human short tandem repeat (str) profiling Search Results


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Johns Hopkins HealthCare human specific short tandem repeat (str) markers
Human Specific Short Tandem Repeat (Str) Markers, supplied by Johns Hopkins HealthCare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Genetica Inc short-tandem repeat profiling of human cell lines
Short Tandem Repeat Profiling Of Human Cell Lines, supplied by Genetica Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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BioResource International Inc human short tandem repeat (str) profiling
Human Short Tandem Repeat (Str) Profiling, supplied by BioResource International Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Brinkmann Instruments short tandem repeat–based phylogeny for the human y chromosome
Short Tandem Repeat–Based Phylogeny For The Human Y Chromosome, supplied by Brinkmann Instruments, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Promega human multiplex short tandem repeat str powerplex 21 system
Human Multiplex Short Tandem Repeat Str Powerplex 21 System, supplied by Promega, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Procell Inc human hela cells with short tandem repeat qualification
Human Hela Cells With Short Tandem Repeat Qualification, supplied by Procell Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Beyotime human 9-marker short-tandem repeat (str) profile analysis
Human 9 Marker Short Tandem Repeat (Str) Profile Analysis, supplied by Beyotime, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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IDEXX human short tandem repeat
Human Short Tandem Repeat, supplied by IDEXX, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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IDEXX human 16-marker short tandem repeat profiling
Human 16 Marker Short Tandem Repeat Profiling, supplied by IDEXX, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Nusbaum Inc characterization of short tandem repeats from thirty-one human telomeres
Diagram showing the derivation of fiberFISH distances. The fiberFISH distance in kb (D) between the test clone signal and the <t>telomere</t> (TTAGGGital)n signal is given by D=Z(X/Y), where Z is the known size of the test clone in kb, Y is the length of the test-clone signal in mm and X is the distance between the test-clone signal and the telomere signal in mm.
Characterization Of Short Tandem Repeats From Thirty One Human Telomeres, supplied by Nusbaum Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Illumina Inc human short tandem repeat and single-nucleotide polymorphism profiles illumina forenseq panel a
Diagram showing the derivation of fiberFISH distances. The fiberFISH distance in kb (D) between the test clone signal and the <t>telomere</t> (TTAGGGital)n signal is given by D=Z(X/Y), where Z is the known size of the test clone in kb, Y is the length of the test-clone signal in mm and X is the distance between the test-clone signal and the telomere signal in mm.
Human Short Tandem Repeat And Single Nucleotide Polymorphism Profiles Illumina Forenseq Panel A, supplied by Illumina Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Qiagen primers for human short tandem repeat analysis d13s1491, d13s218, d13s139 and d13s1253
Diagram showing the derivation of fiberFISH distances. The fiberFISH distance in kb (D) between the test clone signal and the <t>telomere</t> (TTAGGGital)n signal is given by D=Z(X/Y), where Z is the known size of the test clone in kb, Y is the length of the test-clone signal in mm and X is the distance between the test-clone signal and the telomere signal in mm.
Primers For Human Short Tandem Repeat Analysis D13s1491, D13s218, D13s139 And D13s1253, supplied by Qiagen, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Diagram showing the derivation of fiberFISH distances. The fiberFISH distance in kb (D) between the test clone signal and the telomere (TTAGGGital)n signal is given by D=Z(X/Y), where Z is the known size of the test clone in kb, Y is the length of the test-clone signal in mm and X is the distance between the test-clone signal and the telomere signal in mm.

Journal:

Article Title: An Optimized Set of Human Telomere Clones for Studying Telomere Integrity and Architecture

doi:

Figure Lengend Snippet: Diagram showing the derivation of fiberFISH distances. The fiberFISH distance in kb (D) between the test clone signal and the telomere (TTAGGGital)n signal is given by D=Z(X/Y), where Z is the known size of the test clone in kb, Y is the length of the test-clone signal in mm and X is the distance between the test-clone signal and the telomere signal in mm.

Article Snippet: Proc Natl Acad Sci USA 86:6240–6244 [ PMC free article ] [ PubMed ] Rosenberg M, Hui L, Ma JL, Nusbaum HC, Clark K, Robinson L, Dziadzio L, et al (1997) Characterization of short tandem repeats from thirty-one human telomeres.

