轨道轨道
四极离子阱
化学
质谱法
离子阱
蛋白质组
混合质谱仪
离子
色谱法
分析化学(期刊)
选择性反应监测
串联质谱法
生物化学
有机化学
作者
Michael W. Senko,Philip M. Remes,Jesse D. Canterbury,Raman Mathur,Qingyu Song,Shannon Eliuk,Chris Mullen,Lee Earley,Mark Hardman,Justin D. Blethrow,Huy Anh Bui,August A. Specht,Oliver Lange,Eduard Denisov,Alexander Makarov,Stevan Horning,Vlad Zabrouskov
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2013-11-19
卷期号:85 (24): 11710-11714
被引量:246
摘要
Proteome coverage and peptide identification rates have historically advanced in line with improvements to the detection limits and acquisition rate of the mass spectrometer. For a linear ion trap/Orbitrap hybrid, the acquisition rate has been limited primarily by the duration of the ion accumulation and analysis steps. It is shown here that the spectral acquisition rate can be significantly improved through extensive parallelization of the acquisition process using a novel mass spectrometer incorporating quadrupole, Orbitrap, and linear trap analyzers. Further, these improvements to the acquisition rate continue to enhance proteome coverage and general experimental throughput.
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