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main:references [2019/01/09 18:36] bshirley |
main:references [2020/04/29 15:53] bshirley |
10. Subasinghe A, Samarabandu J, Li Y, Flegal F, Wilkins R, Knoll JHM and Rogan PK. [[http://adcidewiki.cytognomix.com/files/pubs/SubasingheF1000Res2016.pdf | Centromere Detection of Human Metaphase Chromosome Images using a Candidate Based Method]]. F1000Research, 5: 1565 doi: 10.12688/f1000research.9075.1, 2016 - Preprint at bioRxiv, doi: 10.1101/032110 | 10. Subasinghe A, Samarabandu J, Li Y, Flegal F, Wilkins R, Knoll JHM and Rogan PK. [[http://adcidewiki.cytognomix.com/files/pubs/SubasingheF1000Res2016.pdf | Centromere Detection of Human Metaphase Chromosome Images using a Candidate Based Method]]. F1000Research, 5: 1565 doi: 10.12688/f1000research.9075.1, 2016 - Preprint at bioRxiv, doi: 10.1101/032110 |
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11. Shirley B, Li Y, Knoll JHM, and Rogan PK. [[http://www.jove.com/video/56245?access=ueptxydc | Expedited radiation biodosimetry by automated dicentric chromosome identification and dose estimation]], Journal of Visualized Experiments (in press). | 11. Shirley, B., Li, Y., Knoll, J. H. M., Rogan, P. K. [[https://www.jove.com/video/56245/ | Expedited Radiation Biodosimetry by Automated Dicentric Chromosome Identification (ADCI) and Dose Estimation]]. J. Vis. Exp. (127), e56245, doi:10.3791/56245 (2017). |
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12. Li Y, Knoll JHM, Wilkins RC, Flegal FN, and Rogan PK. [[http://adcidewiki.cytognomix.com/files/pubs/LI_et_al-2016-Microscopy_Research_and_TechniquePUBLISHED.pdf | Automated Discrimination of Dicentric and Monocentric Chromosomes by Machine Learning-Based Image Processing]]. Microsc Res Tech., 2016 May;79(5):393-402. doi: 10.1002/jemt.22642. | 12. Li Y, Knoll JHM, Wilkins RC, Flegal FN, and Rogan PK. [[http://adcidewiki.cytognomix.com/files/pubs/LI_et_al-2016-Microscopy_Research_and_TechniquePUBLISHED.pdf | Automated Discrimination of Dicentric and Monocentric Chromosomes by Machine Learning-Based Image Processing]]. Microsc Res Tech., 2016 May;79(5):393-402. doi: 10.1002/jemt.22642. |
13. Liu J, Li Y, Wilkins R, Flegal F, Knoll JHM, Rogan PK. [[https://f1000research.com/articles/6-1396/v1 | Accurate Cytogenetic Biodosimetry Through Automation Of Dicentric Chromosome Curation And Metaphase Cell Selection]]. F1000Research, 6: 1396 doi: 10.12688/f1000research.12226.1 | 13. Liu J, Li Y, Wilkins R, Flegal F, Knoll JHM, Rogan PK. [[https://f1000research.com/articles/6-1396/v1 | Accurate Cytogenetic Biodosimetry Through Automation Of Dicentric Chromosome Curation And Metaphase Cell Selection]]. F1000Research, 6: 1396 doi: 10.12688/f1000research.12226.1 |
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14. Li Y, Shirley BC, Wilkins RC, Norton F, Knoll JHM, Rogan PK. [[https://academic.oup.com/rpd/advance-article/doi/10.1093/rpd/ncy282/5281209 | RADIATION DOSE ESTIMATION BY COMPLETELY AUTOMATED INTERPRETATION OF THE DICENTRIC CHROMOSOME ASSAY]]. Radiation Protection Dosimetry, ncy282, 2019. doi: [[https://doi.org/10.1093/rpd/ncy282 | 10.1093/rpd/ncy282]] | 14. Li Y, Shirley BC, Wilkins RC, Norton F, Knoll JHM, Rogan PK. [[http://adcidewiki.cytognomix.com/files/pubs/LiRPD2019.pdf | RADIATION DOSE ESTIMATION BY COMPLETELY AUTOMATED INTERPRETATION OF THE DICENTRIC CHROMOSOME ASSAY]]. Radiation Protection Dosimetry, ncy282. doi: 10.1093/rpd/ncy282 (2019) |
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| 15. Rogan PK, Mucaki EJ, Lu R, Shirley BC, Waller E, Knoll JHM. [[https://doi.org/10.1371/journal.pone.0232008 | Meeting radiation dosimetry capacity requirements of population-scale exposures by geostatistical sampling]]. PLoS ONE 15(4): e0232008. doi: 10.1371/journal.pone.0232008 (2020) |