
Evident announces the release of two new spinning disk confocal microscopes, the IXplore IX85 SpinXL and the IXplore IX85 SpinSR. Built on Evident’s new IXplore IX85 automated inverted microscope system, the IX85 SpinXL and IX85 SpinSR add powerful new technology to the platform, expanding the possibilities of what researchers can capture and discover in live-cell imaging.
Powered by CrestOptics X-Light spinning disk technology, the IXplore IX85 SpinXL offers a 26.5 mm field number (FN) that enables users to quickly capture cellular dynamics and rapidly screen large areas.
The IX85 SpinXL streamlines tasks throughout the lab with intelligent automation and easy workflows. It supports many imaging applications and multiple users by balancing speed, precision and flexibility. The system is designed to evolve with research needs via a wide wavelength range, tailored disk options and expandable imaging modalities.
Powered by Yokogawa CSU-W1 spinning disk technology, the IXplore IX85 SpinSR super-resolution microscope enables users to capture ultra-small cellular dynamics in stunning detail.
Designed for prolonged cell viability in time-lapse experiments, the system combines fast image acquisition, advanced algorithms and XY resolution down to 120 nm to accelerate 3D super-resolution imaging. Equipped with a real-time controller for precisely coordinated imaging, the system delivers fast, gentle live-cell imaging at the nanoscale.
The IX85 SpinSR simplifies the capture of super-resolution details, empowering users to discover new insights faster. TruSight SR super-resolution algorithm enhances image resolution down to 120 nm with one click. It automatically optimizes the image processing filter based on the signal-to-noise ratio, enabling appropriate processing for live-cell imaging even in dim fluorescence conditions. TruSight SR preserves the original image’s intensity levels, enabling users to analyze and compare the brightness of samples in super-resolution images for quantitative analysis. Its 3D algorithm supports organoid research by delivering clear and precise super-resolution results, even deep inside samples.