification in mice exposed to 14 MeV neutrons. Radiat. Res. 73, 340–350.
38.
Di PaoloM.CaffarelliV.CoppolaM.PorroF.QuintilianiM.BaarliJ.BianchiM.SullivanA. H. (1980). Biological responses to various neutron energies from 1 to 600 MeV. 1. Testis weight loss in mice. Radiat. Res. 84, 444–452.
39.
DixonB. (1969). The effect of radiation on the growth of vertebrae in the tails of rats. III. The responses to cyclotron neutrons. Int. J. Radiat. Biol. 15, 541–548.
40.
DobsonR. L.StraumeT.KwanT. C. (1987). Radiation damage in oocytes and genetic risk in the female. In: Radiation Research. Proc. 8th Int. Congress of Radiation Research, Edinburgh, 1987, Vol. 1, pp. 202–207 (FieldenE. M.FowlerJ. F.HendryJ. H.ScottD., eds). Taylor and Francis.
41.
DoeneckeF.BeltJ. H. (1931). Frankfurt Z. Path., 42, 161, 170. Quoted in: H. Spencer, Pathology of the Lung. Pergamon Press, Oxford, 1973.
42.
DouglasB. G.FowlerJ. F., (1976). The effect of multiple small doses of x-rays on skin reactions in the mouse and a basic interpretation. Radiat. Res. 66, 401–426.
43.
DownJ. D.SteelG. G. (1983). The expression of early and late damage after thoracic irradiation: a comparison between CBA and C57B1 mice. Radiat. Res. 96, 603–610.
44.
DuncanW.ArnotS. J.OrrJ. A.KerrG. R. (1982). The Edinburgh experience of fast neutron therapy. Int. J. Radiat. Oncol. Biol. Phys. 8, 2155–2158.
45.
DunjicA.MaisinJ.MaldagueP.MaisinJ. (1960). Incidence of mortality and dose—response relationship following partial body x-irradiation of the rat. Radiat. Res. 12, 155–166.
46.
Van DijkJ.KeanT. J.KanS.RiderW. D.FryerC. J. H. (1981). Radiation pneumonitis following large single dose irradiation: a re-evaluation based on absolute dose to lung. Int. J. Radiat. Oncol. Biol. Phys. 7, 461–467.
47.
EdwardsA. A.LloydD. C.PurrottR. J. (1981). Dicentric chromosome aberration yield in human lymphocytes and radiation quality. A resume including recent results using alpha particles. Proc. 7th Symposium on Microdosimetry, pp. 1263–1273. Report EUR7417, Harwoord Academic Publ., Switzerland.
48.
EdwardsA. A.LloydD. C.ProsserJ. D. (1985). The induction of chromosome aberrations in human lymphocytes by accelerated charged particles. Radiation Protection Dosimetry15, 205–209.
49.
ElkindM. M.WhitmoreG. F. (1967). The Radiobiology of Cultured Mammalian Cells. Gordon and Breach, New York.
50.
FajardoL. F. (1982). Pathology of Radiation Injury. Masson, New York.
51.
FieldS. B.JonesT. J.ThomlinsonR. H. (1968). The relative effects of fast neutrons and X-rays on tumour and normal tissue in the rat. Part II: Fractionation: Recovery and Reoxygenation. Br. J. Radiol. 41, 597–607.
52.
FieldS. B.HornseyS.KutsutaniY. (1976a). Effects of fractionated irradiation on mouse lung and a phenomenon of slow repair. Br. J. Radiol. 49, 700–707.
53.
FieldS. B.MorganR. L.MorrisonR. (1976b). The response of human skin to irradiation with x-rays or fast neutrons. Int. J. Radiat. Oncol. Biol. Phys. 1, 481–488.
54.
FieldS. B.HornseyS. (1979a). Aspects of OER and RBE relevant to neutron therapy. In: Advances in Radiation Biology, pp. 1–50 (LettJ.AdlerH., eds). Academic Press.
55.
