Benutzeranleitung / Produktwartung FV1000 des Produzenten Olympus
Zur Seite of 28
Confocal Laser Scanning Biological Microscope FV1000 FLUOVIEW FLUOVIEW—Always Evolving.
1 FLUOVIEW– —From Olympus is Open FLUOVIEW—Mor e Advanced than Ever The Olympus FLUOVIEW FV1000 confocal laser scanning microscope delivers efficient and reliable performance together with the high resolution required for multi-dimensional observation of cell and tissue morphology, and precise molecular localization.
2 Imaging to Analysis ing up New W orlds From Imaging to Analysis FV1000 Advanced Deeper Imaging with High Resolution FV1000MPE.
Advanced FLUOVIEW Systems Enhance the Power of Y our Resear ch Superb Optical Systems Set the Standard for Accuracy and Sensitivity . T wo types of detectors deliver enhanced accuracy and sensitivity , and are pair ed with a new objective with low chr omatic aberration, to deliver even better precision for colocalization analysis.
4.
Laser combiner/Fiber Diode Laser Greater stability, longer service life and lower operating cost are achieved using diode lasers. Laser Feedback Control Scanner unit is equipped with laser power monitor for feedback control enhancing stable laser output.
Technology / Hardware IX81 PMT PMT PMT Galvanometer scanning mirrors Galvanometer scanning mirrors UIS2 objectives Specimen Pupil projection lens SIM Scanner * Microscope icity .
Spectral Based Detection Flexibility and High Sensitivity Spectral detection using gratings for 2 nm wavelength resolution and image acquisition matched to fluorescence wavelength peaks. User adjustable bandwidth of emission spectrum for acquiring bright images with minimal cross- talk.
Technology / Hardware SIM (Simultaneous) Scanner Unit Combines the main scanner with a dedicated laser light stimulation scanner for investigating the trafficking of fluorescent- labeled molecules and marking of specific live cells.
Low Chromatic Aberration Objective Best Reliability for Colocalization Analysis A new high NA oil-immersion objective minimizes chromatic aberration in the 405–650 nm region for enhanced imaging performance and image resolution at 405 nm.
Technology / Hardware Switchable between Confocal and TIRFM Imaging Switchable between confocal and TIRFM imaging for localization of proteins on the cytoplasmic membrane surface and acquisition of sectioning images within cells. Software Control of TIRF Illumination Built-in laser provides TIRF illumination.
User -Friendly Software to Support Y our Resear ch. Time Controller Precisely synchronizes different experimental protocols including FRAP, FLIP and FRET by acceptor photo- bleaching and time-lapse.
Technology / Hardware Re-Use Function Open previously configured scanning conditions and apply them to new or subsequent experiments. Help Guide Comprehensive help guide describes the functions and usage for each command, and overall sequence of operations.
Br oad Application Support and Sophisticated Experiment Contr ol. Measur ement Light Stimulation Multi- Dimensional Time-Lapse FRET Colocalization 3D Mosaic Imaging Multi-Color Imaging 3D/4D V olume R.
Application 15,000 20,000 30,000 25,000 Time (ms) 35,000 40,000 200 400 600 800 1,000 1,200 1,400 1,600 1,800 2,000 2,200 2,400 Intensity CH1 CH2 CH1 CH2 Measurement Diffusion measurement and molecular interaction analysis. Light Stimulation FRAP/FLIP/Photoactivation/Photoconversion/Uncaging.
This optional software module enables data acquisition and analysis to investigate the molecular interaction and concentrations by calculating the diffusion coefficients of molecules within the cell. Diverse analysis methods (RICS/ccRICS, point FCS/point FCCS and FRAP) cover a wide range of molecular sizes and speeds.
Application/ Molecular Interaction Analysis 0 µs 0 ms 0 ms 1 ms 2 ms 3 ms 4 ms n ms 10 µs 20 µs 30 µs 40 µs 50 µs n µs Molecule size Small Large Spatial Correlation Algorithm When the spatial correlation algorithm is applied between pixels, a higher correlation is obtained as the speed of movement of the molecule nears the scanning speed.
Laser Light Stimulation The SIM scanner system combines the main scanner with a laser light stimulation scanner. Control of the two independent beams enables simultaneous stimulation and imaging, to capture reactions during stimulation.
Application/ Molecular Interaction Analysis Photoconversion The Kaede protein is a typical photoconvertible protein, which is a specialized fluorescent protein that changes color when exposed to light of a specific wavelength. When the Kaede protein is exposed to laser light, its fluorescence changes from green to red.
