Coded Apertures in Mass Spectrometry

Author:

Amsden Jason J.1,Gehm Michael E.1,Russell Zachary E.2,Chen Evan X.1,Di Dona Shane T.1,Wolter Scott D.3,Danell Ryan M.4,Kibelka Gottfried5,Parker Charles B.1,Stoner Brian R.16,Brady David J.1,Glass Jeffrey T.1

Affiliation:

1. Department of Electrical and Computer Engineering, Duke University, Durham, North Carolina 27708;

2. Ion Innovations, Roswell, Georgia 30075

3. Department of Physics, Elon University, Elon, North Carolina 27278

4. Danell Consulting, Winterville, North Carolina 28590

5. CMS Field Products, OI Analytical, Pelham, Alabama 35124

6. Discovery Science and Technology, RTI International, Research Triangle Park, North Carolina 27709

Abstract

The use of coded apertures in mass spectrometry can break the trade-off between throughput and resolution that has historically plagued conventional instruments. Despite their very early stage of development, coded apertures have been shown to increase throughput by more than one order of magnitude, with no loss in resolution in a simple 90-degree magnetic sector. This enhanced throughput can increase the signal level with respect to the underlying noise, thereby significantly improving sensitivity to low concentrations of analyte. Simultaneous resolution can be maintained, preventing any decrease in selectivity. Both one- and two-dimensional (2D) codes have been demonstrated. A 2D code can provide increased measurement diversity and therefore improved numerical conditioning of the mass spectrum that is reconstructed from the coded signal. This review discusses the state of development, the applications where coding is expected to provide added value, and the various instrument modifications necessary to implement coded apertures in mass spectrometers.

Publisher

Annual Reviews

Subject

Analytical Chemistry

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