alternative label
| - DNA Sequencing, High-Throughput
- High-Throughput Nucleotide Sequencing
- Sequencing, Deep
- Sequencing, High-Throughput DNA
- High-Throughput DNA Sequencing
- High-Throughput RNA Sequencing
- Massively-Parallel Sequencing
- Nucleotide Sequencing, High-Throughput
- Sequencing, Massively-Parallel
- Séquençage d'ARN à haut débit
- Séquençage massivement parallèle
- Séquençage profond
- Deep Sequencing
- High Throughput DNA Sequencing
- High Throughput Nucleotide Sequencing
- High Throughput RNA Sequencing
- Massively Parallel Sequencing
- Séquençage d'ADN à haut débit
- Séquençage en profondeur
- Séquençage massif en parallèle
- Séquençage massif parallèle
- Séquençage parallèle massif
- RNA Sequencing, High-Throughput
- Sequencing, High-Throughput Nucleotide
- Sequencing, High-Throughput RNA
- Next Generation Sequencing
- Pyrosequencing
- Pyroséquençage
- Illumina Sequencing
- Ion Proton Sequencing
- Ion Torrent Sequencing
- Next-Generation Sequencing
- Sequencing, Illumina
- Sequencing, Ion Proton
- Sequencing, Ion Torrent
- Sequencing, Next-Generation
- High Throughput Sequencing
- High-Throughput Sequencing
- Sequencing, High-Throughput
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note
| - Techniques of nucleotide sequence analysis that increase the range, complexity, sensitivity, and accuracy of results by greatly increasing the scale of operations and thus the number of nucleotides, and the number of copies of each nucleotide sequenced. The sequencing may be done by analysis of the synthesis or ligation products, hybridization to preexisting sequences, etc
- Techniques of nucleotide sequence analysis that increase the scale of operations enabling an increase in the depth of coverage (number of copies) to which each polynucleotide is sequenced
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