Techniques:

Comparison of FISH results obtained with a cosmid clone compared to a BAC clone for the 19p and 10q telomeres. All probes are labeled with digoxigenin and detected with antidigoxigenin rhodamine (red). A, Hybridization of cosmid clone, cF20643 (left), and BAC clone, RG129F16 (right), corresponding to the 19p telomere. B, Hybridization of cosmid clone, c2136c3 (left), and BAC clone, GS261B16 (right), corresponding to the 10q telomere. In both A and B, notice the difference in signal intensity between the two telomere clones; the BAC clone shows a larger signal compared to that of the cosmid clone.

Journal:

Article Title: An Optimized Set of Human Telomere Clones for Studying Telomere Integrity and Architecture

doi:

Figure Lengend Snippet: Comparison of FISH results obtained with a cosmid clone compared to a BAC clone for the 19p and 10q telomeres. All probes are labeled with digoxigenin and detected with antidigoxigenin rhodamine (red). A, Hybridization of cosmid clone, cF20643 (left), and BAC clone, RG129F16 (right), corresponding to the 19p telomere. B, Hybridization of cosmid clone, c2136c3 (left), and BAC clone, GS261B16 (right), corresponding to the 10q telomere. In both A and B, notice the difference in signal intensity between the two telomere clones; the BAC clone shows a larger signal compared to that of the cosmid clone.

Article Snippet: Proc Natl Acad Sci USA 86:6240–6244 [ PMC free article ] [ PubMed ] Rosenberg M, Hui L, Ma JL, Nusbaum HC, Clark K, Robinson L, Dziadzio L, et al (1997) Characterization of short tandem repeats from thirty-one human telomeres.

Techniques: Comparison, Labeling, Hybridization, Clone Assay

Three-color interphase FISH ordering at the human 1p telomere. Interphase cells from a chromosome 1 monochromosomal hybrid cell line were hybridized with three probes from the telomeric region of chromosome 1p. GS-232-B23 is labeled with biotin and detected with avidin-Cy5 (purple), PAC GS-63-M14 is labeled with Spectrum Orange (red) and BAC GS-145-I23 is labeled with digoxigenin and detected with anti-digoxigenin FITC (green). The order of these clones was determined to be tel-GS145I23-GS63M14-GS232B23-cen.

Journal:

Article Title: An Optimized Set of Human Telomere Clones for Studying Telomere Integrity and Architecture

doi:

Figure Lengend Snippet: Three-color interphase FISH ordering at the human 1p telomere. Interphase cells from a chromosome 1 monochromosomal hybrid cell line were hybridized with three probes from the telomeric region of chromosome 1p. GS-232-B23 is labeled with biotin and detected with avidin-Cy5 (purple), PAC GS-63-M14 is labeled with Spectrum Orange (red) and BAC GS-145-I23 is labeled with digoxigenin and detected with anti-digoxigenin FITC (green). The order of these clones was determined to be tel-GS145I23-GS63M14-GS232B23-cen.

Article Snippet: Proc Natl Acad Sci USA 86:6240–6244 [ PMC free article ] [ PubMed ] Rosenberg M, Hui L, Ma JL, Nusbaum HC, Clark K, Robinson L, Dziadzio L, et al (1997) Characterization of short tandem repeats from thirty-one human telomeres.

Techniques: Labeling, Avidin-Biotin Assay, Clone Assay

FiberFISH results showing telomere-specific probe signals in green and (TTAGGG)n probe signals in red. A, Control hybridization showing 4p cosmid (B31: ∼33 kb insert) ∼80 kb from the (TTAGGG)n repeat sequence. B, control hybridization showing 16p cosmid (cGG4: ∼36 kb insert) ∼100 kb from the (TTAGGG)n repeat. C, test hybridization showing 7p PAC (164-D18) ∼130 kb from the (TTAGGG)n repeat.

Journal:

Article Title: An Optimized Set of Human Telomere Clones for Studying Telomere Integrity and Architecture

doi:

Figure Lengend Snippet: FiberFISH results showing telomere-specific probe signals in green and (TTAGGG)n probe signals in red. A, Control hybridization showing 4p cosmid (B31: ∼33 kb insert) ∼80 kb from the (TTAGGG)n repeat sequence. B, control hybridization showing 16p cosmid (cGG4: ∼36 kb insert) ∼100 kb from the (TTAGGG)n repeat. C, test hybridization showing 7p PAC (164-D18) ∼130 kb from the (TTAGGG)n repeat.

Article Snippet: Proc Natl Acad Sci USA 86:6240–6244 [ PMC free article ] [ PubMed ] Rosenberg M, Hui L, Ma JL, Nusbaum HC, Clark K, Robinson L, Dziadzio L, et al (1997) Characterization of short tandem repeats from thirty-one human telomeres.

Techniques: Control, Hybridization, Sequencing