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Nonlinear Dynamics progenesis qi metascope
An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using <t>Progenesis</t> QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.
Progenesis Qi Metascope, supplied by Nonlinear Dynamics, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/progenesis+qi+metascope/pmc11127212-133-5-8?v=Nonlinear+Dynamics
Average 90 stars, based on 1 article reviews
progenesis qi metascope - by Bioz Stars, 2026-07
90/100 stars

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1) Product Images from "Measurement of very low-molecular weight metabolites by traveling wave ion mobility and its use in human urine samples"

Article Title: Measurement of very low-molecular weight metabolites by traveling wave ion mobility and its use in human urine samples

Journal: Journal of Pharmaceutical Analysis

doi: 10.1016/j.jpha.2023.12.011

An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using Progenesis QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.
Figure Legend Snippet: An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using Progenesis QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.

Techniques Used: Liquid Chromatography, Ion-Mobility Spectrometry, Mass Spectrometry, Tandem Mass Spectroscopy

Metabolite identification in human urine under positive electrospray ionization (ESI + ) and negative electrospray ionization (ESI − ) modes analyzed by  Progenesis QI  software.
Figure Legend Snippet: Metabolite identification in human urine under positive electrospray ionization (ESI + ) and negative electrospray ionization (ESI − ) modes analyzed by Progenesis QI software.

Techniques Used: Software



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An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using <t>Progenesis</t> QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.
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An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using <t>Progenesis</t> QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.
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An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using <t>Progenesis</t> QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.
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An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using Progenesis QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.

Journal: Journal of Pharmaceutical Analysis

Article Title: Measurement of very low-molecular weight metabolites by traveling wave ion mobility and its use in human urine samples

doi: 10.1016/j.jpha.2023.12.011

Figure Lengend Snippet: An overview of the workflow for the proposed ultra-performance liquid chromatography (UPLC)/traveling wave ion mobility spectrometry (TWIMS)-quadrupole-time-of-flight (QTOF)-mass spectrometry (MS) analysis for target screening and compound identification. (A) High definition MS E (HDMS E ) data processing for screening target metabolites using Progenesis QI. (B) Average numbers of metabolite candidates given by different matching criteria. (C) Example of identification of l -tryptophan in human urine using measured mass-to-charge ratio ( m / z ), isotopic similarity (iso), retention time (RT), fragment ions (MS/MS), and collision cross-sections (CCS) value. CE: collision energy; 4D: four-dimensional; ESI: electrospray ionization.

Article Snippet: Metabolite identifications were performed using Progenesis QI MetaScope (Nonlinear Dynamics, Newcastle, UK), searching against the Human Metabolome Database (HMDB) structural database version 5.0 [ ].

Techniques: Liquid Chromatography, Ion-Mobility Spectrometry, Mass Spectrometry, Tandem Mass Spectroscopy

Metabolite identification in human urine under positive electrospray ionization (ESI + ) and negative electrospray ionization (ESI − ) modes analyzed by  Progenesis QI  software.

Journal: Journal of Pharmaceutical Analysis

Article Title: Measurement of very low-molecular weight metabolites by traveling wave ion mobility and its use in human urine samples

doi: 10.1016/j.jpha.2023.12.011

Figure Lengend Snippet: Metabolite identification in human urine under positive electrospray ionization (ESI + ) and negative electrospray ionization (ESI − ) modes analyzed by Progenesis QI software.

Article Snippet: Metabolite identifications were performed using Progenesis QI MetaScope (Nonlinear Dynamics, Newcastle, UK), searching against the Human Metabolome Database (HMDB) structural database version 5.0 [ ].

Techniques: Software