AbaturovY.D.Gol'tsovaN.I.RostovaN.S.GirbasovaA.V.AbaturovA.V.MelankholinP.N., 1991. Some particularities of
radioactive damage of pine in the area of accident on the Chernobyl
NPP. Ecology5, 28–33 (in
Russian).
2.
AbaturovY.D.AbaturovA.V.BykovA.V., 1996. Effect of Ionizing Radiation on Pine
Forests in the Nearest Area of the Chernobyl NPP.
Nauka, Moscow, pp.
1–240.
3.
AmiroB.D., 1986. Effect of gamma-radiation dose
rate and total dose on stem growth of Pinus banksiana (Jack pine)
seedlings. Environ. Exp. Bot.
26, 255–257.
4.
AndersenA.C.RosenblattL.S., 1969. The effect of whole-body
X-irradiation on the median lifespan of female dogs (beagles).
Radiat. Res. 39,
177–200.
5.
BaldwinW.F., 1962. The effect of radiation dose rate
on the production of eye colour mutations in the Chalcid
Dahlbominus. Radiat. Res. 27,
127–132.
6.
BaldwinW.F., 1968. Increased yield of gamma-induced
eye colour mutations from chronic versus acute exposures in
Dahlbominus. In: Isotopes and
Radiation in Entomology; IAEA,
Vienna, pp.
365–375.
BardillE.A.BlaylockB.G.GehrsC.W.TrabalkaJ.R., 1977. The Effects of Acute Ionising
Radiation on Selected Life Stages of the Calanoid CopepodDiaptomus clavipes Schacht. ORNL/TM-5060, Oak Ridge National Lab.,
TN, USA. Environmental Sciences Division Publication No. 777. pp.
1–26.
9.
BEIR III Committee on Biological Effects of Ionizing
Radiation, 1980. The Effects on Populations of
Exposure to Low Levels of Ionizing Radiation. United
States National Academy of Sciences, National Research Council. National Academy
Press, Washington,
DC.
10.
BellM.C.SasserL.B.WestJ.L., 1971. Simulated fallout radiation
effects on livestock. In: BensenD.W.SparrowA.H. (Eds.), Survival of Food Crops and Livestock in the Event of
Nuclear War. AEC Symposium Series 24, Brookhaven Nat.
Lab., Springfield, VA USA, p.
193. CONF 700909.
11.
BenjaminS.A.LeeA.C.AngletonG.M.SaundersW.J.KeefeT.J.MallinckrodtC.H., 1998. Mortality in beagles irradiated
during prenatal and postnatal development. I. Contribution of non-neoplastic
diseases. Radiat. Res. 150,
316–329.
12.
BlairW.F., 1960. Radiation-induced genetic damage
in the Mexican toad (Bufo valliceps).
Tex. J. Sci. 12,
216–227.
13.
BondV.P.FriednerT.M.ArchambeauJ.O., 1965. Mammalian Radiation Lethality.
Academic Press, New
York.
14.
BonhamK.WelanderA.D., 1963. Increase in radioresistance of fish to
lethal doses with advancing embryonic development. In: SchultzV.KlementA.W. (Eds.), Proceedings of the First National Symposium on Radioecology.
Reinhold Publishing Corp. and AIBS, p.
353–358.
15.
BonhamK.DonaldsonL.R., 1972. Sex ratios and retardation of
gonadal development in chronically gamma-irradiated Chinook salmon
smolts. Trans. Am. Fish. Soc.
101, 428–434.
16.
BornhausenM.BurgmeierA.MetthesA., 1982. Effects of prenatal treatment with
ionizing radiation and/or heavy metal compounds on the conditioned behaviour of
rats. In: Developmental Effects of Prenatal
Irradiation. Gustav Fischer,
Stuttgart, pp.
309–312.
17.
BostrackJ.M.SparrowA.H., 1979. The radiosensitivity of
gymnosperms. II. On the nature of radiation injury and cause of death of
Pinus rigida and P. strobus after chronic
gamma irradiation. Radiat. Bot.
10, 131–143.
18.
BourdeauP.F.WoodwellG.M., 1964. Field measurements of carbon
dioxide exchange by Pinus rigida trees exposed to chronic gamma
irradiation. Ecology45, 403–406.
19.
BrentR.L., 1971. The response of the 9
1/2-day-old-rat embryo to variations in exposure rate of 150 R
X-irradiation. Radiat. Res. 45,
127–136.
20.
BrisbinI.L., 1969. Responses of broiler chicks to
gamma-radiation exposures: Changes in early growth parameters.
Radiat. Res. 39,
36–44.
21.
BrownV.M.TempletonW.L., 1964. Resistance of fish embryos to
chronic irradiation. Nature203, 1257–1259.
CahillD.F.YuileC.L., 1970. Tritium: Some effects of
continuous exposure in utero on mammalian development.
Radiat. Res. 44,
727–737.
24.
CanfiA.ChayothR.WeillS.BedrakE., 1990. The reproductive system of male
rats exposed to very low doses of ionizing radiation. 1: Hormonal profile of
animals exposed after sexual maturity. Andrologia22, 129–136.
25.
CarateroA.CourtadeM.BonnetL.PlanelH.CarateroC., 1998. Effect of continuous gamma
irradiation at a very low dose on the life span of mice.
Gerontology44, 272–276.
26.
CarnesB.A.FritzT.E., 1991. Responses of the beagle to
protracted irradiation. Radiat. Res.
128, 125–132.
27.
CarnesB.A.FritzT.E., 1993. Continuous irradiation of beagles
with gamma rays. Radiat. Res.
136, 103–110.
28.
CarnesB.A.OlshanskyS.J.GrahnD., 1996. Continuing the search for a law of
mortality. Popul. Devel. Rev.
22, 231–264.
29.
ChakrabartiS.StreisingerG.SingerF.WalkerC., 1983. Frequency of y-ray induced
specific locus and recessive lethal mutations in mature germ cells of the
zebrafish, Brachydanio berio. Genetics103, 109–123.
30.
CherdantsevV.G.LyankovS.M.CherdantsevaE.M.SevertsovA.S., 1993. The methods and results of
analysis of the ecological stability of the population of brown frogs under
radiation contamination. In: Ecological Consequences of
Radioactive Contamination in the Southern Urals.
Nauka,
Moscow.
31.
CoffignyH.PasquierC., 1976. Etude chez le rat adulte des effects
d'une irradiation pre- ou post-natale de 150 rads. CRSSA-RA, pp.
48–51.
32.
CongerA.D.ClintonJ.H., 1973. Nuclear volumes, DNA contents, and
radiosensitivity in whole-body-irradiated amphibians.
Radiat. Res. 54,
69–101.
33.
CoppengerC.J.BrownS.O., 1967. The gross manifestations of
continuous gamma irradiation on the prenatal rat. Radiat.
Res. 31,
230–242.
34.
CosgroveG.E., 1965. The radiosensitivity of snakes and
box turtles. Radiat. Res. 25,
706–712.
35.
CosgroveG.E.BlaylockB.G., 1973. Effects of acute and chronic irradiations
on mosquito fish maintained at 15 or 25 °C In: NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of the Third National
Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2. Oak Ridge, TN, pp.
579.
36.
