The advantages of hybridisation include: precise anatomical localisation is able to be acheived High sensitivity Disadvantages: Non-specific labelling may occur cannot provide inormation on translational and post-translational modification peace
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The conclusion on advantages and disadvantages of communication technology vary depending on the type of communication. In most cases, the advantages seem to outweigh the disadvantages.
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Joanna M. Bridger has written: 'Fluorescence in situ hybridization (FISH)' -- subject(s): Laboratory Manuals, Cytogenetic Analysis, Fluorescence In Situ Hybridization, Methods, Fluorescence in situ hybridization
Fluorescence in situ hybridization.
Fluorescence In Situ Hybridization
Genomic In Situ Hybridization refers to use of total genomic DNA from one species as a probe for in situ hybridization to identify chromosomes, chromosome segments, or whole genomes originating from that species in a hybrid or backcross.
Genomic in-situ hybridization is the name of a useful tool. It is widely used to analyze plant structures to ascertain their origin, location and genomics.
Matteo Adinolfi has written: 'Non-isotopic in situ hybridization' -- subject(s): DNA, Diagnosis, Diagnostic use, Genetic disorders, In situ hybridization, Molecular biology
Fluorescent in situ hybridization. Highlights areas of chomosomes. Useful when trying to detemine chromosomal anomalies
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Diagnosis requires the use of a special test called fluorescence in situ hybridization (FISH) in which a DNA probe for the elastin gene is labeled with a brightly colored fluorescent dye.
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