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1 sion profiling and validated it by different cytogenetic techniques.
2  crops due to low efficiency of conventional cytogenetic techniques.
3 ed by quantitative real-time PCR or standard cytogenetic techniques.
4 enetics, in combination with other molecular cytogenetic techniques.
5 l lung cancer, using classical and molecular cytogenetic techniques.
6 cation is difficult to detect using standard cytogenetic techniques, 27 previously karyotyped B-linea
7 as seen significant progression in molecular cytogenetic techniques, allowing rapid and precise detec
8 ce of a t(4;11) translocation using standard cytogenetic techniques and expression of an MLL-AF4 fusi
9 netics" (i.e., an integration of traditional cytogenetic techniques and next-generation sequencing),
10        BFB can be observed in progress using cytogenetic techniques, but generally BFB must be inferr
11                     Within the limits of the cytogenetic techniques employed, the results show comple
12 errations that were not detected by standard cytogenetic techniques in a portion of these individuals
13 osomal aberrations we have applied molecular cytogenetic techniques, including fluorescent in situ hy
14 ysical mapping of Arabidopsis chromosomes by cytogenetic techniques is feasible.
15 n of recurrent chromosomal rearrangements by cytogenetic techniques serves as an initial screening te
16                                The molecular cytogenetic technique spectral karyotyping (SKY), on the
17 )-array analysis is a powerful new molecular cytogenetic technique that allows genomewide analysis of
18                   Using a range of molecular cytogenetic techniques we have generated evidence indica
19                                Molecular and cytogenetic techniques were first used to construct a pa

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