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Results: 46
Number of items: 46
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Rauwerda, H., Pagano, J. F., de Leeuw, W. C., Nehrdich, U., de Jong, M., Jonker, M., Spaink, H. P., & Breit, T. M. (2017). Additional file 4: of Transcriptome dynamics in early zebrafish embryogenesis determined by high-resolution time course analysis of 180 successive, individual zebrafish embryos [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3740003_d13.v1
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Rauwerda, H., Pagano, J. F., de Leeuw, W. C., Ensink, W., Nehrdich, U., de Jong, M., Jonker, M., Spaink, H. P., & Breit, T. M. (2017). Additional file 7: of Transcriptome dynamics in early zebrafish embryogenesis determined by high-resolution time course analysis of 180 successive, individual zebrafish embryos [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.c.3740003_d16.v1
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Locati, M. D., Pagano, J. F. B., Girard, G., Ensink, W. A., van Olst, M., van Leeuwen, S., Nehrdich, U., Spaink, H. P., Rauwerda, H., Jonker, M. J., Dekker, R. J., & Breit, T. M. (2017). Expression of distinct maternal and somatic 5.8S, 18S, and 28S rRNA types during zebrafish development. RNA, 23(8), 1188-1199. https://doi.org/10.1261/rna.061515.117 -
Rauwerda, H., Pagano, J. F. B., de Leeuw, W. C., Ensink, W., Nehrdich, U., de Jong, M., Jonker, M., Spaink, H. P., & Breit, T. M. (2017). Transcriptome dynamics in early zebrafish embryogenesis determined by high-resolution time course analysis of 180 successive, individual zebrafish embryos. BMC Genomics, 18, Article 287. https://doi.org/10.1186/s12864-017-3672-z -
Locati, M. D., Pagano, J. F. B., Ensink, W. A., van Olst, M., van Leeuwen, S., Nehrdich, U., Zhu, K., Spaink, H. P., Girard, G., Rauwerda, H., Jonker, M. J., Dekker, R. J., & Breit, T. M. (2017). Linking Maternal and Somatic 5S rRNA types with Different Sequence-Specific Non-LTR Retrotransposons. RNA, 23(4), 446-456. https://doi.org/10.1261/rna.059642.116 -
Pagano, J. F. B., Rauwerda, H., de Leeuw, W. C., Wackers, P., de Jong, M., Ensink, W., Dekker, R., Nehrdich, U., Spaink, H. P., Jonker, M., & Breit, T. M. (2016). Transcriptome data on maternal RNA of 24 individual zebrafish eggs from five sibling mothers. Data in Brief, 8, 69-72. https://doi.org/10.1016/j.dib.2016.04.045 -
Bruning, O., Rodenburg, W., Wackers, P. F. K., van Oostrom, C., Jonker, M. J., Dekker, R. J., Rauwerda, H., Ensink, W. A., de Vries, A., & Breit, T. M. (2016). Confounding Factors in the Transcriptome Analysis of an In-Vivo Exposure Experiment. PLoS ONE, 11(1), Article e0145252. https://doi.org/10.1371/journal.pone.0145252 -
Rauwerda, H., Wackers, P., Pagano, J. F. B., de Jong, M., Ensink, W., Dekker, R., Nehrdich, U., Spaink, H. P., Jonker, M., & Breit, T. M. (2016). Mother-Specific Signature in the Maternal Transcriptome Composition of Mature, Unfertilized Zebrafish Eggs. PLoS ONE, 11(1), Article e0147151. https://doi.org/10.1371/journal.pone.0147151 -
Locati, M. D., Terpstra, I., de Leeuw, W. C., Kuzak, M., Rauwerda, H., Ensink, W. A., van Leeuwen, S., Nehrdich, U., Spaink, H. P., Jonker, M. J., Breit, T. M., & Dekker, R. J. (2015). Improving small RNA-seq by using a synthetic spike-in set for size-range quality control together with a set for data normalization. Nucleic Acids Research, 43(14), Article e89. https://doi.org/10.1093/nar/gkv303
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