iMScope QT
The iMScope QT boasts not only fusion with morphology studies but also excellent speed, sensitivity, and spatial resolution, clearing the way to next-generation mass spectrometry imaging.
Imaging
Mass spectrometry imaging (MSI) is a powerful tool for mapping the spatial distribution of biomolecules in a variety of samples. Functional near-infrared spectroscopy (fNIRS) is an optical brain imaging technique that allows functional imaging of brain activity by monitoring blood oxygenation and blood volume in the pre-frontal cortex, and can even assess multiple cerebral cortex locations selectively.
Shimadzu offers a complete mass spectrometry imaging and brain imaging product lineup, including our flagship model for Q-TOF MS Imaging, the iMScope QT Imaging Mass Microscope, the iMLayer AERO automatic sprayer for MALDI imaging for easily obtaining images with high sensitivity and spatial resolution, and the LABNIRS and LIGHTNIRS fNIRS systems, built for brain science research.
Learn more about our full lineup and how you can enhance your laboratory's performance below.
Showing 1 - 7 of
7iMScope QT
The iMScope QT boasts not only fusion with morphology studies but also excellent speed, sensitivity, and spatial resolution, clearing the way to next-generation mass spectrometry imaging.
iMLayer AERO
Matrix Vapor Deposition System
iMLayer
Matrix Vapor Deposition System
IMAGEREVEAL MS
IMAGEREVEAL MS is comprehensive image analysis software that can “reveal” the images hidden in a large amount of data. Different software licenses are available tailored towards different analysis goals.
Multimodal Imaging System
MALDI-MS molecular imaging data and LA-ICP-MS elemental imaging data can be analyzed on a single software solution. That makes multimodal imaging more accessible.
LABNIRS
Just how the human brain functions remains one of the greatest unsolved puzzles. To solve this mystery, brain-function imaging for visualization of brain functions has developed rapidly in recent years.
LIGHTNIRS
Near infrared light, which readily diffuses easily through biological tissue, can be used to measure localized blood oxygenation levels of the brain to monitor where activity occurs in response to a task of stimulus.
Please visit our US website.