2003Humana Press eBooksRequires access

Quantitation of FISH Signals in Archival Tumors

Amanda D. Watters, John M.S. Bartlett

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Abstract

The term interphase cytogenetics was first used in 1986 by Cremer (1,2) to describe detection of chromosomal alterations using in situ techniques in interphase nuclei. This was a distinct advantage over conventional analyses as solid tumors could now be studied (2,3) and the possibility of applying the technique to specimens received in a diagnostic laboratory realised (4). The nonradioactive in situ method, fluorescence in situ hybridization (FISH), has been widely applied to study chromosomal rearrangements, malignancies, and chromosome mapping (4).

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What this paper is about

The term interphase cytogenetics was first used in 1986 by Cremer (1,2) to describe detection of chromosomal alterations using in situ techniques in interphase nuclei. This was a distinct advantage over conventional analyses as solid tumors could now be studied (2,3) and the possibility of applying the technique to specimens received in a diagnostic laboratory realised (4). The nonradioactive in situ method, fluorescence in situ hybridization (FISH), has been widely applied to study chromosomal rearrangements, malignancies, and chromosome mapping (4).

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Available abstract

The term interphase cytogenetics was first used in 1986 by Cremer (1,2) to describe detection of chromosomal alterations using in situ techniques in interphase nuclei. This was a distinct advantage over conventional analyses as solid tumors could now be studied (2,3) and the possibility of applying the technique to specimens received in a diagnostic laboratory realised (4). The nonradioactive in situ method, fluorescence in situ hybridization (FISH), has been widely applied to study chromosomal rearrangements, malignancies, and chromosome mapping (4).

Key concepts: Interphase, Fish <Actinopterygii>, Fluorescence in situ hybridization, In situ, In situ hybridization, Cytogenetics, Biology, Chromosome

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