Smart Elemental Composition by Automatically Limiting the Element Set
Smart Elemental Composition by Automatically Limiting the Element Set
Smart Elemental Composition by Automatically Limiting the Element Set
Improving a High Sensitivity Assay for the Quantification of Teriparatide in Human Plasma Using the ionKey/MS System
A Novel Instrumental Strategy for Parallel Reaction Monitoring of Intact Proteins with an Orbitrap Analyzer
A High-Sensitivity UPLC/MS/MS Method for the Quantification of Desmopressin in Rat Plasma
PD Biomarker Measurement by LC/MS/MS – Resolving Sensitivity and Throughput Challenges Using High Resolution Mass Spectrometry
Characterization and Collision Cross Section Determination of Obesity Related Lipids Within Mouse Models Using Travelling Wave IMS-QTOF Mass Spectrometry
Pre-Filtering Ions in the Source Region to Improve Instrument Robustness and Dynamic Range
Low Attomole Limit of Quantification on an Orbitrap Fusion Lumos Tribrid Mass Spectrometer
A High Resolution Accurate Mass Approach for the Quantitation of Buprenorphine and Paroxetine in Rat Plasma
Increasing Sensitivity and Minimizing Sample Volume for the Quantification of Therapeutic and Endogenous Cyclic Peptides Using an Integrated Microfluidic Device
Quick and Sensitive Analysis of Multiclass Veterinary Drug Residues in Animal Products Using a Novel Benchtop Orbitrap Mass Spectrometry System
Targeted and Untargeted Lipidomics Using an Integrated Microfluidics Mass Spectrometry Technology
The Use of an Acid and Heat-Labile Surfactant for In-Gel Digestion
Reference Yeast and Human Whole Cell Protein Extracts for Mass Spectrometry Instrument Performance Monitoring and Method Development
A Mass-Spectrometry-Based Metabolic Phenotyping Strategy to Investigate the Molecular Response to Ionizing Radiation
Automated, Intelligent Sample Preparation: Integration of the ESI prepFAST Auto-Dilution System with the Thermo Scientific iCAP Q ICP-MS
Verification of Long-Term Stability and Batch-to-Batch Reproducibility
Providing the Highest Retention Time and Peak Area Reproducibility for Maximal Confidence in Peptide Mapping Experiments