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Original Article

The Radiosensitivity of Germ-cells at Various Stages of Ovarian Development

Pages 581-590 | Received 24 Jul 1961, Published online: 03 Jul 2009

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Read on this site (14)

C. Rönnbäck. (1988) The Age Dependence of Radiation Sensitivity of the Gonads of Female Mice. Acta Oncologica 27:4, pages 399-405.
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H. Tateno & K. Mikamo. (1985) Absence of Late Effects on Survival and Developmental Abilities of Pachytene Oocytes X-irradiated during Neonatal Stages in the Chinese Hamster. International Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine 49:1, pages 121-130.
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B. P. Pareek, G. Mehta, H. C. Bhartiya & P. K. Dev. (1983) Response of Developing Mouse Liver Irradiated in Utero and Its Modification by 2-Mercaptopropionylglycine. Acta Radiologica: Oncology 22:1, pages 55-60.
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C. Rönnbäck. (1981) Influence of 90Sr-Contaminated Milk on the Ovaries of Foetal and Young Mice. Acta Radiologica: Oncology 20:2, pages 131-135.
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C. Rönnbäck. (1979) Effect of 90Sr on Ovaries of Foetal Mice Depending on Time for Administration During Pregnancy. Acta Radiologica: Oncology, Radiation, Physics, Biology 18:3, pages 225-234.
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Satoshi Hamaguchi. (1976) Change in the Radiation Responses of Oogonia in the Embryos and Fry of the Fish Oryzias Latipes. International Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine 29:6, pages 565-570.
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R.J. Haas, W. Schreml, T.M. Fliedner & W. Calvo. (1973) The Effect of Tritiated Water on the Development of the Rat Oocyte after Maternal Infusion during Pregnancy. International Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine 23:6, pages 603-609.
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R.J. Haas & T.M. Fliedner. (1971) The Effect of Tritiated Thymidine on the Oocytes of Foetal Rats Following Maternal Infusion in Pregnancy. International Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine 19:2, pages 197-200.
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C. Rönnbäck, B. Henricson & A. Nilsson. (1971) Effect of different doses of 90Sr on the ovaries of the foetal mouse. Acta Radiologica: Diagnosis 11:sup310, pages 200-209.
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B. Henricson & A. Nilsson. (1970) Roentgen Ray Effects on the Ovaries of Foetal Mice. Acta Radiologica: Therapy, Physics, Biology 9:5, pages 443-448.
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C. Rönnbäck. (1967) Effect on Fertility of Continuous Gamma-Irradiation During the Suckling Period in Mice. Acta Radiologica: Diagnosis 6:1, pages 53-60.
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B.H. Erickson. (1967) Radioresponse of the Pre-puberal Porcine Ovary. International Journal of Radiation Biology and Related Studies in Physics, Chemistry and Medicine 13:1, pages 57-67.
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Articles from other publishers (22)

Quynh-Nhu Nguyen, Nadeen Zerafa, Jock K. Findlay, Martha Hickey & Karla J. Hutt. (2021) DNA repair in primordial follicle oocytes following cisplatin treatment. Journal of Assisted Reproduction and Genetics 38:6, pages 1405-1417.
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Rei Nakahira, Yoshiko Ayabe, Ignacia Braga-Tanaka, Satoshi Tanaka & Jun-Ichiro Komura. (2020) Effects of Continuous In Utero Low- and Medium-Dose-Rate Gamma-Ray Exposure on Fetal Germ Cells. Radiation Research 195:3.
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Q N Nguyen, N Zerafa, S H Liew, J K Findlay, M Hickey & K J Hutt. (2019) Cisplatin- and cyclophosphamide-induced primordial follicle depletion is caused by direct damage to oocytes. Molecular Human Reproduction 25:8, pages 433-444.
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Quynh-Nhu Nguyen, Nadeen Zerafa, Seng H. Liew, F. Hamish Morgan, Andreas Strasser, Clare L. Scott, Jock K. Findlay, Martha Hickey & Karla J. Hutt. (2018) Loss of PUMA protects the ovarian reserve during DNA-damaging chemotherapy and preserves fertility. Cell Death & Disease 9:6.
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Jeffrey B. Kerr, Karla J. Hutt, Ewa M. Michalak, Michele Cook, Cassandra J. Vandenberg, Seng H. Liew, Philippe Bouillet, Alea Mills, Clare L. Scott, Jock K. Findlay & Andreas Strasser. (2012) DNA Damage-Induced Primordial Follicle Oocyte Apoptosis and Loss of Fertility Require TAp63-Mediated Induction of Puma and Noxa. Molecular Cell 48:3, pages 343-352.
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P.B. Selby, S.S. Lee, E.M. Kelley, J.W. Bangham, G.D. Raymer & P.R. Hunsicker. (1991) Specific-locus experiments show that female mice exposed near the time of birth to low-LET ionizing radiation exhibit both a low mutational response and a dose-rate effect. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 249:2, pages 351-367.
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Z. Pietrzak-Flis & M. Wasilewska-Gomułka. (1984) Effect of lifetime intake of organically bound tritium and tritiated water on the oocytes of rats. Radiation and Environmental Biophysics 23:1, pages 61-68.
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Terry G. Baker & Leslie L. Franchi. 1984. Ultrastructure of Reproduction. Ultrastructure of Reproduction 140 155 .
Andrew G. Hendrickx, Pamela E. Binkerd & Jon M. Rowland. 1983. Issues and Reviews in Teratology. Issues and Reviews in Teratology 149 180 .
R. Lowry Dobson & James S. Felton. (1983) Female germ cell loss from radiation and chemical exposures. American Journal of Industrial Medicine 4:1, pages 175-190.
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C. Rönnbäck & W. Sheridan. (1979) Induction of lethal mutations in female mice by 9 generations of γ-irradiation during foetal development. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 61:2, pages 275-285.
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M. Callebaut. (1978) 3H-Thymidine incorporation (DNA synthesis) and radiotoxicity in the ovary of the Japanese quail before and during follicle formation. Experientia 34:5, pages 651-652.
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Curt Rönnbäck. (1978) Dominant and recessive effects of induced lethals in female mice by exposure to gamma-irradiation during the 10th to 14th day of intrauterine life. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 49:1, pages 61-70.
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D. Pearson & G. J. D’Angio. 1975. Cancer in Children. Cancer in Children 29 47 .
T.G. Baker. (1971) Comparative aspects of the effects of radiation during oogenesis. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 11:1, pages 9-22.
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P. MAULEON. 1969. Reproduction in Domestic Animals. Reproduction in Domestic Animals 187 215 .
. (1968) Proceedings of the Symposium on the Effects of Low Radiation Doses on the Maturation of the Developing (human) Ovum and Foetus. The British Journal of Radiology 41:489, pages 714-722.
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M. Callebaut. (1968) Development of the gonads of mice after intense incorporation of tritiated thymidine during the period of oogenesis. Experientia 24:8, pages 828-829.
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D.R. DAVIES & H.J. EVANS. 1966. 243 353 .
Alexander Catsch, Hans Cottier, Takashi Makinodan, Adolf Morczek, Ernest C. Pollard, Roberts Rugh, Rolf Sievert, Gun-Astri Swedjemark & Christopher WilsonH. Cottier. 1966. Strahlenbiologie / Radiation Biology. Strahlenbiologie / Radiation Biology 35 302 .
Solly Zuckerman. (1965) The sensitivity of the gonads to radiation. Clinical Radiology 16:1, pages 1-15.
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ANITA M. MANDL. (1964) THE RADIOSENSITIVITY OF GERM CELLS. Biological Reviews 39:3, pages 288-367.
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