Significantly Improved Long Time-Lapse Thr oughput Equipped with motorized XY stage for repeated image acquisition from multiple points scattered across a wide area.
Application/ Molecular Interaction Analysis 3D Mosaic Imaging Mosaic imaging is performed using a high-magnification objective to acquire continuous 3D (XYZ) images of adjacent fields of view using the motorized stage, utilizing proprietary software to assemble the images.
Expandability to Support Diverse Application. Application Standard Functions Optional Functions Molecular interaction and Intracellular diffusion measurement molecular concentration Calculation of diffusion coefficients for intracellular molecules, and analysis of analysis — molecular binding and changes in molecular density.
Expandability 350 350 300 300 400 400 450 450 500 500 550 550 600 600 650 650 700 700 750 750 800 800 405 LD 440 LD 473 LD 6 35 LD 55 9 LD 458 M ulti Argon 515 M ulti Argon 543 G ree n HeNe 488 Argon .
Fluorescence Illumination Unit Stand with Mercury lamp house, motorized shutter, and fiber delivery system for conventional fluorescence observation. Light introduction via fiber optic port.
Expandability B C Fluorescence illumination unit *Optional unit Transmitted light detection unit IX81 IX81-ZDC Inverted motorized microscope BX61WI BX61 Upright motorized microscope LD635 laser LD559 .
Objectives NA W.D. (mm) DIC prism Revolving nosepiece MPLN5X 0.10 20.00 – WI-SSNP, WI-SRE3 UMPLFLN10XW 0.30 3.50 WI-DIC10HR WI-SSNP, WI-SRE3 UMPLFLN20XW 0.50 3.50 WI-DIC20HR WI-SSNP, WI-SRE3 LUMPLFLN40XW 0.80 3.30 WI-DIC40HR WI-SSNP, WI-SRE3 LUMPLFLN60XW 1.
Expandability Dimensions (mm) Weight (kg) Power consumption Microscope with scan unit BX61/BX61WI 320 (W) x 580 (D) x 565 (H) 41 — IX81 350 (W) x 750 (D) x 640 (H) 51 Fluorescence illumination unit Lamp 180 (W) x 320 (D) x 235 (H) 6.7 Power supply 90 (W) x 270 (D) x 180 (H) 3.
FLUOVIEW website www .olympusfluoview .com • OLYMPUS CORPOARATION is ISO9001/ISO14001 certified. • Illumination devices for microscope have suggested lifetimes. Periodic inspections are required. Please visit our web site for details. • Windows is a registered trademark of Microsoft Corporation in the United States and other countries.
Ein wichtiger Punkt beim Kauf des Geräts Olympus FV1000 (oder sogar vor seinem Kauf) ist das durchlesen seiner Bedienungsanleitung. Dies sollten wir wegen ein paar einfacher Gründe machen:
Wenn Sie Olympus FV1000 noch nicht gekauft haben, ist jetzt ein guter Moment, um sich mit den grundliegenden Daten des Produkts bekannt zu machen. Schauen Sie zuerst die ersten Seiten der Anleitung durch, die Sie oben finden. Dort finden Sie die wichtigsten technischen Daten für Olympus FV1000 - auf diese Weise prüfen Sie, ob das Gerät Ihren Wünschen entspricht. Wenn Sie tiefer in die Benutzeranleitung von Olympus FV1000 reinschauen, lernen Sie alle zugänglichen Produktfunktionen kennen, sowie erhalten Informationen über die Nutzung. Die Informationen, die Sie über Olympus FV1000 erhalten, werden Ihnen bestimmt bei der Kaufentscheidung helfen.
Wenn Sie aber schon Olympus FV1000 besitzen, und noch keine Gelegenheit dazu hatten, die Bedienungsanleitung zu lesen, sollten Sie es aufgrund der oben beschriebenen Gründe machen. Sie erfahren dann, ob Sie die zugänglichen Funktionen richtig genutzt haben, aber auch, ob Sie keine Fehler begangen haben, die den Nutzungszeitraum von Olympus FV1000 verkürzen könnten.
Jedoch ist die eine der wichtigsten Rollen, die eine Bedienungsanleitung für den Nutzer spielt, die Hilfe bei der Lösung von Problemen mit Olympus FV1000. Sie finden dort fast immer Troubleshooting, also die am häufigsten auftauchenden Störungen und Mängel bei Olympus FV1000 gemeinsam mit Hinweisen bezüglich der Arten ihrer Lösung. Sogar wenn es Ihnen nicht gelingen sollte das Problem alleine zu bewältigen, die Anleitung zeigt Ihnen die weitere Vorgehensweise – den Kontakt zur Kundenberatung oder dem naheliegenden Service.