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Eugene J H Wee

Showing results (1-10 of 22) with videos related to

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Chemical Communications (Cambridge, England)|August 6, 2014
Measuring whole genome methylation via oxygen channelling chemistryEugene J H Wee, Matt Trau
Nature Chemistry|August 22, 2014
Enzyme catalysis: Evolution made easyEugene J H Wee, Matt Trau
Chemical Communications (Cambridge, England)|February 5, 2016
Accurate and sensitive total genomic DNA methylation analysis from sub-nanogram input with embedded SERS nanotagsYuling Wang, Eugene J H Wee, Matt Trau
Chemical Communications (Cambridge, England)|June 12, 2015
Highly sensitive DNA methylation analysis at CpG resolution by surface-enhanced Raman scattering via ligase chain reactionYuling Wang, Eugene J H Wee, Matt Trau
Biosensors & Bioelectronics|November 20, 2016
High-speed biosensing strategy for non-invasive profiling of multiple cancer fusion genes in urineKevin M Koo, Eugene J H Wee, Matt Trau
Scientific Reports|October 14, 2015
A simple bridging flocculation assay for rapid, sensitive and stringent detection of gene specific DNA methylationEugene J H Wee, Thu Ha Ngo, Matt Trau
Clinical Epigenetics|July 14, 2015
Colorimetric detection of both total genomic and loci-specific DNA methylation from limited DNA inputsEugene J H Wee, Thu Ha Ngo, Matt Trau
Theranostics|July 5, 2016
Colorimetric TMPRSS2-ERG Gene Fusion Detection in Prostate Cancer Urinary Samples via Recombinase Polymerase AmplificationKevin M Koo, Eugene J H Wee, Matt Trau
Lab on a Chip|August 30, 2017
Enabling miniaturised personalised diagnostics: from lab-on-a-chip to lab-in-a-dropKevin M Koo, Eugene J H Wee, Yuling Wang, et al.
Theranostics|July 23, 2016
Simple, Sensitive and Accurate Multiplex Detection of Clinically Important Melanoma DNA Mutations in Circulating Tumour DNA with SERS NanotagsEugene J H Wee, Yuling Wang, Simon Chang-Hao Tsao, et al.
Pageof 3

Showing results (1-10 of 22) with videos related to

Sort By:
Pageof 3
Chemical Communications (Cambridge, England)|August 6, 2014
Measuring whole genome methylation via oxygen channelling chemistryEugene J H Wee, Matt Trau
Nature Chemistry|August 22, 2014
Enzyme catalysis: Evolution made easyEugene J H Wee, Matt Trau
Chemical Communications (Cambridge, England)|February 5, 2016
Accurate and sensitive total genomic DNA methylation analysis from sub-nanogram input with embedded SERS nanotagsYuling Wang, Eugene J H Wee, Matt Trau
Chemical Communications (Cambridge, England)|June 12, 2015
Highly sensitive DNA methylation analysis at CpG resolution by surface-enhanced Raman scattering via ligase chain reactionYuling Wang, Eugene J H Wee, Matt Trau
Biosensors & Bioelectronics|November 20, 2016
High-speed biosensing strategy for non-invasive profiling of multiple cancer fusion genes in urineKevin M Koo, Eugene J H Wee, Matt Trau
Scientific Reports|October 14, 2015
A simple bridging flocculation assay for rapid, sensitive and stringent detection of gene specific DNA methylationEugene J H Wee, Thu Ha Ngo, Matt Trau
Clinical Epigenetics|July 14, 2015
Colorimetric detection of both total genomic and loci-specific DNA methylation from limited DNA inputsEugene J H Wee, Thu Ha Ngo, Matt Trau
Theranostics|July 5, 2016
Colorimetric TMPRSS2-ERG Gene Fusion Detection in Prostate Cancer Urinary Samples via Recombinase Polymerase AmplificationKevin M Koo, Eugene J H Wee, Matt Trau
Lab on a Chip|August 30, 2017
Enabling miniaturised personalised diagnostics: from lab-on-a-chip to lab-in-a-dropKevin M Koo, Eugene J H Wee, Yuling Wang, et al.
Theranostics|July 23, 2016
Simple, Sensitive and Accurate Multiplex Detection of Clinically Important Melanoma DNA Mutations in Circulating Tumour DNA with SERS NanotagsEugene J H Wee, Yuling Wang, Simon Chang-Hao Tsao, et al.
Pageof 3