FieldS. B.HornseyS. (1979b). Neutron RBE for normal tissues. Eur. J. Cancer, Suppl. 1979: High LET Radiation in Clinical Radiotherapy, pp. 181–186 (BarendsenG. W.BroerseJ. J.BreurK., eds). Pergamon Press, New York.
56.
FowlerJ. F.ParkinsC. S.DenekampJ.TerryN. H. A.MaughanR. L.TravisE. L. (1982). Early and late effects in mouse lung and rectum. Int. J. Radiat. Oncol. Biol. Phys. 8, 2089–2093.
57.
FowlerJ. F. (1983). Dose response curves for organ function or cell survival. Br. J. Radiol. 56, 497–500.
58.
FowlerJ. F. (1984). Review: Total doses in fractionated radiotherapy. Implications of new radiobiological data. Int. J. Radiat. Biol. 46, 103–120.
59.
GasinskaA. (1985). Mouse testis weight loss and survival of differentiated spermatogonia following irradiation with 250 kV X-rays and 5.5 MeV fast neutrons. Neoplasia32, 443–449.
60.
GasinskaA.De Ruiter-BootsmaA.DavidsJ. A. G.FolkardM.FowlerJ. F. (1987). Survival of mouse type B spermatogonia for the study of the biological effectiveness of 1 MeV, 2.3 MeV and 5.6 MeV neutrons. Int. J. Radiat. Biol. 52, 237–243.
61.
GeraciJ. P.JacksonK. L.ChristensenG. M.ThrowerP. D.WeyerB. J. (1977a). Acute and late damage in the mouse small intestine following multiple fractions of neutrons or X-rays. Int. J. Radiat. Oncol. Biol. Phys. 2, 693–696.
62.
GeraciJ. P.JacksonK. L.ChristensenG. M.ThrowerP. D.WeyerB. J. (1977b). Mouse testes as a biological test system for intercomparison of fast neutron therapy beams. Radiat. Res. 71, 377–386.
63.
GeraciJ. P.JacksonK. L.ChristensenG. M.ThrowerP. D.MarianoM. (1978). RBE for late spinal cord injury following multiple doses of neutrons. Radiat. Res. 74, 382–386.
64.
GilletteE. L.McChesneyS. L. (1986). Relationship of functional changes and radiation induced cardiomyopathy in dog. Br. J. Cancer, Suppl. VII, 53, 192–195.
65.
GoldsteinL. S.PhillipsT. L.RossG. Y. (1981). Biological effects of accelerated heavy ions. II. Fractionated irradiation of intestinal crypt cells. Radiat. Res. 86, 542–558.
66.
Gonzalez GonzalezD.Van DijkJ. D. P. (1983). Experimental studies on the response of growing bones to X-ray and neutron irradiation. Int. J. Radiat. Oncol. Biol. Phys. 9, 671–677.
67.
GoodheadD. T.ThackerJ.CoxR. (1979). Effectiveness of 0.3 KeV carbon ultra-soft x-rays. Int. J. Radiat. Biol. 36, 101–114.
68.
GueuletteJ.BreteauN.SabattierR.WambersieA. (1984a). RBE of p(34) + Be neutrons for early intestinal tolerance in mice. Radiobiological intercomparison between Orleans (p(34) + Be neutrons) and Louvain-La Neuve (d(50) + Be neutrons). J. Eur. Radiother. 5, 176–179.
69.
GueuletteJ.Octave-PrignotM.WambersieA. (1984b). RBE of d(50) + Be neutrons, as a function of the dose per fraction, for early intestinal tolerance in mice. J. Eur. Radiother. 5, 180–182.
70.
HackerU.SchumanJ.GihdeW. (1982). Mammalian spermatogenesis as a new system for biologic dosimetry of ionizing irradiation. Acta Radiologica Oncology21, 349–351.
71.
HendryJ. H.PotternC. S.ChadwickC.BianchiM. (1982). Cell death (apoptosis) in the mouse small intestine after low doses: effects of dose rate, 14.7 MeV neutrons, and 600 MeV (maximum energy) neutrons. Int. J. Radiat. Biol. 42, 611–620.