CovelliV.CoppolaM.Di MajoV.RebessiS.BassaniB., 1988. Tumour induction and life
shortening in BC3F1 female mice at low doses of fast neutrons and
X-rays. Radiat. Res. 113,
362–374. Commission on Radiological Protection
(Federal Republic of Germany), 1989. Effects of Prenatal Irradiation, second ed.
Gustav Fischer Verlag, Stuttgart.
37.
Di MajoV.BallardinE.MetalliP., 1981. Comparative effects of fission
neutrons and x irradiation on 7.5-day mouse embryos.
Radiat. Res. 87,
145–158.
38.
DonaldsonL.R.BonhamK., 1964. Effects of low-level chronic
irradiation of Chinook and Coho salmon eggs and alevins.
Trans. Am. Fish. Soc. 93,
333–341.
39.
EgamiN., 1955. Production of testis-ova in adult
males of Oryzias latipes IV. Effect on X-ray irradiation on
testis-ovum production. J. Facul. Sci.
7, 429–441.
40.
EgamiN., 1970. Effects of cysteamine given before
and after X-irradiation under different temperature conditions on mortality of the
fish, Oryzias latipes. Int. J. Radiat. Biol. 18,
391–394.
41.
EgamiN.Hyodo-TaguchiY., 1965. Effect of X-irradiation on the
oviposition of the teleost, Oryzias latipes. Annt. Zool. Jpn. 38,
171–181.
42.
EgamiN.Hyodo-TaguchiY.KonnoK., 1967. Autoradiographical studies on
spermatogenesis in the fish, Oryzias latipes, with special
reference to radiation effects on fertility of fish gunma.
Symp. Endocrinol. 4,
147–159.
43.
EgamiN.Hyodo-TaguchiY., 1969. Hermaphroditic gonads produced in
Oryzias latipes by X-radiation during embryonic
stages. Copeia1, 195–196.
44.
EgamiN.Hama-FurukawaA., 1981. Response to continuous
y-irradiation of germ cells in embryos and fry of the fish, Oryzias
latipes. Int. J. Radiat. Biol. 40,
563–568.
45.
EgamiN.ShimadaA.Hama-FurukawaA., 1983. Dominant lethal mutation rate
after y-irradiation of the fish, Oryzias latipes. Mutat. Res. 107,
265–277.
46.
EgamiN.MitaniH.ShimadaY., 1984. A note on the acute radiation
death of sharks. J. Facul. Sci.
15, 363–365.
47.
EhrenbergL.ErikssonG., 1966. The dose dependence of mutation
rates in the rad range, in the light of experiments with higher
plants. Acta Radiol. Suppl. 254,
73–81.
48.
EngelD.W., 1967. Effect of single and continuous
exposures of gamma radiation on the survival and growth of the blue crab,
Callinectes sapidus. Radiat. Res. 32,
685–691.
49.
EngelD.W., 1973. The radiation sensitivities of
three species of fiddler crabs (Uca pugilator, U. pugnax, and
U. minax). Chesapeake Sci.
14, 289–291.
50.
EngelD.W.AngelovicJ.W.DavisE.M., 1966. Effects of acute gamma irradiation
on the blood constituents of pinfish, Lagondon rhomboides. Chesapeake Sci. 7,
90–94.
51.
EngelD.W.DavisE.M.AngelovicJ.W.SmithD.E., 1971. Effect of radiation, salinity and
temperature on the ionic regulation of the blue crab, Callinectes
sapidus. Proc. Third Natl. Symp. Radioecol.
2, 1113–1118.
52.
EricksonR.C., 1973. Effects of chronic irradiation by
tritiated water on Poecillia reticulata, the guppy. In:
NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of the Third National
Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2 US Atomic Energy Commission
Technical Information Centre, Oak Ridge, TN, pp.
1091–1099.
53.
EricksonB.H., 1978. Effect of continuous
gamma-radiation on the stem and differentiating spermatogonia of the adult
rat. Mutat. Res. 52,
117–128.
54.
EricksonB.H.MartinP.G., 1972. Effect of dose-rate
(gamma-radiation) on the mitotically-active and differentiating germ cell of the
prenatal male rat. Int. J. Radiat. Biol.
22, 517–524.
55.
EricksonB.H.ReynoldsR.A.BrooksF.T., 1972. Differentiation and radioresponse
(dose and dose rate) of the primitive germ cell of the bovine
testis. Radiat. Res. 50,
388–400.
56.
EricksonB.H.MartinP.G., 1973. Influence of age on the response
of rat stem spermatogonia to gamma radiation. Biol.
Reprod. 8,
607–612.
57.
EricksonB.H.MartinP.G., 1976. Effects of continuous prenatal
gamma radiation on the pig and rat. In: Biological
Environmental Effects of Low Level Radiation.
IAEA, Vienna, pp.
111–117.
58.
EricksonB.H.MartinP.G., 1984. Reproductive and genetic effects
of continuous prenatal irradiation in the pig.
Teratology30, 99–106.
59.
ErshoffB.H., 1960. Comparative effects of prenatal
gamma radiation and x-irradiation on the reproductive system of the
rat. Am. J. Physiol. 198,
1119–1122.
60.
EtohH.Hyodo-TaguchiY., 1983. Effects of tritiated water on germ
cells in medaka embryos. Radiat. Res.
93, 332–339.
61.
FedorovA.F.KardashevA.V.SamokhinG.V.BuyanovN.I.KilezhenkoV.P., 1962. Development of salmon roe (stage
VI) in radioactive contaminated water. Fish Ind.
11, 19–22.
62.
FedorovaG.V., 1964. Impact of 14C on the developing
roe and larvae of the freshwater fish. Voprosy
Ichthyologii4, 723–728.
63.
FilipasA.S.YeA.MorgunovaA.DikarevV.G., 1992. Effects of ionizing radiation on
agricultural crops. In: AlexakhinR.M.KorneyevN.A. (Eds.), Agricultural Radioecology.
Ecologia Publishers,
Moscow, pp.
156–174.
64.
FosterR.F.DonaldsonL.R.WelanderA.D.BonhamK.SeymourA.H., 1949. The effect of embryos and young of
rainbow trout from exposing the parent fish to X-rays.
Growth13, 119–142.
65.
FraleyL.WhickerF.W., 1973. Response of a native shortgrass
plant stand to ionizing radiation. In: NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of
the Third National Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2 US
Atomic Energy Commission Technical Information Centre, Oak Ridge, TN, pp.
999–1006.
66.
FrenchN.R.MazaB.G.HillH.O.AschwandenA.P.KaazH.W., 1974. A population study of irradiated
desert rodents. Ecol. Monogr.
44, 45–72.
67.
FreudA.CanfiA.Sod-MoriahU.A.ChayothR., 1990. Neonatal low-dose gamma
irradiation-induced impaired fertility in mature rats.
Isr. J. Med. Sci. 26,
611–615.
68.
FriedbergW.HannemanG.D.FaulknerD.N.DardenE.B.DealR.B., 1973. Prenatal survival of mice
irradiated with fission neutrons or 300 kVp X-rays during the pronuclear-zygote
stage: Survival curves, effect of dose fractionation. Int.
J. Radiat. Biol. 24,
549–560.
69.
