Thyroid Cancer after Childhood Exposure to External Radiation: An Updated Pooled Analysis of 12 Studies
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M. Tucker | J. Lubin | L. Pottern | R. Shore | G. Neta | L. Veiga | P. Bhatti | E. Holmberg | A. Schneider | L. Damber | F. de Vathaire | H. Anderson | M. J. Adams | R. Johansson | M. Hawkins | S. Sadetzki | R. Kleinerman | R. Sakata | P. Inskip | M. Lundell | Mike Hawkins | M. Jacob Adams | Arthur B. Schneider | Jay H. Lubin
[1] Masahiro Ito,et al. Long‐term trend of thyroid cancer risk among Japanese atomic‐bomb survivors: 60 years after exposure , 2013, International journal of cancer.
[2] M. Tucker,et al. Absolute risk prediction of second primary thyroid cancer among 5-year survivors of childhood cancer. , 2013, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[3] M. Tucker,et al. A Pooled Analysis of Thyroid Cancer Incidence Following Radiotherapy for Childhood Cancer , 2012, Radiation research.
[4] A. Sigurdson,et al. Chemotherapy and Thyroid Cancer Risk: A Report from the Childhood Cancer Survivor Study , 2011, Cancer Epidemiology, Biomarkers & Prevention.
[5] Breast cancer risk after radiation treatment at infancy: potential consequences of radiation-induced genomic instability. , 2011, Radiation protection dosimetry.
[6] R. Shore,et al. Thyroid Cancer Risk 40+ Years after Irradiation for an Enlarged Thymus: An Update of the Hempelmann Cohort , 2010, Radiation research.
[7] A. Sigurdson,et al. Risk of Second Primary Thyroid Cancer after Radiotherapy for a Childhood Cancer in a Large Cohort Study: An Update from the Childhood Cancer Survivor Study , 2010, Radiation research.
[8] D. Lefkopoulos,et al. Thyroid adenomas and carcinomas following radiotherapy for a hemangioma during infancy. , 2009, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[9] E. Ron. Thyroid cancer incidence among people living in areas contaminated by radiation from the Chernobyl accident. , 2007, Health physics.
[10] D. L. Preston,et al. Solid Cancer Incidence in Atomic Bomb Survivors: 1958–1998 , 2007, Radiation research.
[11] Raghu Kacker,et al. Random-effects model for meta-analysis of clinical trials: an update. , 2007, Contemporary clinical trials.
[12] M. Stovall,et al. Risk of thyroid cancer after childhood exposure to ionizing radiation for tinea capitis. , 2006, The Journal of clinical endocrinology and metabolism.
[13] J. Lubin,et al. Proliferative activity of human thyroid cells in various age groups and its correlation with the risk of thyroid cancer after radiation exposure. , 2006, The Journal of clinical endocrinology and metabolism.
[14] Enrique F Schisterman,et al. The limitations due to exposure detection limits for regression models. , 2006, American journal of epidemiology.
[15] J. Olsen,et al. Radiation dose and relapse are predictors for development of second malignant solid tumors after cancer in childhood and adolescence: A population-based case-control study in the five Nordic countries , 2006, Acta oncologica.
[16] David J Brenner,et al. Solid tumor risks after high doses of ionizing radiation. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[17] Yan Liu,et al. Primary thyroid cancer after a first tumour in childhood (the Childhood Cancer Survivor Study): a nested case-control study , 2005, The Lancet.
[18] J. Cerhan,et al. Epidemiologic Evaluation of Measurement Data in the Presence of Detection Limits , 2004, Environmental Health Perspectives.
[19] W. Heidenreich,et al. Time trends of thyroid cancer incidence in Ukraine after the Chernobyl accident , 2004, Journal of radiological protection : official journal of the Society for Radiological Protection.
[20] Raymond J Carroll,et al. A Reanalysis of Thyroid Neoplasms in the Israeli Tinea Capitis Study Accounting for Dose Uncertainties , 2004, Radiation research.
[21] J. Lubin,et al. Multiple neoplasms in an irradiated cohort: pattern of occurrence and relationship to thyroid cancer outcome. , 2002, The Journal of clinical endocrinology and metabolism.
[22] S. Thompson,et al. Quantifying heterogeneity in a meta‐analysis , 2002, Statistics in medicine.
[23] S. Lindberg. Radiotherapy of childhood haemangiomas: From active treatment to radiation risk estimates , 2001, Radiation and environmental biophysics.
[24] R J Carroll,et al. Thyroid Cancer Following Scalp Irradiation: A Reanalysis Accounting for Uncertainty in Dosimetry , 2001, Biometrics.
[25] F. de Vathaire,et al. Estimation of the radiation dose from radiotherapy for skin haemangiomas in childhood: the ICTA software for epidemiology. , 2000, Physics in medicine and biology.
[26] M. Schlumberger,et al. Thyroid carcinomas after irradiation for a first cancer during childhood. , 1999, Archives of internal medicine.
[27] M. Schlumberger,et al. Characterization and radiosensitivity at high or low dose rate of four cell lines derived from human thyroid tumors. , 1997, International journal of radiation oncology, biology, physics.
[28] T. Hakulinen,et al. Breast cancer after radiotherapy for skin hemangioma in infancy. , 1994, Radiation research.
[29] J H Lubin,et al. Thyroid cancer after exposure to external radiation: a pooled analysis of seven studies. , 1995, Radiation research.
[30] A. Wallgren,et al. Cancer incidence after radiotherapy for skin haemangioma during infancy. , 1995, Acta oncologica.
[31] J. Lubin,et al. Dose-response relationships for radiation-induced thyroid cancer and thyroid nodules: evidence for the prolonged effects of radiation on the thyroid. , 1993, The Journal of clinical endocrinology and metabolism.
[32] V. S. Kazakov,et al. Thyroid cancer after Chernobyl , 1992, Nature.
[33] R. Shore,et al. Issues and epidemiological evidence regarding radiation-induced thyroid cancer. , 1992, Radiation research.
[34] R. Hoover,et al. Therapeutic radiation at a young age is linked to secondary thyroid cancer. The Late Effects Study Group. , 1991, Cancer research.
[35] R. Hornung,et al. Estimation of Average Concentration in the Presence of Nondetectable Values , 1990 .
[36] J. Lubin,et al. Thyroid nodularity after childhood irradiation for lymphoid hyperplasia: a comparison of questionnaire and clinical findings. , 1990, Journal of clinical epidemiology.
[37] B. Modan,et al. Thyroid neoplasia following low-dose radiation in childhood. , 1989, Radiation research.
[38] C. Fürst,et al. Cancer incidence after radiotherapy for skin hemangioma: a retrospective cohort study in Sweden. , 1988, Journal of the National Cancer Institute.
[39] N. Laird,et al. Meta-analysis in clinical trials. , 1986, Controlled clinical trials.
[40] B. Modan,et al. Benign and malignant thyroid neoplasms after childhood irradiation for tinea capitis. , 1980, Journal of the National Cancer Institute.
[41] Enrique Egaña,et al. Effects of Ionizing Radiation , 1971 .