Cell Xtreme

Cell Xtreme

Description

Cell Xtreme is an advanced super-resolution platform combining fluorescence-based MI-SIM with label-free Optical Diffraction Tomography technology. This correlative approach combines the molecular specificity of fluorescence imaging with the complete spatial context provided by label-free imaging.

ODT reconstructs three-dimensional refractive index maps of living samples without fluorescent labels or damaging high-intensity illumination. Together with MI-SIM and AI-supported image segmentation, Cell Xtreme provides detailed information about cellular architecture, molecular targets and dynamic biological processes while maintaining cell viability.

Product description

Cell Xtreme is an advanced super-resolution platform combining fluorescence-based MI-SIM with label-free Optical Diffraction Tomography technology. This correlative approach combines the molecular specificity of fluorescence imaging with the complete spatial context provided by label-free imaging.

ODT reconstructs three-dimensional refractive index maps of living samples without fluorescent labels or damaging high-intensity illumination. Together with MI-SIM and AI-supported image segmentation, Cell Xtreme provides detailed information about cellular architecture, molecular targets and dynamic biological processes while maintaining cell viability.

Features

  • Integrated MI-SIM and label-free ODT imaging
  • Fluorescence super-resolution down to 60 nm
  • Label-free tomographic resolution down to 130 nm
  • Volumetric ODT imaging in less than one second
  • No Z-stacking required for ODT volume acquisition
  • Minimal phototoxicity for continuous long-term imaging
  • AI segmentation of cellular structures
  • Identification of nuclei, chromatin, nucleoli, lipid droplets and cell boundaries
  • Multiplex imaging with fewer fluorescent labels
  • Digital registration of SIM and ODT images
  • Multi-site imaging and sample overview tools
  • Intelligent event triggering and feedback microscopy
  • Hybrid tracking using frequent ODT imaging and targeted SIM acquisition

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