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Single-molecule real-time observation of DNA polymerase using zero-mode waveguide (ZMW) optical confinement nanostructures or sequencing by binding (SBB)
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Started by jbadalam, 08-04-2014, 11:22 AM
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04-16-2017, 05:01 AM
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Started by dladuswj, 04-05-2017, 05:20 PM
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04-06-2017, 10:10 AM
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Started by BioGenomics, 04-04-2017, 05:38 AM
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04-05-2017, 02:14 AM
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Started by lmbrutscher, 04-03-2017, 12:18 PM
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by rhall
04-04-2017, 08:45 AM
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Started by pacbio, 03-31-2017, 08:12 AM
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by pacbio
03-31-2017, 08:12 AM
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Started by Lmathew, 03-22-2017, 07:31 AM
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by Lmathew
03-23-2017, 10:30 AM
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Started by pacbio, 03-09-2017, 03:57 PM
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03-09-2017, 03:57 PM
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Started by huan, 03-08-2017, 11:45 PM
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03-08-2017, 11:45 PM
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Started by xuguorong, 03-03-2017, 03:44 PM
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by xuguorong
03-07-2017, 10:14 PM
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Started by pacbio, 12-20-2016, 10:29 AM
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03-01-2017, 03:43 PM
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by SEQadmin2
Next-generation sequencing (NGS) is now central to outbreak investigations and antimicrobial resistance tracking. Through sophisticated...-
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by SEQadmin2
CRISPR/Cas9 sparked the gene editing revolution for both research and therapeutics.1 But this system still showed severe issues that limited its applications. The most prominent were the heavy reliance on PAM sequences, delivery limitations, double-stranded breaks that prompt unintended edits and cell death, and editing inefficiency (both in targeting and in knock-in reliability).
Despite this, “CRISPR helped turn genome editing from a specialized technique into...-
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by SEQadmin2
Proteomics platforms are evolving rapidly, with advances in mass spectrometry and affinity-based approaches expanding what researchers can detect and at what scale. As the field moves toward deeper proteome coverage and clinical applications, scientists face an increasingly complex landscape of tools. This article will explore how researchers are navigating these choices to find the right platform for their work.
The systematic characterization of the human proteome has...-
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07-20-2026, 11:48 AM -
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by SEQadmin2
Genomics studies in neuroscience face a special challenge due to the brain’s complexity and scarcity of samples. Mapping changes in cell type and state using conventional next-generation sequencing methods remains challenging. Advances in technologies like single-cell sequencing, spatial transcriptomics, and long-read sequencing have opened the door to deeper studies of the brain and diseases like Alzheimer’s, amyotrophic lateral sclerosis (ALS), and schizophrenia.
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07-09-2026, 11:10 AM -
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Started by SEQadmin2, Yesterday, 02:55 AM
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Yesterday, 02:55 AM
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Started by SEQadmin2, 07-24-2026, 12:17 PM
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07-24-2026, 12:17 PM
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Started by SEQadmin2, 07-23-2026, 11:41 AM
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07-23-2026, 11:41 AM
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