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1  types can now be seen with the technique of chromosome painting.
2 ls were traced in female recipient mice by Y chromosome painting.
3 lease (e.g., DNase I) digestion, followed by chromosome painting.
4 ive homology with human has been revealed by chromosome painting.
5 ed at the cytogenetic level by cross species chromosome painting.
6                                              Chromosome painting allows the visualization of individu
7                       Finally, karyotype and chromosome painting analyses showed no evidence for TCR
8 ee times the number observed with reciprocal chromosome painting analyses.
9 mission to zygotes by using a combination of chromosome painting and 4',6-diamidino-2-phenylindole st
10                                  Comparative chromosome painting and cytogenetic mapping of 15 zebra
11 tween chicken and turkey based on reciprocal chromosome painting and mapping of 338 chicken BACs to t
12 gists, 150 provided a blood sample for whole chromosome painting and were interviewed about past X-ra
13 sicaceae tribes were analyzed by comparative chromosome painting and/or whole-transcriptome analysis
14 ific DNA, fluorescent in situ hybridization (chromosome painting) and image analysis.
15 nt decades, comparative chromosomal banding, chromosome painting, and gene-order studies have shown s
16        Here, we have developed two different chromosome-painting approaches to address how chromosome
17    We present the first report of reciprocal chromosome painting between humans and a rodent.
18 respective gene and BAC maps, in addition to chromosome painting data.
19 from multiple mammalian species coupled with chromosome-painting data provide a powerful resource for
20 hromosome number is constant and comparative chromosome painting demonstrated there to be very few in
21  summarize recent developments of multicolor chromosome painting, describe applications in basic chro
22 standard cytological staining, cross-species chromosome painting, DNA probe analyses, and scanning el
23 he established prerequisites for comparative chromosome painting enable future studies on the chromos
24  the results from this method with data from chromosome painting experiments to produce a map of an e
25 ined from karyotype analysis via comparative chromosome painting experiments.
26 segments were confirmed in new cross-species chromosome-painting experiments (dog-on-human, fox-on-hu
27                         Recent studies using chromosome painting have helped to identify DNA double-s
28 ta, human homologue positions, and human-cat chromosome painting homologies.
29 of this secondarily generated tissue using Y chromosome painting in chimaeric mice indicates that onc
30                                              Chromosome painting in placental mammalians illustrates
31                                Cross-species chromosome painting is a powerful technique for establis
32          Here the protocol for cross-species chromosome painting is presented.
33 strate that the rearrangements visualized by chromosome painting, mostly translocations, are only a f
34 hromosomes were measured with 24-color whole-chromosome painting (multiplex FISH), after damage to in
35 plantation confirmed a progenitor source and chromosome painting of labelled donor cells revealed tra
36                                              Chromosome painting of SWS620 mutants revealed that the
37  studies using a chromosome 5-specific whole chromosome painting probe and a 5q subtelomeric probe to
38                                          The chromosome painting probes and molecular markers generat
39                     We have developed bovine chromosome painting probes for Xp and Xq to assess segme
40 e hybridization of 24 fluorescently labelled chromosome painting probes that allows the simultaneous
41 es hybridization of 24 fluorescently labeled chromosome painting probes to metaphase spreads in such
42      For karyotype analysis, a pool of human chromosome painting probes, each labelled with a differe
43   The simultaneous hybridization of multiple chromosome painting probes, each tagged with a specific
44 fter FISH with differentially labelled mouse chromosome painting probes.
45 n cohybridization of combinatorially labeled chromosome-painting probes with unique fluorochrome sign
46 man and dog using bidirectional heterologous chromosome painting (reciprocal Zoo-FISH) analysis.
47                                              Chromosome 'painting' refers to the hybridization of flu
48 r Ras genes, although karyotype analysis and chromosome painting revealed the consistent presence of
49                                              Chromosome painting revealed the distribution of transpo
50                                              Chromosome painting reveals that these X and Y chromosom
51 sease-specific aberrations; and (b) by using chromosome painting so that many more metaphases could b
52 notyping of single nucleotide polymorphisms, chromosome painting, Southern blotting and restriction f
53 reviously seen in dog-on-human cross-species chromosome-painting studies.
54                                              Chromosome painting using human chromosome 1 probes iden
55                             Multidirectional chromosome painting, using probes from homologs to chrom

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