FriedbergW.FaulknerD.N.NeasB.R.DardenE.B.ParkerD.E.HannemanG.D., 1998. Prenatal survival of mouse embryos
irradiated in utero with fission neutrons or 250 kV X-rays during the two-cell
stage of development. Int. J. Radiat. Biol.
73, 233–239.
70.
FrolovaN.P.PopovaO.N.TaskaevA.I., 1991. Seed renewal in nature population
of Plantago lanceolata L. on the plots with different gamma-radiation level.
Radiobiology31, 167–170.
71.
GasinskaA., 1985. Mouse testis weight loss and
survival of differentiated spermatogonia following irradiation with 250 kV X rays
and 5.5 MeV fast neutrons. Neoplasma32, 443–449.
72.
GasinskaA.WatrasJ.LazarskaB.ByrskiE.WitekI.GedlekE., 1985. Dose-fractionation studies on
mouse gut and marrow: An intercomparison of 250 kV X-rays and 5.6 MeV fast
neutrons. Radiobiol. Radiother.
26, 37–41.
73.
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 fast neutrons. Int. J. Radiat. Biol.
52, 237–243.
74.
Geras'kinS.A.DikarevV.G.DikarevaN.S.UdolovaA.A., 1996. Effect of ionizing irradiation or
heavy metals on the frequency of chromosome aberrations in spring barley leaf
meristem. Russ. J. Genet. 32,
240–245.
75.
Geras'kinS.A.DikarevV.G.OudalovaA.A.DikarevaN.S., 1999. Regularities of cytogenetical
disturbances induction by low doses of radiation in barley germ root meristem
cells. Radiat. Biol. Radioecol.
39, 373–383.
76.
GrahnD.SacherG.A.LeaR.A.FryR.J.M.RustJ.H., 1978. Analytical approaches to and
interpretations of data on time, rate and cause of death of mice exposed to
external gamma irradiation. In: Late Biological Effects of
Ionizing Radiation. IAEA,
Vienna, pp.
43–58.
77.
GrigorievY.G., 1989. Somatic effects of the chronic
gamma-exposure of animals by low-level doses. In: Proceedings of the
First All-Union Radiobiological Conference, Vol. 1.
Academy of Sciences of USSR,
Puschino, pp.
184–185.
78.
HadleyE.B.WoodwellG.M., 1966. Effects of ionizing radiation on
rates of CO2 exchange of pine seedlings. Radiat.
Res. 24,
650–656.
79.
HamoguchiS., 1976. Change in the radiation responses
of oogonia in the embryos and fry of the fish Oryzias latipesi. Int. J. Radiat. Biol. 29,
565–570.
80.
HandeM.P.DeviP.U.JagetiaG.C., 1990. Effect of ‘in utero’ exposure to
low doses of low energy X-rays on the postnatal development of
mouse. J. Radiat. Res. (Tokyo)31, 354–360.
81.
HeaslipM.B., 1973. Factors affecting the
radiosensitivity of Fraxinus Americana L. seedling and
seed. In: NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of
the Third National Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2. Oak
Ridge, TN, pp. 978–982.
82.
HeffnerR.L.HowellsG.P.LauerG.R.HirshfieldH.I., 1973. Effects of power plant operation
on Hudson River estuary microbiota. In: NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of
the Third National Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2. Oak
Ridge, TN, pp. 619–629.
83.
HershbergerW.K.BonhamK.DonaldsonL.R., 1978. Chronic exposure of Chinook salmon
eggs and alevins to gamma irradiation: Effects on their return to freshwater as
adults. Trans. Am. Fish. Soc.
107, 622–631.
84.
Hertel-AasT.OughtonD.H.JaworskaA.BjerkeH.SalbuB.BrunborgG., 2007. Effects of chronic gamma
irradiation on reproduction in the earthworm Eisenia fetida
(Oligochaeta). Radiat. Res. 168,
515–526.
85.
HingstonJ.L.KnowlesJ.F.WalkerP.J.WoodM.D.CopplestoneD., 2004. Effects of Ionising Radiation on Soil
Fauna. Environment Agency R & D Technical Report P3-101/SP7
Environment Agency, Bristol.
86.
HoltB.R.BottinoP.J., 1972. Structure and yield of a
chronically irradiated winter rye-weed community. Radiat.
Bot. 12,
355–359.
87.
HoppenheitM., 1972. Effects on fecundity and fertility of
single sublethal X-irradiation of Gammarus duebeni
females. Proc. Symposium on Radioactive Contaminants of the Marine
Environment. International Atomic Energy Agency,
Vienna, Austria, pp.
479–486.
88.
HyodoY., 1965a. Development of intestinal damage
after X-irradiation and H3-thymidine incorporation into intestinal epithelial
cells of irradiated goldfish, Carassius auratus, at different
temperatures. Radiat. Res. 26,
383–394.
89.
HyodoY., 1965b. Effects of X-irradiation on the
intestinal epithelium of the goldfish Carassius auratus. Radiat. Res. 24,
133–141.
90.
Hyodo-TaguchiY.EgamiN., 1977. Damage to spermatoginic cells in
fish kept in tritiated water. Radiat. Res.
71, 641–652.
91.
Hyodo-TaguchiY.AokiK.MatsudairaH., 1982. Use of Medaka as a Tool in Studies of
Radiation Effects and Chemical Carcinogenesis. NIRS-M-41.
National Institute of Radiological Sciences,
Chiba, pp.
135–155.
92.
Hyodo-TaguchiY.EtohH., 1985. Tritium effects on the gonads of
the aquarium fish, Oryzias latipes. 1. Fecundity and
fertility. In: MatsudairaH.YamaguchiT.EtohH. (Eds.), Proceedings of a Workshop on Tritium Radiobiology and Health
Phys. National Institute of Radiological Sciences,
Chiba, pp.
207–220.
93.
Hyodo-TaguchiY.EtohH., 1986. Effects of tritiated water on germ
cells in medaka II. Diminished reproductive capacity following embryonic
exposure. Radiat. Res. 106,
321–330.
94.
Hyodo-TaguchiY.EtohH., 1993. Vertebral malformations in medaka
(teleost fish) after exposure to tritiated water in the embyonic
stage. Radiat. Res. 135,
400–404.
95.
ICRP, 2005. Low dose
extrapolation of radiation-related cancer risk. ICRP Publication
99. Ann. ICRP35(4).
96.
IlyenkoA.I.KrapivkoT.P., 1993. Ecological consequences of
radioactive contamination for populations of small mammals. In:
Ecological Consequences of Radioactive Contamination in the Southern
Urals. Nauka,
Moscow, pp.
171–180.
97.
InouyeM.KameyamaY., 1986. Long-term neuropathological
consequences of low dose X irradiation on the developing rat
cerebellum. J. Radiat. Res. (Tokyo)27, 240–246.
98.
IwasakiT.HashimotoN.EndohD.ImanisiT.ItakuraC.SatoF., 1996. Life span and tumours in the
first-generation offspring of the gamma-irradiated male mouse.
Int. J. Radiat. Biol. 69,
487–492.
99.
JacquetP.de Saint-GeorgesL.VankerkomJ.Baugnet-MahieuL., 1995. Embryonic death, dwarfism and
fetal malformation after irradiation of embryos at the zygote stage: Studies on
two mouse strains. Mutat. Res.
332, 73–87.
