Leica Microsystems Introduces Tissue IA 2.0* Quantitative Image Analysis

12 Apr 2012
Kerry Parker
CEO

Product news

Leica Microsystems announces the release of Tissue IA 2.0, high performance image analysis for discovery research. Combining fluorescence and brightfield analysis capabilities in a single platform, with precision cell modelling, Tissue IA 2.0 offers a superior solution for IHC biomarker quantification. Tissue IA 2.0 joins the Total Digital Pathology portfolio from Leica, providing streamlined end-to-end excellence in capture, management and analysis of digital pathology images.

A major challenge in research today is retrieval of quantitative, reproducible data from tissuebased IHC studies. Tissue IA 2.0 provides expert tools for researchers to extract the most from their studies. Powerful color separation and multi-marker colocalization functionality provides advanced insight and unbiased measurement of multiple antigen immunostaining in brightfield or fluorescent samples. Sophisticated cell modelling accurately detects and quantifies differential expression of staining in cellular compartments, providing detailed insight into cytoplasmic, membrane and nuclear biomarker localization.

The advanced dual staining capabilities in Tissue IA2.0 enable researchers to identify cell cohorts at the molecular level. Use one marker to identify a population of interest and then quantify expression of a second, providing exceptional analysis performance and greater understanding of your slides. Algorithms are easily adjusted and optimized for different markers, tissue and protocols giving a flexible platform for drug discovery applications.

Easy to deploy and easy to use, the Tissue IA web-accessible interface means that users can take their analysis with them wherever they go. With high throughput batch analysis capacity, Tissue IA 2.0 will process whole slides, regions of interest or tissue microarray cores, and automatically integrate analysis results with your slides. A built-in upload interface facilitating integration of algorithms from 3rd party software solutions, gives greater flexibility to further expand your analysis options.

Dr. Donal O’Shea, Head of Digital Pathology in Leica Microsystems, says: “Mulitplexing is of growing importance in translational research and tools to help quantify the expression and location of multiple biomarkers concurrently in tissue are a real requirement. TissueIA 2.0 delivers for the user through offering chromogenic and fluorescence quantification and co-localization, cell based histoscoring on multi-compartmental IHC staining and the power to include and exclude cell populations based on biomarker expression. In conjunction with our SCN400 F and Ariol platforms, this further expands our Digital Pathology portfolio for the life science and clinical researcher and demonstrates our ongoing commitment to this area.”

Tissue IA 2.0, with its powerful, streamlined analysis, is the ideal choice for biomarker discovery and translational research. Its unique combination of flexibility, automation and ease-of-use make it an unparalleled tool for digital pathology research.

Leica Microsystems will be at the American Association for Cancer Research Annual Meeting 2012, March 31 – April 4, Chicago, IL. Visit Leica at booth 4103 to experience our new image analysis solution for Digital Pathology.

*For research use only. Not for use in diagnostic procedures.

Links

Tags

Cell-Based AssaysCell-based assays are used to monitor the presence, quantity and activities of a desired cellular analyte including drug molecules or biomarkers. This can reveal information on cell health (apoptosis, cytotoxicity, viability and proliferation assays), cell metabolism, cell migration and cell signaling mechanisms. Find the best cell-based assay products, kits and equipment with our peer reviewed product directory: compare products, check customer reviews and receiving pricing direct from manufacturers.BiomarkersBiomarkers are biological markers which can be measured and evaluated to indicate a biological state. The use of biomarkers in research and diagnosis can indicate a normal or disease state or drug response of cells / tissues. Biomarkers include genetic markers, cell surface markers such as antigens, antibodies or receptors and secreted molecules such as cytokines. An assay system is required for identification of biomarkers. :Light MicroscopyLight microscopes or optical microscopes are used to visualize microscale objects under magnification, including cells, clinical specimens and materials. Lab equipment for light microscopy includes confocal microscopes, fluorescence microscopes, zoom and stereo microscopes. Microscope slides and imaging reagents are available for visualizing samples, as well as various microscope stages and incubators for large or temperature-sensitive samples. Find the best light microscopes in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.Translational ResearchDigital PathologyDigital pathology involves the use of digital imaging and computational tools to analyze pathology slides. It is transforming diagnostics, research, and education by offering enhanced image storage and analysis. Explore digital pathology solutions in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.Digital ImagingDigital imaging is a technique that captures images of biological and chemical samples in high resolution, often using advanced cameras and sensors. This technology is crucial in microscopy, diagnostics, and quality control. Explore digital imaging systems in our peer-reviewed product directory; compare products, check reviews, and get pricing directly from manufacturers.Fluorescence MicroscopyFluorescence microscopy has become an essential tool in biology, as well as in materials science. The application of many fluorochromes has made it possible to identify cells and sub-microscopic cellular components with a high degree of specificity. Using multiple fluorescence labels, different probes can simultaneously identify several target molecules.
Leica Microsystems Introduces Tissue IA 2.0* Quantitative Image Analysis