72.
HengleinA.SchnabelW. (1966). Radiation chemistry of macro molecules in solution, LET effects. In: Current Topics in Radiation Research, pp. 1–67, Vol. 2 (EbertM.HowardA., eds). North Holland Publ. Co., Amsterdam.
73.
HobbsC. H.BarnesJ. E.McClellanR. O.ChiffelleT. L.JonesR. K.LundgrenD. L.MauderlyJ. L.PickrellJ. A.RypkaE. W. (1972). Toxicity in the dog of 90Y in fused clay particles: early biological effects. Radiat. Res. 49, 430–460.
74.
HopewellJ. W.CamplingD.CalvoW.ReinholdH. S.WilkinsonJ. H.YeungT. K. (1986). Vascular irradiation damage; its cellular basis and likely consequences. Br. J. Cancer, Suppl. VII, 53, 181–191.
75.
HopewellJ. W. (1987). The role of the vasculature in normal tissue responses. In: Radiation Research. Proc. 8th Int. Congress of Radiation Research, pp. 789–794, Edinburgh, 1987 (FieldenE. M.FowlerJ. F.HendryJ. H.ScottD., eds). Taylor and Francis, London.
76.
HopewellJ. W.BarnesD. W. H.RobbinsM. E. C.SamsonJ. M.KnowlesJ. F.Van den AardwegG. J. M. J. (1988). The relative biological effectiveness of fractionated doses of fast neutrons (d(42 MeV)Be) for normal tissues in pigs. I. Effects on the epidermis, and dermal, vascular-connective tissue. Br. J. Radiol. 61, 928–938.
77.
HornseyS. (1980). Appropriate RBE's for use in neutron therapy. Br. J. Radiol. 53, 1207–1210.
78.
HornseyS.MorrisC. C.MyersR.WhiteA. (1981). Relative biological effectiveness for damage to the central nervous system by neutrons. Int. J. Radiat. Oncol. Biol. Phys. 7, 185–189.
79.
HornseyS. (1986). Radiobiology of neutron effects on normal tissues. In: Nuclear Sciences Application, Vol. 2, pp. 317–326. Harwoord Academic Publishers, London.
80.
HuiskampR.DavidsJ. A. G.Van EwijkW. (1986). The effect of graded doses of fission neutrons or X-rays on the lymphoid compartment of the thymus of mice. Radiat. Res. 105, 247–258.
81.
HusseyD. H.JardineJ. H.RaulstonG. L.StephensL. C.GrayK. N.MoorM. H.WithersH. R. (1982). 50 MeV (d-Be) neutrons: a comparison of normal tissue tolerance in animals with clinical observations in patients. Int. J. Radiat. Oncol. Biol. Phys. 8, 2083–2088.
82.
ICRP (1977). Recommendations of the International Commission on Radiological Protection. ICRP Publication 26. Ann. ICRP1 (3). Pergamon Press, Oxford.
83.
ICRP (1984a). Nonstochastic Effects of Ionizing Radiation. ICRP Publication 41. Ann. ICRP14 (3). Pergamon Press, Oxford.
84.
ICRP (1984b). A Compilation of the Major Concepts and Quantities in use by ICRP. ICRP Publication 42. Ann. ICRP14 (4). Pergamon Press, Oxford.
85.
ICRP (1972). The RBE for High-LET Radiation with Respect to Mutagensis. ICRP Publication 18. Pergamon Press, Oxford.
86.
ICRP (1980). Biological Effects of Inhaled Radionuclides. ICRP Publication 31. Ann. ICRP4 (1). Pergamon Press, Oxford.
87.
ICRP (1986). Developmental Effects of Irradiation on the Brain of Embryo and Fetus. ICRP Publication 49. Ann. ICRP16 (4). Pergamon Press, Oxford.
88.
ICRU (1970). Linear Energy Transfer, ICRU Report No. 16. Bethesda, MD.
89.