100.
JenshR.P.BrentR.L., 1988. The effect of low level prenatal
X-irradiation on postnatal growth in the Wistar rat.
Growth Dev. Aging52, 53–61.
101.
KalchenkoV.A.RubanovichA.V.ShevchenkoV.A., 1995. Genetical processes in chronically
irradiated populations of Centaurea scabiosa L, growing on the
Eastern Urals radioactive trail. Radiat. Biol.
Radioecol. 35,
708–720.
102.
KalchenkoV.A.FedotovI.S., 2001. Genetic effects of acute and
chronic ionizing irradiation on Pinus sylvestris L. inhabiting in
Chernobyl meltdown area. Genetics37, 437–447.
103.
KarabanR.T.MishenkovN.N.SpirinD.A., 1980. The effects of gamma-irradiation
on forest trees at different seasons. Dokl. Akad. Nauk.
USSR252, 766–768.
104.
KasatkinaS.V.KoshelevaV.V.MigalovskayaV.N.MigalovskyI.P.OganesianS.A., 1973. Chronic impact of dissolved
radionuclides 144Ce and 137Cs on the embryonic growth of salmon.
In: Radioecology of Aquatic Organisms, Vol. 3.
Zinatne, Riga, pp.
25–35.
105.
KhatoonN.HeatherN.W., 1990. Susceptibility of
Dermestes maculatus De Geer (Coleoptera: Dermestidae) to gamma
radiation in a nitrogen atmosphere. J. Stor. Prod.
Res. 26,
227–232.
106.
KlevezalG.A.SokolovA.A., 1999. Retrospective estimation of the
state of reindeer population (Rangifer tarandus) from Novaya
Zemlya during nuclear testing. Russian J. Zoology
(3) 1,
224–233.
107.
KnowlesJ.F., 1992. The effect of chronic radiation on
the humoral immune response of rainbow trout (Oncorhynchus mykiss
Walbaum). Int. J. Radiat. Biol.
62, 239–248.
108.
KobayashiS.HirataH., 1957. Effects of X-radiation upon
rainbow trout (Salmo irideus). Bull. Fac.
Fish. Hokkaido Univ. 8,
23–35.
109.
KobayashiS.MogamiM., 1958. Effects of X-irradiation upon
rainbow trout (Salmo irideus). Bull. Fac.
Fish. Hokkaido Univ. 9,
89–94.
110.
KonnoK., 1980. Effects of gamma-irradiation on
the gonads of the rainbow trout, Salmo gairdnerii irideus, during
embryonic stages. In: Radiation Effects on Aquatic
Organisms. Japan Scientific Societies
Press, Tokyo, pp.
129–133.
111.
KonnoK.EgamiN., 1966. Notes of effects of X-irradiation
on the fertility of the male of Oryzias latipes (Teleostei,
Cyprinodontidae). Annt. Zool. Jpn.
39, 63–70.
112.
KorytnyV.S.ShvedovV.L.PryahinY.A., 1996. Some quantitative relationships between
major long-term effects and certain dosimetric parameters of exposure to Sr-90 in
rats. In: Proceedings of the First International Symposium on Chronic
Radiation Exposure, 9–13 January 1995, Chelyabinsk.
113.
KovalchukO.ArkhipovA.BarylyakI., 2000. Plants experiencing chronic
internal exposure to ionizing radiation exhibit higher frequency of homologous
recombination than acutely irradiated plants. Mutat.
Res. 449,
47–56.
114.
KozubovG.M.TaskaevA.I., 1990. Radiation Exposure of the Coniferous
Forest in the Area Exposed to the Chernobyl Contamination.
Komy Scientific Centre of the Academy of
Sciences, Syktyvkar.
115.
KozubovG.M.TaskaevA.I., 1994a. Radiobiological and Radioecological
Investigations of Trees in the Vicinity of the Chernobyl NPS Accident.
Nauka, St.
Petersburg, p. 256.
116.
KozubovG.M.TaskaevA.I., 1994b. Radiobiological and Radioecological
Investigations of Wood Plants. Nauka,
St. Petersburg, pp.
16–247.
117.
KrivolutskyD.A., 1987. Earthworms as bioindicators of increased
radioactivity. In: PagliaiA.M.OmodeoP. (Eds.), Proceedings of the International Symposium on Earthworms,
April 1985, Bologna, pp. 401–408.
118.
KrivolutskyD.A.PokarzhevskyA.D.UsacheovV.L., 1990. Effect of radioactive
contamination of environment on soil fauna in the area of Chernobyl
NPP. Ecology6, 32–42.
119.
KryshevI.I., 1997. Environmental Risk Analyses for the Ural
Radioactive Pattern. Russian Nuclear
Society, Moscow, pp.
1–210.
120.
LadanovaN.V., 1994. Structure of Anabolic Apparatus of
Conifers Under the Influence of Ionizing Radiation.
Nauka, St.
Petersburg, pp.
1–84.
121.
LandrethH.F.DunawayP.B.CosgroveG.E., 1974. Effects of whole body gamma
irradiation on various life stages of the toad, Bufo woodhousei
fowleri. Radiat. Res. 58,
432–438.
122.
LaskeyJ.W.ParrishJ.L.CahillD.F., 1973. Some effects of lifetime parental
exposure to low levels of tritium on the F2 generation.
Radiat. Res. 56,
171–179.
123.
LaskeyJ.W.BursianS.J., 1976. Some effects of chronic tritium
exposure during selected ages in the rat. Radiat.
Res. 67,
314–323.
124.
LeonardA.DelpouxM.MeyerR.DecatG.LeonardE.D., 1985. Effect of an enhanced natural
radioactivity on mammal fertility. Sci. Total
Environ. 45,
535–542.
125.
LesherS.SacherG.A.GrahnD.HamiltonK.SalleseA., 1965. Survival of mice under duration of
life exposure to gamma rays. II. Pathogenic effects.
Radiat. Res. 24,
239–277.
126.
LyapinE.N.PodgusrskyA.M.KnyazevaR.A., 1971. The effect of radiation from Co-60
and Mn-54 on the roe of trout. In: Problems of Marine
Radiobiology. Transactions of AtlantNIRO, pp.
53–60.
127.
MandelL.TravnicekJ.TalafantovaM.ZahradnickovaM., 1980. The LD50/30 and the survival time
in whole body gamma-irradiated conventional and germfree Minnesota miniature
piglets. Zeitschrift Frier Versuchstierkunde22, 96–100.
128.
MatsudaY.TobariI.YamigiwaJ., 1985. Dose-response relationship of
gamma-ray-induced reciprocal translocations at low doses in spermatogonia of the
crab-eating monkey (Macaca fascicularis).
Mutat. Res. 151,
121–127.
129.
MazaudS.GuigonC.J.LozachA., 2002. Establishment of the reproductive
function and transient fertility of female rats lacking primordial follicle stock
after fetal gamma-irradiation. Endocrinology143, 4775–4787.
130.
McGregorJ.F.NewcombeH.B., 1972a. Dose response for yields of major
eye malformations following low doses of radiation to sperm trout.
Radiat. Res. 49,
155–169.
131.
McGregorJ.F.NewcombeH.B., 1972b. Decreased risk of embryo
mortality following low doses of radiation to trout sperm.
