Sequence variation in ultraconserved and highly conserved elements does not cause X-linked mental retardation [1]

Armand Bottani, Jamel Chelly, Arjan P M De Brouwer, Bruno Pardo, Mandy Barker, Valeria Capra, Lucia Bartoloni, Stylianos E. Antonarakis, Bernard Conrad

Research output: Contribution to journalArticle

3 Citations (Scopus)
Original languageEnglish
Pages (from-to)888-890
Number of pages3
JournalAmerican Journal of Medical Genetics, Part A
Volume143
Issue number8
DOIs
Publication statusPublished - Apr 15 2007

ASJC Scopus subject areas

  • Genetics(clinical)

Cite this

Sequence variation in ultraconserved and highly conserved elements does not cause X-linked mental retardation [1]. / Bottani, Armand; Chelly, Jamel; De Brouwer, Arjan P M; Pardo, Bruno; Barker, Mandy; Capra, Valeria; Bartoloni, Lucia; Antonarakis, Stylianos E.; Conrad, Bernard.

In: American Journal of Medical Genetics, Part A, Vol. 143, No. 8, 15.04.2007, p. 888-890.

Research output: Contribution to journalArticle

Bottani, A, Chelly, J, De Brouwer, APM, Pardo, B, Barker, M, Capra, V, Bartoloni, L, Antonarakis, SE & Conrad, B 2007, 'Sequence variation in ultraconserved and highly conserved elements does not cause X-linked mental retardation [1]', American Journal of Medical Genetics, Part A, vol. 143, no. 8, pp. 888-890. https://doi.org/10.1002/ajmg.a.31651
Bottani, Armand ; Chelly, Jamel ; De Brouwer, Arjan P M ; Pardo, Bruno ; Barker, Mandy ; Capra, Valeria ; Bartoloni, Lucia ; Antonarakis, Stylianos E. ; Conrad, Bernard. / Sequence variation in ultraconserved and highly conserved elements does not cause X-linked mental retardation [1]. In: American Journal of Medical Genetics, Part A. 2007 ; Vol. 143, No. 8. pp. 888-890.
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