Maldi imaging course. This is a unique educational experience in a small group.


Maldi imaging course. However, the simultaneous imaging of metal ions and small-molecule metabolites remains analytically challenging due to their distinct chemical properties and desorption/ionization behaviors. Slide preparation, data acquisition, data analysis and instrument handling are included. 2 days ago · Matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI) is a powerful technique for spatially resolved analysis of diverse molecular species within biological tissues. Sep 10, 2025 · This course is intended for beginners in the field of MALDI Imaging and will provide a comprehensive introduction to the entire workflow including basics of practical MALDI-TOF (/TOF) operation. The Mass Spectrometry Research Center‘s AIMS laboratory course is an immersive, four-day experience in MALDI imaging mass spectrometry that caters to attendees from industry, government, and academia. 2024 Laboratory Course is a unique educational opportunity designed to teach the procedures of MALDI Imaging Mass Spectrometry. The most widely used ionization technique used in overall MSI is matrix-assisted laser desorption/ionization (MALDI) imaging because of its high imaging speed and high spatial resolution This course is intended for beginners in the field of MALDI Imaging and will provide a compre hensive introduction to the entire workflow including basics of practical MALDI-TOF (/TOF) operation. Herein, 5,6 This course will cover the basics of Mass Spectrometry Imaging and then focus on MALDI imaging including sample preparation, on-tissue digests and derivatizations, and data analysis. Duration: 3 days Intention This training course provides a comprehensive introduction to the statistical analysis of imaging mass spectrometry data using the SCiLS™ Lab software, which goes beyond the online tutorials. The curriculum typically includes 3. 5 days of lectures and hands-on workshops focusing on the practical aspects of MALDI imaging. This training course is intended for novice Bruker solariX or scimaX ® series users without significant prior experience in MALDI Imaging experiments. Users of Bruker MALDI mass spectrometers, ideally, should have completed an Essential Operator . Users of Bruker MALDI mass spectrometers, ideally, should have completed an Essential Operator Welcome AIMS is a short course conducted on-site at Vanderbilt University by Resource faculty and staff. The course is designed for mid-level to senior investigators who are familiar with MALDI and have a working knowledge of mass spectrometry or histology. This is a unique educational experience in a small group The AIMS. The format includes both lectures and hands-on workshops with time dedicated to on-site demos from instrument vendors. The AIMS. 2023 Laboratory Course is a unique educational opportunity designed to teach the procedures of MALDI Imaging Mass Spectrometry. The course also includes on-site demonstrations of instrumentation by vendor sponsors. The course is focused on the mass spectrometric analysis of tissue sections using Bruker MALDI-TOF hard- and software. Intention This training course provides a comprehensive introduction to the statistical analysis of imaging mass spectrometry data using the SCiLS™ Lab software, which goes beyond the online tutorials. Course Description Mass spectrometry imaging (MSI) is a powerful technology in biomedical research, made available to the Johns Hopkins research community in the Applied Imaging Mass Spectrometry (AIMS) Core. In addition, a number of technology highlights will be presented, including high-speed imaging, high-sensitivity imaging, and image registration. Prerequisite Attendees should be well familiar with the principle of Imaging mass spectrometry. This course will cover the basics of MSI and then focus on MALDI imaging, including sample preparation, on-tissue digests and derivatizations, and data analysis and consists of 8 online modules of 45-60 minutes each with embedded quizzes. 27ffb olk1 plwxm lzdv pqyxfk dlg kgeuc q8odi 3gvut zrwqy