Radiat. Res. 52,
536–544.
132.
MellingerP.J.SchultzV., 1975. Ionizing radiation and wild birds:
A review CRC. Crit. Rev. Environ. Control5, 397–421.
133.
MichibataH., 1976. The role of spermatogonia in the
recovery process from temporary sterility induced by gamma-ray irradiation in the
teleost Oryzias latipes. J. Radiat. Res. (Tokyo)17, 142–153.
134.
MoleR.H.ThomasA.M., 1961. Life-shortening in female CBA mice
exposed to daily irradiation for limited periods of time.
Int. J. Radiat. Biol. 3,
493–508.
135.
MomentG.B., 1972. Recovery and abscopal effects
after inhibitory X-irradiation in earthworm regeneration.
J. Exp. Zool. 181,
33–40.
136.
MrazF.R.WoodyM.C., 1972. Effect of continuous gamma
irradiation of chick embryos upon their gonadal development.
Radiat. Res. 50,
418–425.
137.
MuggenburgB.A.GuilmetteR.A.MewhinneyJ.A., 1996. Toxicity of inhaled plutonium
dioxide in beagle dogs. Radiat. Res.
145, 361–381.
138.
MullerW.U.StrefferC., 1990. Lethal and teratogenic effects
after exposure to X-rays at various times of early murine
gestation. Teratology42, 643–650.
139.
MullerW.U.StrefferC.WojcikA.NiedereichholzF., 1999. Radiation-induced malformations
after exposure of murine germ cells in various stages of
spermatogenesis. Mutat. Res.
425, 99–106.
140.
MuramatsuS.SugaharaT.OkazawaY., 1963. Genetic effects of chronic
low-dose irradiation on mice. Int. J. Radiat.
Biol. 6,
49–59.
141.
MuramatsuS.SugaharaT.TsuchiyaT.OkazawaY., 1965. Effects of chronic low-dose
irradiation for the three successive generations on the breeding behaviour of
mice. Int. J. Radiat. Biol. 8,
523–531.
142.
NCRP, 2005. Extrapolation
of Radiation-induced Cancer Risks from Nonhuman Experimental Systems to
Humans. Report No. 150. National Council on Radiation
Protection and Measurements, Bethesda,
MD.
143.
NewcombeH.B.McGregorJ.F., 1967. Major congenital malformations
from irradiations of sperm and eggs. Mutat. Res.
4, 663–673.
144.
NewcombeH.B.McGregorJ.F., 1972. Increased embryo production
following low doses of radiation to trout spermatozoa.
Radiat. Res. 51,
402–409.
145.
NewcombeH.B.McGregorJ.F., 1973. Benefit and harm from exposure of
vertebrate sperm to low doses of ionizing radiation.
Health Phys. 25,
105–107.
146.
NiiyamaH., 1957. Effects of X-irradiation upon
rainbow trouts (Salmo-irideus) II. Stimulative effects of X-rays
on spermatogenesis in fry. J. Facul. Sci.
13, 281–288.
147.
NortenS.KimlerB.F.MullenixP.J., 1991. Progressive behavioural changes in
rats after exposure to low levels of ionising radiation in utero.
Neurotoxicol. Teratol. 13,
181–188.
148.
OakbergE.F., 1957. Gamma-ray sensitivity of
spermatogonia of the mouse. J. Exp. Zool.
134, 343–356.
149.
OakbergE.F., 1962. Gamma-ray sensitivity of oocytes
of immature mice. Proc. Soc. Exp. Biol. Med.
109, 763–767.
150.
OghisoY.YamadaY., 2003. Comparisons of pulmonary
carcinogenesis in rats following inhalation exposure to plutonium dioxide or X-ray
irradiation. J. Radiat. Res. (Tokyo)44, 261–270.
151.
PampferS.StrefferC., 1988. Prenatal death and malformations
after irradiation of mouse zygotes with neutrons or X rays.
Teratology37, 599–607.
152.
PanterH.C., 1986. Variations in radiosensitivity
during development of the frog Limnodynastes tasmaniensis. J. Exp. Zool. 238,
193–199.
153.
ParkJ.F.BuschbomR.L.DagleG.E.JamesA.C.WatsonC.R.WellerR.E., 1997. Biological effects of inhaled
238PuO2 in beagles. Radiat. Res.
148, 365–381.
154.
PautovY.A.Il'chukovS.V., 1993. State of wood and natural renewal in pine
wood in zone of lethal and sublethal damage. Radioecological investigations in
30-km area of the Chernobyl NPP. In: Proceedings of the Komi Research
Center of Ural Branch. Transactions of the Komi Research Centre of Ural Branch of the
Russian Academy of Science, Issue 127, pp. 118–132, Syktyvkar (In
Russian).
155.
PhillipsL.J.CoggleJ.E., 1988. The radiosensitivity of embryos of
domestic chickens and black-headed gulls. Int. J. Radiat.
Biol. 53,
309–317.
156.
Pietrzak-FlisZ.Wasilewska-GomulkaM., 1984. Effect of lifetime intake of
organically bound tritium and tritiated water on the oocytes of
rats. Radiat. Environ. Biophys.
23, 61–68.
157.
Pinon-LatailladeG.MaasJ., 1985. Continuous gamma irradiation of
rats: Dose rate effect on loss and recovery of spermatogenesis.
Strahlentherapie161, 421–426.
158.
Pinon-LatailladeG.Viguier-MartinezM.C.MaasJ., 1985. Endocrinogical and histological
changes induced by continuous low dose gamma irradiation of the rat
testis. Acta Endocrinol. 109,
558–562.
159.
PitkyanenG.B., 1978. The effect of chronic exposure of
pike (Esox lucius L.) on its reproductive
function. In: Transactions of the Institute of Ecology of
Plants and Animals, Issue 114. Ural Scientific Center of
the Academy of Sciences of the USSR,
Sverdlovsk.
160.
PurdomC.E., 1966. Radiation and mutation in fish disposal
of radioactive wastes into seas, oceans and surface waters. In: Symposium
Proceedings. International Atomic Energy Agency,
Vienna, pp.
861–867.
161.
PurdomC.E.WoodheadD.S., 1973. Radiation damage in
fish. In: SchroderJ.H. (Ed.), Genetics and Mutagenesis of Fish. pp.
67–73. Springer
Verlag, Berlin.
162.
PyastolovaO.A.VershininV.L.TrubetskajaE.A.GatiatullinaYe. Z., 1996. Using amphibians in the
bioindicatoring studies in the territory of the East-Ural radioactive
trace. Ekologia (Ecology)5, 378–382.
163.
RaabeO.G.BookS.A.ParksN.J.ChrispC.E.GoldmanM., 1981. Lifetime studies of 226Ra and 90Sr
toxicity in beagles — a status report. Radiat.
Res. 86,
515–528.
164.
ReichleD.E.WitherspoonJ.P.MitchellM.J.StyronC.E., 1972. Effects of beta-gamma radiation of
earthworms under simulated fallout conditions. In: Proceedings of
Survival of Food Crops and Livestock in the Event of Nuclear War. AEC Symposium
Series 24. Brookhaven National Laboratory, 1970. CONF - 700909 US Atomic Engergy
Commission, Washington, DC, pp.
527–534.
165.
