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Index
00:00
1.
Cell cycle stage
02:14
2.
Cell Cycle Stage
05:13
3.
Human Chromosomal DNA Content During the Cell Cycle
06:33
4.
Not All DNA is Synthesized During S-Phase
07:42
5.
Copy Number Variation
09:02
6.
Types of CNV
09:27
7.
Effects of CNV on Gene Expression
10:18
8.
CNV Implications
10:54
9.
Tools for genomic screens
11:18
10.
Spectral Karyotyping (SKY)
12:59
11.
Fluorescent in situ Hybridization (FISH)
14:58
12.
Comparative Genomic Hybridization
17:28
13.
Array Comparative Genomic Hybridization
20:02
14.
Multiplex PCR-based Methods for the Identification of CNV
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00:00
1.
Cell cycle stage
02:14
2.
Cell Cycle Stage
05:13
3.
Human Chromosomal DNA Content During the Cell Cycle
06:33
4.
Not All DNA is Synthesized During S-Phase
07:42
5.
Copy Number Variation
09:02
6.
Types of CNV
09:27
7.
Effects of CNV on Gene Expression
10:18
8.
CNV Implications
10:54
9.
Tools for genomic screens
11:18
10.
Spectral Karyotyping (SKY)
12:59
11.
Fluorescent in situ Hybridization (FISH)
14:58
12.
Comparative Genomic Hybridization
17:28
13.
Array Comparative Genomic Hybridization
20:02
14.
Multiplex PCR-based Methods for the Identification of CNV
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Print date : 2024/11/13
賴亮全實驗室
Media Center
...
2021
Genomic approaches to study DNA structure variation (0511)
Duration: 21:18,
Browse: 554,
Last Updated: 2021-05-12
Play Video: http://llai.cm.ntu.edu.tw/media/1787
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Details
00:00
1.
Cell cycle stage
02:14
2.
Cell Cycle Stage
05:13
3.
Human Chromosomal DNA Content During the Cell Cycle
06:33
4.
Not All DNA is Synthesized During S-Phase
07:42
5.
Copy Number Variation
09:02
6.
Types of CNV
09:27
7.
Effects of CNV on Gene Expression
10:18
8.
CNV Implications
10:54
9.
Tools for genomic screens
11:18
10.
Spectral Karyotyping (SKY)
12:59
11.
Fluorescent in situ Hybridization (FISH)
14:58
12.
Comparative Genomic Hybridization
17:28
13.
Array Comparative Genomic Hybridization
20:02
14.
Multiplex PCR-based Methods for the Identification of CNV
Location
Media Center
...
2021
Folder name
2021
Author
賴亮全
Branch
賴亮全教授
Created
2021-05-12 13:48:27
Last Updated
2021-05-12 14:01:51
Duration
21:18
Media Center
...
2021
1.
Comparative Gene-Expression Analysis I: Hybridization-based techniques
1.1
Comparative Gene-Expression Analysis I: Hybridization-based techniques (0223)
1.2
Comparative Gene-Expression Analysis I: Hybridization-based techniques (0302)
1.3
Comparative Gene-Expression Analysis I: Hybridization-based techniques (0309)
1.4
Comparative Gene-Expression Analysis I: Hybridization-based techniques (0316)
1.5
Comparative Gene-Expression Analysis I: Hybridization-based techniques (0323)
2.
Comparative Gene-Expression Analysis II: PCR-based techniques
2.1
Comparative Gene-Expression Analysis II: PCR-based techniques (0323)
2.2
Comparative Gene-Expression Analysis II: PCR-based techniques (0330)
3.
Comparative Gene-Expression Analysis III: Sequence-based techniques
3.1
Comparative Gene-Expression Analysis III Sequence-based techniques (0330)
3.2
Comparative Gene-Expression Analysis III Sequence-based techniques (0413)
3.3
Comparative Gene-Expression Analysis III Sequence-based techniques (0420)
4.
DNA structure variation
4.1
Genomic approaches to study DNA structure variation (0427)
4.2
Genomic approaches to study DNA structure variation (0504)
4.3
Genomic approaches to study DNA structure variation (0511)
5.
Epigenetics
5.1
Epigenetics_nucleic acid methylation (0511)
5.2
Epigenetics_histone modification (0511)
5.3
Epigenetics_noncoding RNA (0518)
6.
Protein interaction (0525)
7.
Metagenomics (0601)
8.
Application in Cancer treatment (0608)