Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements

Bibliographic Details
Main Authors: Crooks, K, Brown, T, Maher, E, Houghton, J, Lawrie, M, Cardy, D
Format: Journal article
Published: 1999
_version_ 1797069782377299968
author Crooks, K
Brown, T
Maher, E
Houghton, J
Lawrie, M
Cardy, D
author_facet Crooks, K
Brown, T
Maher, E
Houghton, J
Lawrie, M
Cardy, D
author_sort Crooks, K
collection OXFORD
description
first_indexed 2024-03-06T22:29:32Z
format Journal article
id oxford-uuid:57d39eb0-a7d8-47cf-b43c-16398ffc7d03
institution University of Oxford
last_indexed 2024-03-06T22:29:32Z
publishDate 1999
record_format dspace
spelling oxford-uuid:57d39eb0-a7d8-47cf-b43c-16398ffc7d032022-03-26T16:59:05ZNovel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangementsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:57d39eb0-a7d8-47cf-b43c-16398ffc7d03Symplectic Elements at Oxford1999Crooks, KBrown, TMaher, EHoughton, JLawrie, MCardy, D
spellingShingle Crooks, K
Brown, T
Maher, E
Houghton, J
Lawrie, M
Cardy, D
Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title_full Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title_fullStr Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title_full_unstemmed Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title_short Novel multiple-colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide: applications in the analysis of structural chromosomal rearrangements
title_sort novel multiple colour fluorescence in situ hybridisation technology for the simultaneous identification of the 24 human metaphase chromosomes on a single slide applications in the analysis of structural chromosomal rearrangements
work_keys_str_mv AT crooksk novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements
AT brownt novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements
AT mahere novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements
AT houghtonj novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements
AT lawriem novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements
AT cardyd novelmultiplecolourfluorescenceinsituhybridisationtechnologyforthesimultaneousidentificationofthe24humanmetaphasechromosomesonasingleslideapplicationsintheanalysisofstructuralchromosomalrearrangements