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ISTORM Ultra High Resolution Microscopic Imaging System

NegotiableUpdate on 12/23
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Overview
The iSTORM series of ultra-high resolution microscopy imaging systems has successfully broken through the optical diffraction limit, making it possible to conduct research on single-molecule localization and counting, subcellular and macromolecular complex structure analysis, and biomacromolecule dynamics at a resolution scale of 20 nanometers. This has brought significant breakthroughs to fields such as life sciences and medicine.
Product Details

ISTORM Ultra High Resolution Microscopic Imaging System

ISTORM 2C series dual channel and iSTORM 3C series three channel ultra-high resolution microscopes

Lixian Intelligent Technology relies on Fudan University's automatic control, new generation information technology, and Hong Kong University of Science and Technology's biology, optics, image processing, and other technologies to form a team of scientists from various fields such as optics, biology, self-control, and information technology. It is also one of the international teams that industrialized the discovery of the 2014 Nobel Prize in Chemistry. We can provide users with ultra-high resolution microscopy imaging systems and comprehensive technical service support, ultimately enabling users to obtain imaging results in a time-saving and effortless manner.

iSTORMUltra high resolution microscopy imagingSystem Advantages
Resolution 20nm Ultra High Resolution
Multi channel simultaneous imaging saves time and efficiency, reduces photobleaching, and avoids crosstalk
Nano level active locking system imaging is stable and reliable
Optimized buffer formula can be used immediately upon startup without waiting
Dye fluorescence balance saves time

Lixian Intelligent TechnologyuseAdopting the STORM principle
By using a specially designed dye buffer combination, under strong laser irradiation, most of the dyes enter a dark state, allowing for the localization of a very small portion of dyes in an excited state (A-C). Whether the dye is in a dark or bright state is a random process. In this way, when enough excited state dyes are localized and superimposed, the true form of the structure of interest (D) can be reconstructed, and the spatial resolution is greatly improved. Even with the existence of diffraction rate limits, the position of a single fluorescent point can still be fitted and localized. Thus achieving ultra-high resolution microscopy imaging that breaks through the optical diffraction limit.

Independently developed real-time dynamic locking system
The locking accuracy is at the nanometer level, making the microscope ready to use and easy to operate. Sample location during the shooting process
Always maintain stability without the need for additional drift algorithm correction, greatly improving credibility and restoring real imaging results for biologists.
Multi channel simultaneous imaging can obtain real-time imaging results of multiple channels, shorten shooting time, preset multi-channel alignment parameters, without any subsequent processing, and reduce photobleaching.
The new ultra-high resolution imaging system operating software aims to create a simple, practical, and functionally transparent operating experience for users. ”ROHDEA is a new set of ultra-high resolution imaging system operating software independently developed by Lixian Intelligent Technology, aiming to create a simple, practical, and functionally transparent operating experience for users.

The shooting process is simple and easy to use
What you see is what you need ", streamlined operation process, simple and easy to use -" field of view adjustment "," wide field of view shooting "
The four step operation of "ultra-high resolution trial shooting and parameter adjustment" and "ultra-high resolution image acquisition" can easily obtain super-resolution images
The selection of real-time transparent software parameters during parameter optimization directly affects the quality of the final imaging results. ROHDEA provides a real-time parameter adjustment module, allowing users to intuitively compare the impact of parameter changes on imaging results.

Real time reconstruction of super-resolution images
Integrate multiple imaging algorithms and present real-time ultra-high resolution image reconstruction results and detailed parameters when users collect data, facilitating timely adjustment of automated user data management and managing each experimental data for users. Intelligently store all experimental parameters, raw data, and final results based on project sample naming and time information. Can provide experimental parameter templates for similar experiments, facilitating users' subsequent selection and optimization. Rich image data post analysis software features include clustering analysis, co localization analysis, fluorescence characteristic analysis, distance measurement, image beautification, etc., which facilitate the use of results for academic publication.

service(Trial shooting service)
Experimental details communication and sample delivery - * Results and experimental reports.

Application Fields and Scenarios
Cell biology, subcellular structure, neuroscience, protein localization, microbiology, immunology, protein-protein interactions, nanomaterials... In situ hybridization... Nucleic acid in situ hybridization, organelles, Golgi apparatus, yeast organelles, mitochondria