RessH., 1962. Effects of gamma radiation on two
decapod crustaceans, Palaemonetes pugio and Uca
pugnax. Chesapeake Sci. 3,
29–34.
166.
ReynersH.Gianfelici de ReynersE.PoortmansF.GrametzA.CoffignyH.MaisinJ.R., 1992. Brain atrophy after foetal
exposure to very low doses of ionizing radiation. Int. J.
Radiat. Biol. 62,
619–626.
RiordanD.F., 1964. Effect of continuous low-level
gamma-irradiation on successive generations of Dahlbominus
fuscipennis (zett.) (Hymenoptera:
Eulophidae). Chromosoma42, 685–688.
169.
RönnbäckC., 1965. Effects of continuous irradiation
during gestation and suckling periods in mice. Acta
Radiol. Ther. Phys. Biol. 3,
169–176.
170.
RönnbäckC., 1983. Effects on foetal ovaries after
protracted, external gamma irradiation as compared with those from internal
deposition. Acta Radiol. Oncol.
22, 465–471.
171.
RudolphT.D., 1971. Seed yield and quality in white
spruce cross-pollinated with gamma-irradiated pollen. In:
NelsonD.J. (Ed.), Radionuclides in Ecosystems. Proceedings of
the Third National Symposium on Radioecology, 10–12 May 1971. CONF-710501-P2. Oak
Ridge, TN, pp. 972–977.
172.
RughR.GruppE., 1961. Effect of low level X-irradiation
on the fertilised egg of the mammal. Exp. Cell
Res. 25,
302–310.
173.
RustJ.H.TrumB.F.WildingJ.L.SimonsC.S.ComarC.L., 1954. Lethal dose studies with burros
and swine exposed to whole body cobalt-60 irradiation.
Radiology62, 569–574.
174.
RutledgeJ.C.GenerosoW.M.ShourbajiA.CainK.T.GansM.OlivaJ., 1992. Developmental anomalies derived
from exposure of zygotes and first-cleavage embryos to mutagens.
Mutat. Res. 296,
167–177.
175.
SakamotoC.H.TakahashiC.S., 1981. Biological effects of gamma radiation on
Africanized bees. In: Proceedings of the XXVIIIth International Congress
of Apiculture, Acapulco. Apimondia, Bucharest, pp. 284–287, Oct 23–29,
1981.
176.
SarapultsevB.I.GeraskinS.A., 1993. Genetic Principles of Radioresistance and
Evolution. Energoatomizdat,
Moscow.
177.
SarmaY.S.R.K.SinghS.B., 1974. Effects of gamma rays on the
chromosomes of Nitella flagelliformis BR.
Cytologia39, 303–308.
178.
SasakiS., 1991. Influence of age of mice at
exposure to radiation on life shortening and carcinogenesis.
J. Radiat. Res. (Tokyo)2, 73–85.
179.
SazykinaT.KryshevI.I., 2006. Radiation effects in wild
terrestrial vertebrates — the EPIC collection. J. Environ.
Radioact. 88, 11–48. N5
(in Russian).
180.
SchroderJ.H., 1969a. Inheritance of the
radiation-induced spinal curvatures in the guppy Lebistes
reticulates. Can. J. Genet. Cytol.
11, 937–947. N5 (in
Russian).
181.
SchroderJ.H., 1969b. X-ray induced mutations in the
poeciliid fish, Lebistes retriculatus Peters. Mutat. Res. 7,
75–90.
182.
SchroderJ.H., 1969c. Radiation-induced spermatogonial
exchange between the X & Y chromosomes in the guppy.
Can. J. Genet. Cytol. 11,
948–954.
183.
SchroderJ.H.HolzbergS., 1972. Population genetics of
Lebister (Poecilia) reticulatus
Peters (Poeciliidae; Pisces) 1. Effects of radiation-induced mutations
on the segregation ratio in post irradiation F2.
Genetics70, 621–630.
184.
ScottB.R.HahnF.F.SnipesM.B., 1990. Predicted and observed early
effects of combined alpha and beta lung irradiation.
Health Phys. 59,
791–805.
185.
SearleA.G.BeecheyC.V.GreenD.HowellsG.R., 1980. Comparative effects of protracted
exposure to Co-60 gamma radiation and Pu-239 alpha radiation on breeding
performance of female mice. Int. J. Radiat. Biol.
37, 189–200.
186.
SheridanW., 1968. The effects of acute single or
fractionated X-ray treatment on mouse spermatogonia.
Mutat. Res. 5,
163–172.
187.
SheridanW., 1971. The effects of the time interval
in fractionated X ray treatment of mouse spermatogonia.
Mutat. Res. 13,
163–169.
188.
ShevchenkoV.A.PomerantsevaM.D.RamayaL.K.ChechovichA.V., 1991. Genetic consequences of Chernobyl
accident for mammals. In: Problems of the Environmental
and Natural Resources. pp.
66–79.
189.
ShimaA.ShimadaA., 1991. Development of a possible non
mammalian test system for radiation-induced germ-cell mutagenesis using a fish,
the Japanese medaka (Oryzias latipes).
Proc. Natl. Acad. Sci. 88,
2545–2549.
190.
ShimadaY.EgamiN., 1982. An electron microscopic study of
radiation damage and their recovery in the germ cells in the early development of
Oryzias latipes. J. Facul. Sci. 15,
255–272.
191.
ShleiferG.S.ShekhanovaI.A., 1980. The impact of ionizing radiation
on the immuno-physiological state of fish. In: Problems
and Tasks of Animal Radioecology. pp.
35–43. IlyenkoA. I., Editor, Nauka Publ.,
Moscow.
192.
SidorovV.P., 1994. Cytogenetic effects in Pinus
sylvestris needle cells as a result of the Chernobyl accident.
Radiat. Biol. Radioecol. 34,
847–851.
193.
SmithR.F., 1970. The vegetation structure of a Puerto
Rican rain forest before and after short-term gamma irradiation. In:
OdumH.T.PigeonR.F. (Eds.), A Tropical Rain Forest. TID-24270, pp.
D103-D140.
194.
SolomonH.M.BeckmanD.A.BuckS.J.GorsonR.O.MillsR.E.BrentR.L., 1994. Comparative effects of neutron
irradiation and x irradiation on the embryonic development of the
rat. Radiat. Res. 137,
226–230.
195.
SpaldingJ.F.TrujilloT.T.McWilliamsP., 1964. Dose rate effect on survival of
mice during continuous (23-24 hr/day) gamma ray exposures.
Health Phys. 10,
709–713.
196.
SpaldingJ.F.PrineJ.R.TietjenG.L., 1978. Late biological effects of
ionizing radiation as influenced by dose, dose rate, age at exposure and genetic
sensitivity to neoplastic transformation. In: Late
Biological Effects of Ionizing Radiation. International
Atomic Energy Agency, Vienna, pp.
3–11.
197.
SparrowA.H.SchairerL.A.SparrowR.C., 1963. The radiosensitivity of
gimnosperms. I. The effect of dormancy on the response of Pinus
strobus seedlings to acute gamma radiation.
Radiat. Bot. 3,
169–173.
198.
SparrowA.H.SchairerL.A.WoodwellG.M., 1965. Tolerance of Pinus
rigida trees to a ten-year exposure to chronic gamma irradiation from
cobalt-60. Radiat. Bot. 5,
7–22.
