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Employment (1)

University of Cambridge: Cambridge, GB

2023-04 to present | Postdoctoral Researcher (Department of Physiology, Development and Neuroscience)
Employment
Source: Self-asserted source
Alexander S. Campbell

Education and qualifications (3)

University of Cambridge: Cambridge, GB

2018-09 to 2023-04 | PhD in Biological Sciences (Queens' College)
Education
Source: Self-asserted source
Alexander S. Campbell

University of Cambridge: Cambridge, GB

2017-09 to 2018-08 | MPhil in Biological Sciences (Queens' College)
Education
Source: Self-asserted source
Alexander S. Campbell

University of Cambridge: Cambridge, GB

2013-10 to 2016-06 | BA in Natural Sciences (Clare College)
Education
Source: Self-asserted source
Alexander S. Campbell

Works (6)

Molecular insights into electroreceptor ribbon synapses from differential gene expression in sturgeon lateral line organs

2025-02-06 | Preprint
Contributors: Alexander S. Campbell; Martin Minařík; David Buckley; Tanmay Anand; David Gela; Martin Pšenička; Clare V. H. Baker
Source: check_circle
Crossref

Opposing roles for Bmp signalling during the development of electrosensory lateral line organs

eLife
2025-01-02 | Journal article
Contributors: Alexander S Campbell; Martin Minařík; Roman Franěk; Michaela Vazačová; Miloš Havelka; David Gela; Martin Pšenička; Clare VH Baker
Source: check_circle
Crossref

Two opposing roles for Bmp signalling in the development of electrosensory lateral line organs

2024-03-12 | Preprint
Contributors: Alexander S. Campbell; Martin Minařík; Roman Franěk; Michaela Vazačová; Miloš Havelka; David Gela; Martin Pšenička; Clare V. H. Baker
Source: check_circle
Crossref

Insights into electrosensory organ development, physiology and evolution from a lateral line-enriched transcriptome

eLife
2017-03-27 | Journal article
Part of ISSN: 2050-084X
Contributors: Melinda S Modrell; Mike Lyne; Adrian R Carr; Harold H Zakon; David Buckley; Alexander S Campbell; Marcus Davis; Gos Micklem; Clare V. H. Baker
Source: Self-asserted source
Alexander S. Campbell via Crossref Metadata Search

Atoh1 is required for the formation of lateral line electroreceptors and hair cells, whereas Foxg1 represses an electrosensory fate

Other | Author
Contributors: Martin Minařík; Alexander S. Campbell; Roman Franěk; Michaela Vazačová; Miloš Havelka; David Gela; Martin Pšenička; Clare V. H. Baker
Source: Self-asserted source
Alexander S. Campbell via Crossref Metadata Search
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Identification of multiple transcription factor genes potentially involved in the development of electrosensory versus mechanosensory lateral line organs

Other | Author
Contributors: Martin Minařík; Melinda Modrell; Andrew Gillis; Alexander S. Campbell; Isobel Fuller; Rachel Lyne; Gos Micklem; David Gela; Martin Pšenička; Clare V. H. Baker
Source: Self-asserted source
Alexander S. Campbell via Crossref Metadata Search
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