
Acquire high-quality images across a vast range of assay types, obtain exceptional image quality from your 3D samples, and unlock new discoveries with AI-powered IN Carta® Image Analysis Software.
Boost lab productivity by imaging more plates in less time and simplifying the learning curve for new users. A new, automation friendly design enables you to integrate easily into automated workflows for faster, more reliable results.
The system offers brightfield label-free imaging, widefield and confocal fluorescent imaging.
Offers greater image resolution and sensitivity with up to 4x increase in signal, which leads to lower exposure times.
Model | ImageXpress.HCS.ai Widefield | ImageXpress.HCS.ai Confocal | ImageXpress.HCS.ai Advanced |
---|---|---|---|
Widefield capability | Yes | Yes | Yes |
Water immersion option (20X-60X) | Yes | Yes | Yes |
Magnification changer option (1X and 1.5X) | Yes | Yes | Yes |
Environmental control option | Yes | Yes | Yes |
LED illumination | Yes | Yes | |
Standard spinning disk confocal (60μm pinhole (single), 60μm pinhole + 50μm slit (dual) | Yes | Yes | |
Deep tissue spinning disk 50μm pinhole Deep Tissue disk (dual) | Yes | ||
Laser illumination | Yes |
Emulating organ physiology by co-culturing cells in a supportive 3D matrix and using microfluidic channels to perfuse nutrients or compounds over the resulting cellular structures, is rapidly gaining popularity as a biologically relevant screening model for new drugs or toxicity. The ImageXpress system provides a turnkey solution for both 2D or 3D applications and can accommodate many different types of slide and plate formats.
Neurons create connections via extensions of their cellular body called processes. This biological phenomenon is referred to as neurite outgrowth. Understanding the signaling mechanisms driving neurite outgrowth provides valuable insight into neurotoxic responses, compound screening, and for interpreting factors influencing neural regeneration. Using the ImageXpress Micro system in combination with MetaXpress Image Analysis Software automated neurite outgrowth imaging and analysis is possible for slide or microplate-based cellular assays.
Three-dimensional (3D) cells cultured into spheroids provide a more complete and physiologically predictive model especially for cancer research. Acquiring measurements from the larger structure involves acquiring images from different depths within the body of the spheroid and analyzing them in 3D or collapsing into a single 2D stack before analysis. The ImageXpress Micro system and MetaXpress software are designed to make acquisition and analysis of 3D spheroids fast and accurate.
Three-dimensional (3D) cell models are physiologically relevant and more closely represent tissue microenvironments, cell-to-cell interactions, and biological processes that occur in vivo. Now you can generate more predictive data by incorporating technologies like the ImageXpress system with the integrated 3D Analysis Module in MetaXpress software. This single interface will enable you to meet 3D acquisition and analysis challenges without compromise to throughput or data quality, giving you confidence in your discoveries.
The development and integration of three-dimensional (3D) assay models are becoming popular to drive translational biology. Our ImageXpress system allows superior visualization of thick samples by minimizing background fluorescence and increasing sharpness, resulting in accurate image segmentation. Increase the biological relevance of your screening assays with a seamless integration between acquisition and analysis of cells in a 3D space to yield volume, intensity, and distance measurements.
Screening for off-target or toxic effects is very important during the development of new drugs and for the extension of the therapeutic potential of existing molecules. ImageXpress systems are fully integrated hardware and software platforms for automated acquisition and analysis of images for high-throughput cell-based cytotoxicity testing. Configured with optional environmental control, living cell responses or kinetic reactions can be monitored in real time for several days.
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