ICRU (1986). The Quality Factor in Radiation Protection, ICRU Report No. 40. Bethesda, MD.
JoinerM. C.MaughanR. C.FowlerJ. F.DenekampJ. (1983). The RBE for mouse skin irradiated with 3 MeV neutrons: single and fractionated doses. Radiat. Res. 95, 130–141.
92.
JoinerM. C.DenekampJ. (1986). The effect of small radiation doses on mouse skin. Br. J. Cancer, Suppl. VII, 53, 63–66.
93.
JoinerM. C.DenekampJ.MaughanR. C. (1986). The use of top-up experiments to investigate the effect of very small doses per fraction in mouse skin. Int. J. Radiat. Biol. 49, 465–580.
94.
JoinerM. C.JohnsH. (1988). Renal damage in the mouse: the response to very small doses per fraction. Radiat. Res. 114, 385–398.
95.
JoinerM. C.FieldS. B. (1988). The response of mouse skin to irradiation with neutrons from the 62 MV cyclotron at Clatterbridge, U.K.Radiother. Oncol. 12, 153–166.
96.
JoinerM. C. (1988c). A comparison of the effect of p(62)-Be and d(16)-Be neutrons in the mouse kidney. Radiother. Oncol. 13, 211–224.
97.
JonesJ. A.WilliamsJ. A. (1988). Assessment of the radiological consequences of releases from degraded core accidents for a proposed PWR at Hinkley Point: Results using MARC-1. U.K. National Radiological Protection Board NRPB-M152, Chilton.
98.
KalH. B. (1974). Responses of a Rat Rhabdomyosarcoma and Rat Skin to Irradiation with Gamma Rays and 15 MeV Neutrons at Low Dose Rates. Thesis, Amsterdam.
99.
KalH. B. (1986). Review of RBE and OER values for Cf-neutrons. In: Nuclear Science Application, Vol. 2, pp. 303–316. Harwood Academic Publishers, London.
100.
KassisA. I.HowellR. W.SastryK. S. R.AdelsteinS. J. (1988). Positional effects of Auger decays in mammalian cells in culture. In: DNA Damage by Auger Emitters, pp. 1–14 (BaverstockK. F.CharltonD. E., eds). Taylor and Francis, London.
101.
KellererA. M.HahnK. (1988). Considerations on a revision of the quality factor. Radiat. Res. 114, 480–488.
102.
KellererA. M. (1976). A survey of approaches to radiation biophysics. In: Proc. Fifth Symp. on Microdosimetry, pp. 97–126 (BoozJ.EbertH. G.SmithB. G. R., eds). EUR5452d-e-f-Commission on the European Communities, Luxembourg.
103.
KemberW. F. (1969). Radiobiological investigations with fast neutrons using the cartilage clone system. Br. J. Radiol. 42, 959–997.
104.
van der KogelA. J. (1980). Mechanisms of late radiation injury in the spinal cord. In: Radiation Biology in Cancer Research, pp. 461–470 (MeynR. E.WithersH. R., eds). Raven Press, New York.
105.
van der KogelA. J. (1985). Chronic effects of neutrons and charged particles on spinal cord, lung and rectum. Radiat. Res. 104, S208–S216.
106.
van der KogelA. J. (1986). Radiation-induced damage to the central nervous system. An interpretation of target cell responses. Br. J. Cancer, Suppl. VII, 207–217.
107.
LawM. P.AkierR. G.CoultasP. G. (1986). The role of vascular injury in the radiation response of mouse lung. Br. J. Cancer, Suppl. VII, 53, 327–329.
108.
LebesqueJ. V.StewartF. A.HartA. A. M. (1986). Analysis of the rate of expression of radiation-induced renal damage and the effects of hyperfractionation. Radiother. Oncol. 5, 147–157.
109.
LeithJ. T.Powers-RisiusP.WoodruffK. H.McDonaldM.HowardJ. (1981). Response of the skin of hamsters to fractionated irradiation with X-rays or accelerated carbon ions. Radiat. Res. 88, 565–576.
110.
