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Analytical Chemistry
|
December 22, 1999
Quantitative analysis of molecular interaction in a microfluidic channel: the T-sensor
A E Kamholz, B H Weigl, B A Finlayson, et al.
Fresenius' Journal of Analytical Chemistry
|
October 27, 2001
Lab-on-a-chip sample preparation using laminar fluid diffusion interfaces--computational fluid dynamics model results and fluidic verification experiments
B H Weigl, R L Bardell, N Kesler, et al.
Applied Optics
|
November 25, 2010
Capillary waveguide optrodes: an approach to optical sensing in medical diagnostics
M E Lippitsch, S Draxler, D Kieslinger, et al.
Journal of Biotechnology
|
February 14, 1994
Optical triple sensor for measuring pH, oxygen and carbon dioxide
B H Weigl, A Holobar, W Trettnak, et al.
Expert Review of Medical Devices
|
September 16, 2009
Simplicity of use: a critical feature for widespread adoption of diagnostic technologies in low-resource settings
B H Weigl, D S Boyle, T de los Santos, et al.
Journal of Chromatography. A
|
June 13, 2002
Initial study of using a laminar fluid diffusion interface for sample preparation in high-performance liquid chromatography
P Jandik, B H Weigl, N Kessler, et al.
Nature Biotechnology
|
May 1, 2001
A rapid diffusion immunoassay in a T-sensor
A Hatch, A E Kamholz, K R Hawkins, et al.
Lab on a Chip
|
October 28, 2015
Precision chemical heating for diagnostic devices
J R Buser, S Diesburg, J Singleton, et al.
IEEE Transactions on Bio-Medical Engineering
|
February 24, 2011
A highly sensitive rapid diagnostic test for Chagas disease that utilizes a recombinant Trypanosoma cruzi antigen
C A Barfield, R S Barney, C H Crudder, et al.
Analytical Methods : Advancing Methods and Applications
|
July 17, 2023
A disposable chemical heater and dry enzyme preparation for lysis and extraction of DNA and RNA from microorganisms
J R Buser, X Zhang, S A Byrnes, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
Analytical Chemistry
|
December 22, 1999
Quantitative analysis of molecular interaction in a microfluidic channel: the T-sensor
A E Kamholz, B H Weigl, B A Finlayson, et al.
Fresenius' Journal of Analytical Chemistry
|
October 27, 2001
Lab-on-a-chip sample preparation using laminar fluid diffusion interfaces--computational fluid dynamics model results and fluidic verification experiments
B H Weigl, R L Bardell, N Kesler, et al.
Applied Optics
|
November 25, 2010
Capillary waveguide optrodes: an approach to optical sensing in medical diagnostics
M E Lippitsch, S Draxler, D Kieslinger, et al.
Journal of Biotechnology
|
February 14, 1994
Optical triple sensor for measuring pH, oxygen and carbon dioxide
B H Weigl, A Holobar, W Trettnak, et al.
Expert Review of Medical Devices
|
September 16, 2009
Simplicity of use: a critical feature for widespread adoption of diagnostic technologies in low-resource settings
B H Weigl, D S Boyle, T de los Santos, et al.
Journal of Chromatography. A
|
June 13, 2002
Initial study of using a laminar fluid diffusion interface for sample preparation in high-performance liquid chromatography
P Jandik, B H Weigl, N Kessler, et al.
Nature Biotechnology
|
May 1, 2001
A rapid diffusion immunoassay in a T-sensor
A Hatch, A E Kamholz, K R Hawkins, et al.
Lab on a Chip
|
October 28, 2015
Precision chemical heating for diagnostic devices
J R Buser, S Diesburg, J Singleton, et al.
IEEE Transactions on Bio-Medical Engineering
|
February 24, 2011
A highly sensitive rapid diagnostic test for Chagas disease that utilizes a recombinant Trypanosoma cruzi antigen
C A Barfield, R S Barney, C H Crudder, et al.
Analytical Methods : Advancing Methods and Applications
|
July 17, 2023
A disposable chemical heater and dry enzyme preparation for lysis and extraction of DNA and RNA from microorganisms
J R Buser, X Zhang, S A Byrnes, et al.
Page
of 1