Celloger® Stack, Automated Multi-layer Vessel Monitoring System from Curiosis
Celloger® Stack is an automated multi-layer vessel monitoring system that enables real-time imaging of cell samples while they are cultured in an incubator.
Celloger® Stack enabled reliable monitoring of multi-layer vessels with clear imaging
Cell culture and cell manufacturing
Celloger® Stack enabled reliable monitoring of cell growth in CELLStack vessels without disturbing the culture environment. The system delivered clear images that provided a comprehensive view of the culture area, along with dependable confluence analysis for tracking proliferation trends over time. The Scan and Analysis Apps were intuitive to use, making image acquisition and data analysis straightforward. With minimal user intervention required after setup, Celloger® Stack streamlined routine culture monitoring and facilitated timely assessment of cell growth throughout the experiment.
Review Date: 25 Jun 2026 | CURIOSIS
For large-scale cell culture using multi-layer vessels, I’ve found Celloger® Stack to perform very well overall.
Cell monitoring
For large-scale cell culture using multi-layer vessels, I’ve found Celloger® Stack to perform very well overall. Installation and setup were quick, and the system ran very stably even during long-term imaging inside the incubator. The interface is intuitive, so configuring the imaging and managing high-volume cultures felt straightforward. Image resolution and clarity fully met my needs, and the basic adjustment tools made it easy to fine-tune focus and contrast. Real-time image processing worked smoothly, and the analysis features were sufficient for tracking confluency and growth trends in large-batch cultures. The results were displayed in clear, easy-to-read charts and graphs, which made it simple to review and compare data at a glance.
Review Date: 24 Nov 2025 | CURIOSIS
Highly effective in capturing MSC proliferation during the 6-day culture in the 10-layer Cellstack
MSC therapy process development
During the 6-day culture of MSCs in a 10-layer Cellstack, the proliferation of cells at specified locations within the vessel was successfully recorded through timelapse imaging. The ability to utilize this setup directly within the incubator proved to be highly convenient.
Review Date: 21 Oct 2024 | CURIOSIS
Celloger® Stack can detect cells growing in a multi-layer chamber and identify the optimal time for cell harvest. With its motorized camera that can move in all directions, the system captures multiple points within the travel range which can be made into a time-lapse video with a simple click.
Key features
- Real-time live cell monitoring & multi-layer observation up to 10 layers (image acquired from the bottom layer)
- Multi-position time-lapse imaging & recording
- Enables cell quality check and shows confluency rate while culturing
- Improved reproducibility for mass cell culture and production
- No need to take the cell sample out of the incubator, eliminating contamination concerns
Specification
- Dimensions: 350 x 330 x 450 mm
- Weight: 15kg
- Objective Lens: 2X
- Imaging mode: Brightfield
- Imaging positions: Multiple
- Stage: Motorized XYZ (Camera moving)
- Camera: 5MP CMOS
- Field of view: 2.53 x 1.9 mm
- Vessel types: Multi-layer chamber up to 10 layers
Celloger Stack product brochure
In this application note, CURIOSIS presents the Celloger® Stack, an automated multi-layer vessel monitoring system. It enables real-time cell monitoring and observation of up to 10 layers, improving reproducibility in mass cell culture. The system checks cell quality, detects confluency rate, and eliminates contamination worries by keeping cells inside the incubator. With multi-position time-lapse imaging, researchers can determine the right harvest time without opening the incubator.
Celloger Stack, an automated multi-layer cell imaging system
The Celloger® Stack is an automated imaging system designed for continuous monitoring of multi-layer cell cultures directly within an incubator. Using optical imaging and motorized scanning, discover how the system captures high-resolution images across multiple positions over time, enabling consistent tracking of cell growth while minimising contamination risk.
With autofocus, anti-condensation design, and time-lapse imaging capabilities, the platform supports efficient quality control of large-scale culture systems. Explore how its modular design allows multiple units to operate independently or be centrally monitored, making it suitable for high-throughput and space-limited laboratory environments.