199.
SparrowR.C.SparrowA.H., 1965. Relative radiosensitivities of
woody and herbaceous spermatophytes. Science147, 1449–1451.
200.
SparrowA.H.NaumanC.H.DonnellyG.M.WillisD.L.BakerD.G., 1970. Radiosensitivities of selected
amphibians in relation to their nuclear and chromosome volumes.
Radiat. Res. 42,
353–371.
201.
SparrowA.H.SchwemmerS.S.BottinoP.J., 1971. The effects of external gamma
radiation from radioactive fallout on plants with special reference to crop
production. Radiat. Bot. 11,
85–118.
202.
SpiridonovS.I.FesenkoS.V.AlexakhinR.M., 1989. A mathematical simulation of the
consequences of acute irradiation on the trees of a forest
biogeocenosis. Radiobiologiya29, 544–549.
203.
SpirinD.A., 1996. Effects of ionizing radiation on
organisms of terrestrial ecosystems in the East Urals radioactive track
territory. In: Radioecology and the Restoration of
Radioactive-contaminated Sites. Proceedings of the NATO Advanced Study
Institute on Radio-Active Contaminated Site Restoration, Zarechny, Sverdlovsk,
Russia, 1995, NATO Science Partnership Sub-Series, 2, Vol. 13, LuykxF.F.FrisselM.J. (Eds.), Kluwer Academic Publishers,
pp. 235–244.
204.
SpirinD.A.MishenkovN.N.KarabanR.T., 1981. The effects of acute
gamma-irradiation on photo-synthetic functions of pine and birch
trees. Lesovedeniye4, 75–82.
205.
SpirinD.A.AlekakhinR.M.KarabanR.T., 1985a. Radiation-induced and
postirradiation changes in forest biogeocenosis after acute gamma irradiation:
Postirradiation recovery of a pine-birch forest.
Radiobiology25, 560–563.
206.
SpirinD.A.AlexakhinR.M.KarabanR.T.MishenkovN.I., 1985b. Radiation and post-radiation
changes in forest biogeocenosis at acute gamma-exposure. Effect of acute
gamma-irradiation on production of pine-birch forest.
Radiobiology25, 278–280.
207.
StadlerJ.GowenJ.W., 1964. Observations of the effects of
continuous irradiation over ten generations on reproductivities of different
strains of mice. In: CarlsonW.D.GassnerF.X. (Eds.), Effects of Ionizing Radiation on the Reproductive
System. Macmillan, New
York, pp. 111–122.
208.
StarkK., 2006. Risk from Radionuclides: a Frog's
Perspective. Accumulation of 137Cs in a Riparian Wetland, Radiation Doses, and
Effects on Frogs and Toads after Low-dose Rate Exposure. Doctoral thesis.
Stockholm University,
Stockholm.
209.
StearnerS.P.ChristianE.J.B., 1972. Late effects of ionising
radiations in the chicken: Survival, body weight and pathology.
Radiat. Res. 52,
179–196.
210.
StorerJ.B.SerranoL.J.DardenE.B.JerniganM.C.UllrichR.L., 1979. Life shortening in RFm and BALB/c
mice as a function of radiation quality, dose and dose rate.
Radiat. Res. 78,
122–161.
211.
StorozhukN.G.ShekhanovaI.A., 1977. Lipoperoxidation in the liver and muscles
of carp yearlings on long-term living in the environment with the increased
content of radionuclides. In: Proceedings of the First All-Union
Conference. Nauka,
Moscow, pp.
89–91.
212.
StrandJ.A.FujiharaM.P.TempletonW.L.TangenE.G., 1973. Suppression of Chondrococcus
columnaris immune response in rainbow trout sub-lethally exposed to
tritiated water during embryogenesis. In: Radioactive Contamination of
the Marine Environment Proceedings of an International Conference, 10–14 July 1972,
Seattle. STI/PUB/313, IAEA,
Vienna. pp.
543–550.
213.
StrandJ.A.FujiharaM.P.BurdettR.D.PostonT.M., 1977. Suppression of the primary immune
response in rainbow trout, Salmo gairdneri, sublethally exposed
to tritiated water during embryogenesis. J. Fish. Board
Can. 34,
1293–1304.
214.
StrandJ.A.FujiharaM.P.PostonT.M.AbernethyC.S., 1982. Permanence of suppression of the
primary immune response in rainbow trout, Salmo gairdneri,
sublethally exposed to tritiated water during embryogenesis.
Radiat. Res. 91,
533–541.
215.
SursoM.V., 1993. Effect of chronical exposure on
male reproductive sphere of Scotch pine. Radioecological
investigations in 30-km area of Chernobyl NPP. In: Proceedings of the
Komi Research Center of Ural Branch of the Russian Academy of Science,
Sykt.
216.
SuvorovaL.I.SpirinD.A.MartyushevV.Z.SmirnovE.G.TarasovO.V.SheinG.P., 1993. Assessment of biological and
ecological consequences of radioactive contamination of
biogeocenoses. In: Radiation Aspects of the Chernobyl
Accident, Vol. 2.
Gidrometeoizdat, St.
Petersburg, pp.
321–325.
217.
SuzukiJ.EgamiN., 1983. Mortality of the earthworms,
Eisenia foetida, after gamma radiation at different stages of
their life history. J. Radiat. Res. (Tokyo)24, 209–220.
218.
TanakaS.TanakaI.B.IIISasagawaS., 2003. No lengthening of life span in
mice continuously exposed to gamma rays at very low dose rates.
Radiat. Res. 160,
376–379.
219.
TempletonW.L., 1970. Resistance of fish eggs to acute
and chronic irradiation. In: Disposal of Radioactive
Wastes into Seas, Oceans, and Surface Waters. Symposium Proceedings,
16–20 May 1966. International Atomic Energy Agency,
Vienna, pp.
847–860.
220.
TesterJ.R.EwertM.A.SiniffD.B., 1970. Effects of ionizing on natural and
laboratory populations of Manitoba toads, Bufo hemiophrys. Radiat. Res. 44,
379–389.
221.
ThomsonJ.F.WilliamsonF.S.GrahnD.AinsworthE.J., 1981. Life shortening in mice exposed to
fission neutrons and gamma rays. I. Single and short-term fractionated
exposure. Radiat. Res. 86,
559–572.
222.
ThomsonJ.F.WilliamsonF.S.GrahnD., 1985. Life shortening in mice exposed to
fission neutrons and gamma rays. Radiat. Res.
104, 420–428.
223.
ThomsonJ.F.GrahnD., 1989. Life shortening in mice exposed to
fission neutrons and gamma rays. VIII Exposures to continuous gamma
radiation. Radiat. Res. 118,
151–160.
224.
TikhomirovF.A.FedotovI.S.KarabanR.T., 1978. The effects of acute
gamma-irradiation on the reproductive organs of Scots pine.
Lesovedeniye4, 75–83.
225.
TikhomirovF.A.FedotovI.S., 1982. Radiosensitivity of generative and
vegetative organs of Pinus sylvestris in autumn and spring
time. Radiobiology22, 502–506.
226.