LeithJ. T.AinsworthE. J.van AlpenE. L. (1983). Heavy ion radiobiology: normal tissue studies. In: Advances in Radiation Biology, Vol. 10, pp. 191–236 (LettJ. R.AdlerH., eds). Academic Press, New York.
111.
LettJ. T.CoxA. B.BergholdD. S.LeeA. C.PeckeringE. (1984). Late effects of particulate radiations in primate and rabbit tissues. Adv. Space Res. 4, 251–256.
112.
MaloneJ. F.HendryJ. H.PorterD.HalnanK. E. (1974). The response of rat thyroid, a highly differentiated tissue, to single and multiple doses of gamma or fast neutron irradiation. Br. J. Radiol. 47, 608–615.
113.
MauderlyJ. L.PickrellJ. A.HobbsC. H.BenjaminS. A.HahnF. F.JonesR. K.BarnesJ. E. (1973). The effects of inhaled 90Y fused clay aerosol on pulmonary function and related parameters of the beagle dog. Radiat Res. 56, 83–96.
114.
MauderlyJ. L.MuggenburgB. A.HahnF. F.BoeckerB. B. (1980). The effects of inhaled 144Ce on cardiopulmonary functional histopathology of the dog. Radiat. Res. 84, 307–324.
115.
McClellanR. O.BoeckerB. B.HahnF. F.MuggenburgB. A. (1986). Lovelace ITRI studies on the toxicity of inhaled radionuclides in beagle dogs. In: Life Span Radiation Effects Studies in Animals: What Can They Tell Us?, pp. 74–96 (ThomsonR. C.MahaffeyJ. A., eds). NITS, Springfield, VA.
116.
McClellanR. O.BoeckerB. B.CuddihyR. G.GriffithW. C.HahnF. F.MuggenburgB. A.ScottB. R.SeilerF. A. (1982). Health effects from internally deposited radionuclides released in nuclear disasters. In: The Control of Exposure of the Public to Ionizing Radiation in the Event of Accident of Attack, pp. 28–39, NTIS, Springfield, VA.
117.
MeistrichM. L. (1986). Relationship between spermatogonial stem cell survival and testis function after cytotoxic therapy. Br. J. Cancer, Suppl. VII, 53, 89–101.
118.
MerriamG. R.SzechterA.FochtE. F. (1972). The effects of ionizing radiations on the eye. Front. Radiat. Ther. Oncol. 6, 346–385.
119.
MichalowskiA. (1981). Effects of radiation on normal tissues: hypothetical mechanisms and limitations of in situ assay of clonogenicity. Radiat. Environ. Biophys. 10, 157–172.
120.
MontourJ. L.WilsonJ. D. (1979). Mouse testis weight loss following high energy neutron or gamma irradiation. Int. J. Radiat. Biol. 36, 185–189.
121.
MuggenburgB. A.GuilmetteR. A.HahnF. F.BoeckerB. B.McClellanR. O. (1987). Toxicity of inhaled 239PuO2 in beagle dogs. X. In: 1986–1987 Inhalation Toxicology Research Institute Annual Report. LMF-120, NTIS, Springfield, VA.
122.
MuggenburgB. A.WolffR. K.MauderlyJ. L.PlaggmierM. M.HahnF. F.GuilmetteR. A.GerlachR. F. (1988). Cardiopulmonary function of dogs with plutonium-induced chronic pulmonary injury. Radiat. Res. 115, 315–324.
123.
OakbergE. F. (1957). Gamma-ray sensitivity of spermatogonia of the mouse. J. Exp. Zoology134, 343–356.
124.
ParkJ. F.BairW. J.BushR. H. (1972). Progress in beagle dog studies with transuranium elements at Batelle-Northwest. Health Phys. 22, 803–810.
125.
ParkinsC. S.FowlerJ. F.MaughanR. J.RoperM. J. (1985). Repair in mouse lung for up to 20 fractions of X-rays or neutrons. Br. J. Radiol. 59, 241.
126.
