亨特教授与芬尼根公司的关系及其对质谱仪发展的影响。

IF 6.1 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Michael S Story, George C Stafford, John E P Syka
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引用次数: 0

摘要

唐·亨特与芬尼根仪器公司50年的合作,在质谱方面取得了许多创新,从新的仪器到新的分析方法,从而实现了新的应用。这种合作的成果,直接或间接地,对现代质谱的仪器和实践产生了广泛而持久的影响。本专著的作者是芬尼根研究和开发团队的成员,他们的时间框架共同涵盖了整个合作。这篇文章根据他们的个人回忆以及其他参与者的回忆,提供了亨特-芬尼根关系的叙述历史和年表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Professor D.F. Hunt relationship with Finnigan Corporation and His Impact on Mass Spectrometer Development.

Don Hunt's 50-year collaboration with Finnigan Instruments Corporation has resulted in many innovations in mass spectrometry that range from new instrumentation to new analytical methodologies which in turn enabled new applications. The fruits of this collaboration, directly and indirectly, have had a broad and enduring impact on the instrumentation and practice of modern mass spectrometry. The authors of this monograph were members of the research and development team at Finnigan over time frames that collectively encompass the entirety of the collaboration. This article provides a narrative history and chronology of the Hunt-Finnigan relationship based on their personal recollections as well as the recollections of other participants.

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来源期刊
Molecular & Cellular Proteomics
Molecular & Cellular Proteomics 生物-生化研究方法
CiteScore
11.50
自引率
4.30%
发文量
131
审稿时长
84 days
期刊介绍: The mission of MCP is to foster the development and applications of proteomics in both basic and translational research. MCP will publish manuscripts that report significant new biological or clinical discoveries underpinned by proteomic observations across all kingdoms of life. Manuscripts must define the biological roles played by the proteins investigated or their mechanisms of action. The journal also emphasizes articles that describe innovative new computational methods and technological advancements that will enable future discoveries. Manuscripts describing such approaches do not have to include a solution to a biological problem, but must demonstrate that the technology works as described, is reproducible and is appropriate to uncover yet unknown protein/proteome function or properties using relevant model systems or publicly available data. Scope: -Fundamental studies in biology, including integrative "omics" studies, that provide mechanistic insights -Novel experimental and computational technologies -Proteogenomic data integration and analysis that enable greater understanding of physiology and disease processes -Pathway and network analyses of signaling that focus on the roles of post-translational modifications -Studies of proteome dynamics and quality controls, and their roles in disease -Studies of evolutionary processes effecting proteome dynamics, quality and regulation -Chemical proteomics, including mechanisms of drug action -Proteomics of the immune system and antigen presentation/recognition -Microbiome proteomics, host-microbe and host-pathogen interactions, and their roles in health and disease -Clinical and translational studies of human diseases -Metabolomics to understand functional connections between genes, proteins and phenotypes
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