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Dive into the research topics where Linda G. Lee is active.

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Featured researches published by Linda G. Lee.


Biosensors | 2013

A Low-Cost, High-Performance System for Fluorescence Lateral Flow Assays

Linda G. Lee; Eric S. Nordman; Martin D Johnson; Mark F. Oldham

We demonstrate a fluorescence lateral flow system that has excellent sensitivity and wide dynamic range. The illumination system utilizes an LED, plastic lenses and plastic and colored glass filters for the excitation and emission light. Images are collected on an iPhone 4. Several fluorescent dyes with long Stokes shifts were evaluated for their signal and nonspecific binding in lateral flow. A wide range of values for the ratio of signal to nonspecific binding was found, from 50 for R-phycoerythrin (R-PE) to 0.15 for Brilliant Violet 605. The long Stokes shift of R-PE allowed the use of inexpensive plastic filters rather than costly interference filters to block the LED light. Fluorescence detection with R-PE and absorbance detection with colloidal gold were directly compared in lateral flow using biotinylated bovine serum albumen (BSA) as the analyte. Fluorescence provided linear data over a range of 0.4–4,000 ng/mL with a 1,000-fold signal change while colloidal gold provided non-linear data over a range of 16–4,000 ng/mL with a 10-fold signal change. A comparison using human chorionic gonadotropin (hCG) as the analyte showed a similar advantage in the fluorescent system. We believe our inexpensive yet high-performance platform will be useful for providing quantitative and sensitive detection in a point-of-care setting.


Nucleic Acids Research | 1993

Allelic discrimination by nick-translation PCR with fluorogenic probes.

Linda G. Lee; Charles R. Connell; Will Bloch


Nucleic Acids Research | 1997

New dye-labeled terminators for improved DNA sequencing patterns

Barnett B. Rosenblum; Linda G. Lee; S. L. Spurgeon; S. H. Khan; Steven M. Menchen; C. R. Heiner; S. M. Chen


Archive | 1995

System for real time detection of nucleic acid amplification products

Timothy M. Woudenberg; Kevin S. Bodner; Charles R. Connell; Alan M. Ganz; Lincoln Mcbride; Paul G. Saviano; John Shigeura; David H. Tracy; Eugene F. Young; Linda G. Lee


Nucleic Acids Research | 1992

DNA sequencing with dye-labeled terminators and T7 DNA polymerase: effect of dyes and dNTPs on incorporation of dye-terminators and probability analysis of termination fragments

Linda G. Lee; Charles R. Connell; Sam Lee Woo; Richard D. Cheng; Bernard F. McArdle; Carl W. Fuller; Nicolette D. Halloran; Richard Wilson


Archive | 1990

Spectrally resolvable rhodamine dyes for nucleic acid sequence determination

John Bergot; Vergine Chakerian; Charles R. Connell; J.Scott Eadie; Steven Fung; Davis Hershey; Linda G. Lee; Steven M. Menchen; Sam Lee Woo


Nucleic Acids Research | 1997

New energy transfer dyes for DNA sequencing

Linda G. Lee; S. L. Spurgeon; C. R. Heiner; Scott C. Benson; Barnett B. Rosenblum; Steven M. Menchen; Ronald J. Graham; A. Constantinescu; K. G. Upadhya; J. M. Cassel


Archive | 2000

Water-soluble rhodamine dyes and conjugates thereof

Linda G. Lee; Ronald J. Graham; William E. Werner; Elana Swartzman; Lily Lu


Archive | 1994

N-heteroaromatic ion and iminium ion substituted cyanine dyes for use as fluorescence labels

Linda G. Lee; Sam L. Woo


Archive | 2006

Apparatus, system, and method using immiscible-fluid-discrete-volumes

Linda G. Lee; Sam Lee Woo; Congcong Ma; Richard T. Reel; Mark F. Oldham; David M. Cox; Benjamin G. Schroeder; Jon M. Sorenson; Willy Wiyatno

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