ParkinsC. S.FowlerF. J. (1986). The linear quadratic fit for lung function after irradiation with X-rays at smaller doses per fraction than 2 Gy. Br. J. Cancer, Suppl. VII, 53, 320–323.
127.
PhillipsT. L.RossG. Y.GoldsteinL. S.AinsworthJ.AlpenE. (1982). In vivo radiobiology of heavy ions. Int. J. Radiat. Oncol. Biol. Phys. 8, 2121–2127.
128.
PomplunE.BoozJ.DydejezykA.FeinendegenL. E. (1987). A microdosimetric interpretation of the radiobiological effctiveness of I-125 and the problem of quality factor. Radiat. Environ. Biophys. 26, 181–188.
129.
Powers-RisiusP.AlpenE. L.DeguzmanR. (1988). Repair in the mouse kidney after heavy ion irradiation. Proc. 36th Ann. Meeting Radiation Research (Abstract).
130.
PriseK. M.DaviesS.MichaelB. D. (1987). The relationship between radiation-induced DNA double-strand breaks and cell kill in hamster V79 fibroblasts irradiated with 250 kVp X-rays, 2.3 MeV neutrons or Pu-238 alpha-particles. Int. J. Radiat. Biol. 52, 893–902.
131.
RajewskiB. (1939). Researches in the problem of radium poisoning and the tolerance dose of radium. Radiology32, 57.
132.
RajuM. R. (1986). Heavy Particle Radiotherapy. Academic Press, New York.
133.
ReinholdH. S.BuismanG. (1973). Radiosensitivity of capillary endothelium. Br. J. Radiol. 46, 54–57.
134.
ResvaniM. S.HeryetJ. C.HopewellJ. W. (1987). Effects of single and fractionated doses of radiation on the lung. In: Annual Report for 1985/86 of the Cancer Research Campaign Normal Tissue Radiobiology Research Group, pp. 66–71. University of Oxford.
135.
RodriguezA.LevyR. P.FabrikantJ. I. (1990). Experimental central nervous system injury following charged-particle irradiation. In: Radiation Injury to the Nervous System (GutinP. H.LeibelS. A.ShelineG. E., eds). Raven Press, New York (in press).
136.
RossD. M. (1968). A statistical summary of USAEC licensees internal exposure experience. In: Diagnosis and Treatment of Deposited Radionuclides, pp. 437–444 (KornbergH. A.NorwoodW. D., eds). Excerpta Medica Foundation, Amsterdam.
137.
RothJ.BrownM.CatterallM. (1976). Effects of fast neutrons on the eye. Br. J. Ophthalmology60, 236–244.
138.
ScottB. R.HahnF. F. (1989). Chapter 1: Early and continuing effects. In: Health Effect Model for Nuclear Power Plant Accident Consequence Analysis. USNRC Report NUREF/CR 4214 SAND85–7185, Rev. 1, Part 11 (AbrahamsonS.BenderM.BookS., eds). NTIS, Springfield, VA.
139.
ScottB. R.HahnF. F.NewtonG. N.SnipesM. B.DamonE. G.MauderlyJ. L.BoeckerB. B.GrayD. H. (1987). Experimental Studies of the Early Effects of Inhaled Beta-emitting Radionuclides for Nuclear Accident Risk Assessment. Phase II Report. USNRC Report NUREG/CR 5025 MLF117, Nov. 1987. NTIS, Springfield, VA.
140.
ScottB. R.HahnF. F.SnipesM. B.NewtonG. J.EidsonA. M.MauderlyJ. L.BoeckerB. B. (1988). Early and Continuing Effects of Combined Alpha and Beta Irradiation of the Lung. USNRC Report NUREG/CR 5067 LM-119, March 1988. NTIS, Springfield, VA.
141.
SiliniG.HornseyS.BewleyD. K. (1963). Effects of X-ray and neutron dose fractionation on the mouse testis. Radiat. Res. 19, 50–63.
142.
SinclairW. K. (1968). Radiation survival in synchronous and asynchronous Chinese hamster cells in vitro. In: Biophysical Aspects of Radiation Quality, pp. 39–53. IAEA, STI/PUB/171.
