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A next-generation sequencing approach targeting the highly repetitive ORF15 region of RPGR improves molecular diagnostics of X-linked retinitis pigmentosa

Annelies De Jaegher (UGent) , Sarah De Jaegere (UGent) , Toon Rosseel (UGent) , Steve Lefever (UGent) , Frauke Coppieters (UGent) , Kim De Leeneer (UGent) and Elfride De Baere (UGent)
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Chicago
De Jaegher, Annelies, Sarah De Jaegere, Toon Rosseel, Steve Lefever, Frauke Coppieters, Kim De Leeneer, and Elfride De Baere. 2017. “A Next-generation Sequencing Approach Targeting the Highly Repetitive ORF15 Region of RPGR Improves Molecular Diagnostics of X-linked Retinitis Pigmentosa.” In European Human Genetics Conference, Abstracts.
APA
De Jaegher, A., De Jaegere, S., Rosseel, T., Lefever, S., Coppieters, F., De Leeneer, K., & De Baere, E. (2017). A next-generation sequencing approach targeting the highly repetitive ORF15 region of RPGR improves molecular diagnostics of X-linked retinitis pigmentosa. European Human Genetics conference, Abstracts. Presented at the European Human Genetics conference 2017 (ESHG 2017).
Vancouver
1.
De Jaegher A, De Jaegere S, Rosseel T, Lefever S, Coppieters F, De Leeneer K, et al. A next-generation sequencing approach targeting the highly repetitive ORF15 region of RPGR improves molecular diagnostics of X-linked retinitis pigmentosa. European Human Genetics conference, Abstracts. 2017.
MLA
De Jaegher, Annelies, Sarah De Jaegere, Toon Rosseel, et al. “A Next-generation Sequencing Approach Targeting the Highly Repetitive ORF15 Region of RPGR Improves Molecular Diagnostics of X-linked Retinitis Pigmentosa.” European Human Genetics Conference, Abstracts. 2017. Print.
@inproceedings{8510014,
  author       = {De Jaegher, Annelies and De Jaegere, Sarah and Rosseel, Toon and Lefever, Steve and Coppieters, Frauke and De Leeneer, Kim and De Baere, Elfride},
  booktitle    = {European Human Genetics conference, Abstracts},
  language     = {eng},
  location     = {Copenhagen, Denmark},
  title        = {A next-generation sequencing approach targeting the highly repetitive ORF15 region of RPGR improves molecular diagnostics of X-linked retinitis pigmentosa},
  year         = {2017},
}