TiltonE.W.BurkholderW.E.CogburnR.R., 1966a. Effect of gamma radiation on
Trogoderma glabrum and Attagenus piceus. J. Econ. Entomol. 59,
944–948.
227.
TiltonE.W.BurkholderW.E.CogburnR.R., 1966b. Effects of gamma radiation on
Rhyzopertha dominica, Sitophilus oryzae, Tribolium confusum,
and Lasioderma serricorne. J. Econ. Entomol. 59,
1363–1368.
228.
TrumB.LaneJ.J.KuhnU.S.G.RustJ.H., 1959. The mortality response of the
Burro (Equus asinus) to a single total body exposure of gamma
radiations from Zr-95/Nb-95. Radiat. Res.
11, 314–325.
229.
TurnerF.B.LannomJ.R.KaniaH.J.KowalewskyB.W., 1967. Acute gamma irradiation
experiments with the lizard Uta stansburiana. Radiat. Res. 31,
27–35.
230.
Uma DeviP.HossainM.BishtK.S., 1999. Effect of late fetal irradiation
on adult behaviour of mouse: Dose-response relationship.
Neurotoxicol. Teratol. 21,
193–198.
231.
UNSCEAR, 1977. Sources and
Effects of Ionising Radiation. United Nations Scientific Committee on the
Effects of Atomic Radiation report to the General Assembly. Annex H, Genetic Effects
of Radiation. United Nations, New
York, pp. 425–564.
232.
UNSCEAR, 1986. Genetic and
Somatic Effects of Ionizing Radiation. United Nations Scientific
Committee on the Effects of Atomic Radiation report to the General Assembly with
annexes. E.86.IX.9. United Nations,
New York.
233.
UNSCEAR, 1996. Effects of
Radiation on Plants and Animals. United Nations Scientific Committee on
the Effects of Atomic Radiation report to the General Assembly with annexes.
E.96.IX.3. United Nations, New
York.
234.
UNSCEAR, 2001. Hereditary
Effects of Radiation. United Nations Scientific Committee on the Effects
of Atomic Radiation report to the General Assembly with scientific annex.
United Nations, New
York.
235.
UptonA.C.RandolphM.L.ConklinJ.W., 1967. Late effects of fast neutrons and
gamma rays in mice as influenced by the dose rate of irradiation: Life
shortening. Radiat. Res. 32,
493–509.
236.
VriesendorpH.M.van BekkumD.W., 1984. Susceptibility to total body
irradiation. In: BroerseJ.J.MacVittieT.J. (Eds.), Response of Different Species to Total Body
Irradiation. Martinus Nijhoff,
Dordrecht, pp.
43–57.
237.
WadleyG.W.WelanderA.D., 1971. X-rays and temperature: Combined
effects on mortality and growth of salmon embryos. Trans.
Am. Fish. Soc. 100,
267–275.
238.
WalkerC.StreisingerG., 1983. Induction of mutations by y-rays
in pregonial germ cells of zebrafish embryos.
Genetics103, 125–136.
239.
WangB.ZhouX., 1995. Effects of prenatal exposure to
low-dose beta radiation from tritiated water on the neurobehaviour of
mice. J. Radiat. Res. (Tokyo)36, 103–111.
240.
WardE.BeachS.A.DysonE.D., 1970. The Effect of Acute X-irradiation
on the Development of the Eggs of the Plaice, Pleuronectes
platessa. UKAEA PG Report 1013(W). United Kingdom Atomic
Energy Authority, Harwell,
England, pp. 1–10.
241.
WelanderA.D.DonaldsonL.R.FosterR.F.BonhamK.SeymourA.H., 1948. The effects of roentgen rays on
the embryos and larvae of the Chinook salmon.
Growth12, 203–242.
242.
WelanderA.D.WadleyG.W.DysartD.K., 1971. Growth and fecundity of rainbow
trout (Salmo gairdneri) exposed to single sublethal doses of
X-rays during the eyed embryo stage. J. Fish. Board
Can. 28,
1181–1184.
243.
WellerR.E.BuschbomR.L.DagleG.E.RaganH.A.ParkJ.F., 1995. Hepatic effects of inhaled
plutonium dioxide in beagles. Radiat. Res.
144, 73–81.
244.
WhiteJ.C.AngelovicJ.W., 1966. Tolerances of several marine
species to Co-60 irradiation. Chesapeake Sci.
7, 36–39.
245.
WhiteJ.C.Jr.AngelovicJ.W., 1968. Interactions of chronic gamma radiation,
salinity and temperature on the morphology of postlarval pinfish, lagondon
rhomboids. In: Proceedings of a Workshop of Egg, Larval, and Juvenile
Stages of Fish in Atlantic Coast Estuaries. Bears Bluff
Laboratories, Wadmalaw Island, SC,
pp. 199–209.
246.
WoodheadD.S., 1977. The effects of chronic irradiation
on the breeding performance of the guppy, Poecilia reticulata
(Osteichthyes: Teleostei). J. Radiat. Biol.
32, 1–22.
247.
WoodheadD.S., 1984. Contamination due to radioactive
materials. Marine Ecol. 5,
1111–1287.
248.
WoodheadD.S., 1998. The Impact of Radioactive Discharges on
Native British Wild-life and the Implications for Environmental
Protection. Environment Agency R&D Technical Report P135.
Environment Agency,
Bristol.
249.
WoodwellG.M., 1967. Radiation and the patterns of
nature. Sensitivity of natural plant populations to ionizing radiation seems to
follow known ecological patterns. Science156, 461–470.
250.
WoodwellG.M.MillerL.N., 1963. Chronic gamma radiation affects
the distribution of radial increment in Pinus rigida
stems. Science139, 222–223.
251.
WoodwellG.M.OostingJ.K., 1965. Effects of chronic gamma
irradiation on the development of old field plant communities.
Radiat. Bot. 5,
205–222.
252.
YamadaT.YukawaK.AsamiK., 1982. Effects of chronic HTO beta or
60Co gamma radiation on pre-implantation mouse development in
vitro. Radiat. Res. 92,
359–369.
253.
YasudaT.AokiK.MatsumotoA., 2006. Radiation-induced brain cell death
can be observed in living medaka embryos. J. Radiat.
Res. 47,
295–303.
254.
YasudaT.YoshimotoM.MaedaK.MatsumotoA.MaruyamaK.IshikawaY., in press. Rapid and simple method of quantitative
evaluation of neurocytotoxic effects of radiation on developing medaka
brain. J. Radiat. Res.
49(5),
533–540.
255.
ZachR.MayohK.R., 1982. Breeding biology of tree swallows
and house wrens in a gradient of gamma radiation.
Ecology63, 1720–1728.
256.
ZachR.MayohK.R., 1984. Gamma radiation effects on
nestling tree swallows. Ecology65, 1641–1647.
257.
ZachR.MayohK.R., 1986a. Gamma irradiation of tree swallow
embryos and subsequent growth and survival. J. Cooper
Ornithol. Soc. 88,
1–10.
258.
ZachR.MayohK.R., 1986b. Gamma-radiation effects on
nestling house wrens: A field study. Radiat. Res.
105, 49–57.
259.
ZamanM.S.LancasterF.E.HuppE.W., 1997. Physical and motor development in
male and female rat offspring prenatally exposed to gamma
radiation. J. Environ. Sci. Health32, 313–325.