Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.

Mass spectrometry, a popular technique for elucidating the molecular contents of experimental samples, creates data sets comprised of millions of three-dimensional (m/z, retention time, intensity) data points that correspond to the types and quantities of analyzed molecules. Open and commercial MS d...

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Main Authors: Kyle Handy, Jebediah Rosen, André Gillan, Rob Smith
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5687738?pdf=render
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spelling doaj-5e126c7718fc4b54a95c8162702e4d352020-11-25T02:33:15ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011211e018805910.1371/journal.pone.0188059Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.Kyle HandyJebediah RosenAndré GillanRob SmithMass spectrometry, a popular technique for elucidating the molecular contents of experimental samples, creates data sets comprised of millions of three-dimensional (m/z, retention time, intensity) data points that correspond to the types and quantities of analyzed molecules. Open and commercial MS data formats are arranged by retention time, creating latency when accessing data across multiple m/z. Existing MS storage and retrieval methods have been developed to overcome the limitations of retention time-based data formats, but do not provide certain features such as dynamic summarization and storage and retrieval of point meta-data (such as signal cluster membership), precluding efficient viewing applications and certain data-processing approaches. This manuscript describes MzTree, a spatial database designed to provide real-time storage and retrieval of dynamically summarized standard and augmented MS data with fast performance in both m/z and RT directions. Performance is reported on real data with comparisons against related published retrieval systems.http://europepmc.org/articles/PMC5687738?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kyle Handy
Jebediah Rosen
André Gillan
Rob Smith
spellingShingle Kyle Handy
Jebediah Rosen
André Gillan
Rob Smith
Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
PLoS ONE
author_facet Kyle Handy
Jebediah Rosen
André Gillan
Rob Smith
author_sort Kyle Handy
title Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
title_short Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
title_full Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
title_fullStr Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
title_full_unstemmed Fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
title_sort fast, axis-agnostic, dynamically summarized storage and retrieval for mass spectrometry data.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Mass spectrometry, a popular technique for elucidating the molecular contents of experimental samples, creates data sets comprised of millions of three-dimensional (m/z, retention time, intensity) data points that correspond to the types and quantities of analyzed molecules. Open and commercial MS data formats are arranged by retention time, creating latency when accessing data across multiple m/z. Existing MS storage and retrieval methods have been developed to overcome the limitations of retention time-based data formats, but do not provide certain features such as dynamic summarization and storage and retrieval of point meta-data (such as signal cluster membership), precluding efficient viewing applications and certain data-processing approaches. This manuscript describes MzTree, a spatial database designed to provide real-time storage and retrieval of dynamically summarized standard and augmented MS data with fast performance in both m/z and RT directions. Performance is reported on real data with comparisons against related published retrieval systems.
url http://europepmc.org/articles/PMC5687738?pdf=render
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