143.
SinclairW. K. (1985). Experimental RBE values of high-LET radiations at low doses and the implications for quality factor assignment. Radiation Protection Dosimetry13, 319–326.
144.
SinclairW. K. (1962). The relative biological effectiveness of 22 MeVp X-ray, Co-60 gamma rays and 200 keVp X-rays. VII. Summary of studies for five criteria of effect. Radiat. Res. 16, 394–398.
145.
SkolyszewskiJ. (1984). Second report of fast neutron therapy of advanced head and neck cancer in Krakow. J. Eur. Radiother. 5, 153–156.
146.
SnipesM. B.BoeckerB. B.McClellanR. O. (1984). Respiratory tract clearance of inhaled particles in laboratory animals. In: Lung Modelling for Inhalation of Radioactive Materials, pp. 63–67 (SmithH.GerberG., eds). CEC Report EUR 9384 EN, Luxembourg.
147.
SpanoM.PacchierottiF.MauroF.QuaggiaS.UccelliR. (1987). Flow cytometric analysis of the effects of 0.4 MeV fission neutrons on mouse spermatogenesis. Int. J. Radiat. Biol. 51, 401–419.
148.
StewartF. A.SoransonJ. A.AlpenE. L.WilliamsM. V.DenekampJ. (1984a). Radiation induced renal damage: the effects of hyperfractionation. Radiat. Res. 98, 407–417.
149.
StewartF. A.SoransonJ.MaughanR.AlpenE. L.DenekampJ. (1984b). The RBE for renal damage after irradiation with 3 MeV neutrons. Br. J. Radiol. 57, 109–1021.
150.
StewartF. A. (1986). Mechanism of bladder damage and repair after treatment with radiation and cytostatic drugs. Br. J. Cancer, Suppl. VII, 53, 280–291.
151.
StewartF. A.RandhawaV.MaughanR. (1986). The RBE for mouse bladder after irradiation with 1 to 8 fractions of d(4) + Be neutrons. Br. J. Radiol. 59, 61–68.
152.
StewartF. A.OussorenY.LutsA.BeggA. C.DewitL.LebesqueJ.BartelinkH. (1987). Repair of sublethal radiation injury after multiple small doses in mouse kidneys: an estimate of flexure dose. Int. J. Radiat. Oncol. Biol. Phys. 13, 765–772.
153.
StraumeT.DobsonR. L. (1983). Neutron RBE for mouse oocyte killing. Radiat. Res. 94, 644–645 (Abstr.).
154.
StuartB. O.CaseyH. W.BairW. J. (1964). Acute and chronic effects of inhaled 144CeO2 in dogs. Health Phys. 10, 1203–1209.
155.
SullivanM. F.BeamerJ. L.CrossF. T.LundJ. E.MahoneyR. D.EndresG. W.BuschbomR. L. (1980). Pathologic effects of intracavitary irradiation with californium-252. Int. J. Radiat. Oncol. Biol. Phys. 6, 1613–1627.
156.
TerryN. H. A.DenekampJ.MaughanR. L. (1983). RBE values for colo-rectal injury after caesium-137 gamma ray and neutron irradiation. I. Single doses. Int. J. Radiol. 56, 257–265.
157.
TerryN. H. A.DenekampJ. (1984). RBE values for colo-rctal injury after caesium-137 gamma and neutron irradiation. II. Fractionation up to 10 doses. Br. J. Radiol. 57, 617–629.
158.
ThomasR. L.ScottJ. K.ChiffelleT. L. (1972). Metabolism and toxicity of inhaled 144CeO2 in rats. Radiat. Res. 49, 589–610.
159.
ToddP. (1967). Heavy ion irradiation of cultured human cells. Radiat. Res., Suppl. 7, 196–207.
160.
TravisE. L.TuckerS. L. (1986). The relationship between functional assays of radiation response in the lung and target depletion. Br. J. Cancer, Suppl. VII, 53, 304–319.
