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JuLI Stage Real-Time Cell History Recorder
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JuLI Stage Fluidigm C1 SOS
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JuLI™ Stage – C1 SOS (Single-cell Observation System) simplifies the task of counting cells in Fluidigm™ C1 integrated fluidic circuits (IFC) vessels (96 and 800 format). Until now, researchers spent a tremendous amount of time and effort, tediously counting cell in C1 IFC vessels to verify that a single cell is present at each circuit. JuLI™ Stage – C1 SOS (Single-cell Observation System) simplifies the task and accurately observes, counts, and records detection of single cells in each fluidic circuit in a mater of just a few minutes. Cells can be imaged in Bright, GFP, RFP, and DAPI, stored, and then counted and processed by JuLI™ Stage – C1 SOS software to ensure that only a single cell is in each circuit.
Features – Observation and imaging of each Fluidigm™ C1 integrated fluidic circuits (IFC)
Monitors and images each IFC circuit.
Records images in Bright, GFP, RFP, DAPI, and merge (user selected).
4X. 10X, 20X + Digital Zoom
Accuracy you need to confidently perform your experiment
Accurate detection of single cells in each IFC circuit.
Software counts cells in each IFC circuit.
Saves images from each IFC circuit for review and documentation.
Convenience, Fast, and Reliable
Just one step to start counting and verification process. User simply put C1 IFC on the JuLI™ Stage – C1 SOS and clicks start, JuLI™ Stage does all the work.
Autofocus
True unattended operation.
Save time and labor.
Eliminates human error.
Fast < 5 minute scanning and imaging time for a 96 C1 IFC.
Fast < 30 minute scanning and imaging time for an 800 C1 IFC.
120 minutes (96 well IFC) – 8 hrs (800 well IFC)
5 minutes (96 well IFC) – 30 minutes (800 well IFC)
Principle of Detection – A special software algorithm aligns the C1 IFC to image then detect and count cells at each circuit. User simply specifies what style of C1 IFC is being imaged and JuLI™ Stage – C1 SOS does the rest. Images are automatically scanned, counted, and saved by the system.
Work Flow – Before amplifying RNA to cDNA or DNA, captured cells in the C1 vessels should be checked to ensure that only a single cell is located in each well.
Sensitivity & Expandability – The sensitive CCD equipped with an objective lens for magnification (4X, 10X and 20X) provides powerful detection capabilities required for various cell-based assays.
High-sensitivity monochrome CCD.
Interchangeable objective lens (4, 10 & 20X).
Compatible with various Fluidigm™ C1 IFC (96 & 800).
23” full HD flat panel and PC control.
Data backup and transfer to external hard disk drive (8TB, optional)
Highly qualified technical support 24/7 by NanoEnTek technical application specialists (HQ) and Chinchilla Life technicians.
Qualified specialists are ready to support you. From free training on basic operation to experimental support, we can help.
Call now for a demonstration 630-645-0600
Items | Specification |
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Light source | Blue, Green, UV LED (Intensity adjustable) |
Objective lens | 4X, 10 X, 20 X + Digital ZoomSpec. |
Fluorescence | 3 fluorescence DAPI: Excitation 390/40, Emission 452/45 GFP: Excitation 466/40, Emission 525/50 RFP: Excitation 525/50, Emission 580LP |
Camera | High-sensitivity monochrome CCD (Sony sensor 2/3”) 1,936 ⅹ1,456 pixels (2.8 M), 53 FPS, 14 bit |
Stage | Automated X-Y-Z stage Inter-changeable vessel holder |
Exported formats | Image: JPEG, TIFF, BMP, PNG Video: AVI Raw data: CSV |
PC requirement | All-in-One touch screen desktop CPU: Intel Core i5-4590S Processor (Qual Core, 6MB,3.00GHz) OS: Genuine Windows 8.1 64bit (ENG) RAM: 8 GB (2x4 GB) 1600MHz DDR3L Memory HDD: 1TB 2.5” SATA (5,400 Rpm) 23” Full HD (1920 X 1080) with touch screen |
Operating power | 100 – 240 V, 1.5 A, 50/60 Hz |
Electronic input | 12VDC, 5.0 A |
Dimensions | 429 (W) X 310 (D) X 324 (H) mm |
Weight | 18.0 kg / 39.7 lbs |
Operating environment | 5 - 40 °C, 20 – 95 % |
Contrast methods | Fluorescence and transmitted light |