CELENA ® S Digital Imaging System (Digital fluorescence microscope)

CELENA ® S Digital Imaging System (Digital fluorescence microscope)

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Product Code: CELENA S
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HK$0.00
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State-of-the-art equipment essential for modern cell biology research


 

Unique optical design

Through the self-development of Logos Biosystems, innovative light path, condenser, light source, and filter cube (LED Filter Cube) were designed. Through this, a digital cell imaging system with far superior image quality than other products was born.


 

Scientific-grade CMOS camera

The performance of digital cell imaging is highly dependent on the sensitivity and noise level of the built-in camera, and CELENA® S maximizes the Signal-to-Noise Ratio by using a scientific-grade CMOS camera with an extremely low noise level.


 

High Resolution Brightfield / Phase-Contrast Imaging

High Resolution Brightfield / Phase-Contrast Imaging


 

Imaging Immediate Analysis

CELENA® S has built-in software for cell image analysis, so you can analyze the acquired image immediately after imaging.


 

3-color LED fluorescence channel

User convenience has been greatly improved by simplifying multiple fluorescence imaging tasks. Provides a powerful fluorescence imaging environment by using long-lasting LEDs and hard-coated fluorescence filters.


 

Time Lapse & Z-Stack Imaging

With CELENA® S, time-lapse or Z-stack images can be obtained with just a few mouse clicks without complex operations.

 

Cell culture imaging system (Onstage Incubation System) capable of monitoring live cells (Live Cell Imaging)

The cell culture imaging system of CELENA® S can be used in various research fields that require real-time imaging or monitoring while culturing living cells, such as time-lapse imaging or cell growth monitoring. To implement this function, the cell culture system consists of a culture chamber, a temperature and humidity controller, and a gas supply device. The temperature, humidity, and concentration of oxygen and carbon dioxide during cell culture can be controlled very precisely by the user according to the experimental conditions. can.

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