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- LABORATORY STANDARD OPERATING PROCEDURE FOR WHOLE GENOME SEQUENCING ON . . .
PURPOSE: This SOP describes the standardized laboratory protocol for whole genome sequencing of bacterial organisms on the MiSeq, including instrument requirements and maintenance
- MiSeq Sequencing System specifications - Illumina
Learn about the key specifications and performance parameters of the MiSeq Sequencing System
- MiSeq: A Next Generation Sequencing Platform for Genomic Analysis
Here, we provide a protocol to prepare libraries for sequencing using the MiSeq instrument and basic guidelines for analysis of output data from the MiSeq sequencing run
- Short-Read Sequencing | Genomics Core | ECU
The MiSeq system offers the first end-to-end sequencing solution, integrating cluster generation, amplification, sequencing, and data analysis into a single instrument
- Exploring MiSeq Sequencing Technology in Genomics
The technology supports multiple applications, from whole genome sequencing to targeted sequencing, thus catering to various research needs This versatility makes MiSeq attractive to scientists aiming to conduct precise genomic analyses, whether in academic or clinical settings
- MiSeqTM i100 and MiSeq i100 Plus Sequencing Systems
the MiSeq i100 and MiSeq i100 Plus Systems offer sam-ple-to-analysis NGS workflows for varied methods, including small whole-genome sequencing (WGS) and metagenomics for microbial genomics and targeted gene sequencing for oncology and infectious disease
- MiSeq System Data Sheet - Montclair State University
Total times include cluster generation, sequencing, and base calling on a MiSeq System enabled with dual surface scanning The percentage of bases > Q30 is averaged across the entire run
- MiSeq System specification sheet - Illumina
With faster turnaround time and simplified workflows, the MiSeq System offers a cost-effective alternative to sequencing by capillary electrophoresis and qPCR for applications such as targeted resequencing, clone checking, amplicon sequencing, and RNA ex-pression
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