161.
TravisE. L. (1987). Relative radiosensitivity of the human lung. In: Advances in Radiation Biology, pp. 205–238 (LettJ. T.AltmanK. I., eds). Academic Press, London.
162.
TravisE. L.CurtisS. B.HowardJ.FowlerJ. F. (1987). Repair and potentiation observed in mouse lung irradiated with neon ions. Radiat. Res. 112, 500–507.
163.
UNSCEAR (1982). United Nations Scientific Committee on the effects of Atomic Radiation: Sources and Biological Effects. Report to the General Assembly with Annexes. United Nations, New York.
164.
UNSCEAR (1988). Sources, Effects and Risks of Ionizing Radiation. Report to the General Assembly with Annexes. United Nations, New York.
165.
USNRC (1975). United States Nuclear Regulatory Commission Reactor Safety Study: An assessment of accidental releases in U.S. commercial nuclear power plants. Washington, D.C., USNRC, Wash-1400.
166.
Van DykJ.KeaneT. J.KanS.RiderW.FryerC. J. H. (1981). Radiation pneumonitis following large single dose irradiation: a reevaluation based on absolute dose to the lung. Int. J. Radiat. Oncol. Biol. Phys. 7, 461–467.
167.
WambersieA.GueuletteJ.DutreixJ. (1982). Shape of the initial part of the cell survival curve. Implications for the RBE/dose relationships for small doses per fraction. In: Progress in Radio Oncology, pp. 99–104 (KärcherK. H., eds). Raven Press, New York.
168.
WeirG. J.MichaelsonS. M. (1971). Pulmonary Radiation Reactions. Charles C. Thomas, Springfield, Illinois.
169.
WestraA.BarendsenG. W. (1966). Proliferation characteristics of cultured mammalian cells after irradiation with sparsely and densely ionizing radiation. Int. J. Radiat. Biol. 11, 477–485.
170.
WheldonT. E.MichalowskiA. S. (1986). Alternative models for the proliferative structure of normal tissues and their response to irradiation. Br. J. Cancer, Suppl. VII, 53, 382–385.
171.
WilliamsM. V. (1986). The cellular basis of renal injury by radiation. Br. J. Cancer, Suppl. VII, 53, 257–264.
172.
WithersH. R. (1967). Recovery and repopulation in vivo by mouse skin epithelial cells during fractionated irradiation. Radiat. Res. 32, 239–245.
173.
WithersH. R.MasonK. A.ThamesH. D. (1985). Late radiation response of kidney assayed by tubule cell survival. Br. J. Radiol. 58, 212–217.
174.
WithersH. R.ThamesH. D.PetersL. J. (1982). Biological bases for high RBE values for late effects of neutron irradiation. Int. J. Radiat. Oncol. Biol. Phys. 8, 2071–2076.
175.
WithersH. R.MasonK.ReisD. B. (1974). Response of mouse intestine to neutrons and gamma rays in relation to dose fractionation and division cycle. Cancer34, 39–47.
176.
WithersH. R.MasonK. A.ThamesH. D. (1986). Late radiation response of kidney assayed by tubule-cell survival. Br. J. Radiol. 59, 587–589.
177.
WithersH. R.ElkindM. M. (1969). Radiosensitivity and fractionation response of crypt cells of mouse jejunum. Radiat. Res. 38, 598–613.
178.
WithersH. R.ElkindM. M. (1970). Microcolony survival assay for cells of mouse intestinal mucosa exposed to radiation. Int. J. Radiat. Biol. 17, 261–267.
179.
WithersH. R.OliverG. D.GlennD. W. (1971). Response of mouse jejunal crypt cells to low dose rate irradiation with californium neutrons or radium gamma rays. Radiat. Res. 48, 484–494.
180.
WoodruffK. H.LeithJ. T.Powers-RisiusP.HavensV.LymanJ. T.HowardJ.TobiasC. A. (1979). Comparison of heavy particle with X-irradiation on hamster lung. Am. J. Pathol. 95, 765–774.