[1] Bjork-Eriksson T, West C, Karlsson E, et al.Tumor radiosensitivity (SF2) is a prognostic factor for local control in head and neck cancers[J].Int J Radiat Oncol Biol Phys, 2000, 46(1):13-19.
[2] Widel M, Jedrus S, Owczarek S, et al.The increment of micronucleus frequency in cervical carcinoma during irradiation in vivo and its prognostic value for tumour radiocurability[J].Br J Cancer, 1999, 80(10):1599-1607.
[3] Lee T, O'Brien KF, Naves JL, et al.Micronuclei in lymphocytes of prostate cancer patients undergoing radiation therapy[J].Mutat Res, 2000, 469(1):63-70.
[4] Abend M, Rhein A, Gilbertz KP, et al.Correlation of micronucleus and apoptosis assay with reproductive cell death[J].Int J Radiat Biol, 1995, 67:315-326.
[5] Verheij M, Bartelink H.Radiation-induced apoptosis[J].Cell Tissue Res, 2000, 301(1):133-142.
[6] Levine EL, Davidson SE, Robert SA, et al.Apoptosis as predictor of response to radiotherapy in cervical carcinoma[J].Lancet, 1994, 344:472.
[7] Zhivotovsky B, Joseph B, Orrenius S.Tumor radiosensitivity and apoptosis[J].Exp Cell Res, 1999, 248(1):10-17.
[8] Olive PL, Durand RE.Apoptosis:an indicator of radiosensitivity in vitro?[J].Int J Radiat Biol, 1997, 71:695-707.
[9] Schwartz JL, Murnane J, Weichselbaum RR.The contribution of DNA ploidy to radiation sensitivity inhuman tumour cell lines[J].Br J Cancer, 1999, 79(5-6):744-747.
[10] Coco Martin JM, Mooren E, Ottenheim C, et al.Potential of radiation-induced chromosome aberraions to predict radiosensitivity in human tumour cells[J].Int J Radiat Biol, 1999, 75(9):1161-1168.
[11] Dikomy E, Dahm-Daphi J, Martensen R, et al.1998, Correlation between cellular radiosensitivity and non-repaired double-strand breaks studied in nine mam-malian cell lines[J].Int J Radiat Biol, 1998, 73(3):269-278.
[12] Bistow RG, Benchimol S, Hill RP.The p53 gene as a modifier of intrinsic radiosensitivity:implications for radiotherapy[J].Radiother Oncol, 1996, 40(3):197-223.
[13] Bae I, Smith ML, Sheikh MS, et al.An abnormality in the p53 pathway following γ-irradition in many wild-type p53 human melanoma lines[J].Cancer Res, 1996, 56(4):840-847.
[14] Dahm-Daphi J.p53:biology and role for cellular radiosensitivity[J].Strahlenther Onkol, 2000, 176(6):278-285.
[15] Kariya S, Ogawa Y, Yoshida S, et al.X-irradiation enhances the expression of Bcl-2 in HL-60 cells:The resulting effects on apoptosis and radiosensitivity[J].Int J Mol Med, 1999, 3(2):145-152.
[16] Guo GZ, Sasai K, Oya N, et al.Simultaneous evaluation of radiation-induced apoptosis and micronuclei in five cell lines[J].Int J Radiat Biol, 1998, 73(3):297-302.
[17] Guo GZ, Sasai K, Oya N, et al.A significant correlation between clonogenic radiosensitivity and the simul-taneous assessment of micronucleus and apoptotic cell frequencies[J].Int J Radiat Biol, 1999, 75(7):857-864.
[18] Abend M, Kehe K, Riedel M, et al.Correlation of micronucleus and apoptosis assays with reproductive cell death can be improved by considering other modes of death[J].Int J Radiat Biol, 2000, 76(2):249-259.
[19] Peltenburg LT.Radiosensitivity of tumor cells.Onco-genes and apoptosis[J].Q J Nucl Med, 2000, 44(4):355-364.
[20] Achary MP, Jaggernauth W, Gross E, et al.Cell lines from the same cervical carcinoma but with different radiosensitivities exhibit different cDN A microarray patterns of gene expression[J].Cytogenet Cell Genet, 2000, 91(1-4):39-43.
[21] Bjork-Eriksson T, West CM, Cvetskovska E, et al.The lack of correlation between proliferation(Ki-67, PCNA, LI, Tpot), p53 expression and radiosensitivity for head and neck cancers[J].Br J Cancer, 1999, 80(9):1400-1404.
[22] Levine EL, Renehan A, Gossiel R, et al.Apoptosis, intrinsic radiosensitivity and prediction of radiotherapy response in cervical carcinoma[J].Radiother Oncol, 1995, 37(1):1-9.
[23] Rosen EM, Fan S, Goldberg ID, et al.Biological basis of radiation sensitivity.Part 2:Cellular and molecular determinants of radiosensitivity[J].Oncology(Huntingt) 2000, 14(5):741-757; 757-758; 761-766.