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Microscopy
Microscopy is the technical field of using microscopes to view objects and areas of objects that cannot be seen with the naked eye. There are three well-known branches of microscopy: optical, electron, and scanning probe microscopy, along with the emerging field of X-ray microscopy.
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Microscopy
Our microscopy systems business is focused on providing best-in-class performance within a modular architecture. We design and manufacture Andor products to integrate with our own and third-party software, and all leading microscopes, we also support high quality products from other manufacturers.
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Microscopy
Aurora is an award-winning Airy Beam Light Sheet imaging system designed for researchers working in fields such as neuroscience, developmental biology, cancer biology, regenerative medicine and other bioscience disciplines, including Plant Sciences and Marine Biology. Compact, affordable and customisable, Aurora is available as a single and multiphoton light sheet fluorescence microscope for rapid, large 3D volumetric imaging, high resolution, multicolour, time-lapse imaging and live cell imaging. Aurora uses ground-breaking Airy Beam Light Sheet imaging techniques to achieve outstanding results in the field. It is currently in use by many leading organisations delivering results previously not possible.
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Optical Microscopy
Rocky Mountain Laboratories, Inc.
Optical microscopy from 1X to 1000X is achieved with a variety of microscopes. Images can be formed in bright field, dark field, and differential interference contrast (DIC or ‘Nomarski’) modes. Optical microscopy anlaysis is often used before any other techniques to document samples. Color and morphology are important clues in materials identification.
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Light Microscopy
Materials Evaluation and Engineering
MEE has a variety of light microscopes with magnifications ranging from 5X to 2400X. Each microscope is connected to a camera with digital image capture for subsequent measurements and/or additional image analyses.
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X-ray Microscopy
ZEISS Xradia Versa
Extremely versatile ZEISS Xradia Versa 3D X-ray microscopes (XRM) provide superior 3D image quality and data for a wide range of materials and working environments. Xradia Versa XRM feature dual-stage magnification based on synchrotron-caliber optics and revolutionary RaaD™ (Resolution at a Distance) technology for high resolution even at large working distances, a vast improvement over traditional micro-computed tomography. Non-destructive imaging preserves and extends the use of your valuable sample, enabling 4D and in situ studies.
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X-ray Microscopy
ZEISS Xradia Ultra
Synchrotron X-ray nanotomography enables non-destructive 3D imaging at the nanoscale but you have to apply for very limited beamtime. What if you didn’t have to wait for synchrotron time anymore? Imagine if you had synchrotron capabilities in your own lab. With the ZEISS Xradia Ultra family, you have 3D non-destructive X-ray microscopes (XRM) at hand that deliver nano-scaled resolution with synchrotron-like quality. Choose between two models: both ZEISS Xradia 810 Ultra and ZEISS Xradia 800 Ultra are tailored to gain optimum image quality for your most frequently-used applications.
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X-ray Microscopy
Xradia Family
✔ Characterize the properties and behaviors of your materials non-destructively.✔ Reveal details of microstructures in three dimensions (3D).✔ Develop and confirm models or visualize structural details.✔ Achieve high contrast and submicron resolution imaging even for relatively large samples.
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Microscopy Software
Our modular software platforms enable you to acquire, process and analyze images in multiple dimensions and over various timepoints
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Correlative Microscopy
Our modular software platforms enable you to acquire, process and analyze images in multiple dimensions and over various timepoints
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Microscopy Software/Hardware
ZEISS Atlas 5
Atlas 5 is your powerful hardware and software package that extends the capacity of your ZEISS scanning electron microscopes (SEM) and ZEISS focused ion beam SEMs (FIB-SEM). Use its efficient navigation and correlation of images from any source, e.g. light- and X-ray microscopes. Take full advantage of high throughput and automated large area imaging. Unique workflows help you to gain a deeper understanding of your sample.
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Digital Microscopy Cameras
Micrometrics®
Designed for use in brightfield microscopy applications and defect analysis.
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Collaborative Correlative Microscopy
nanoGPS navYX
Correlative microscopy is the combination of multiple modalities performed on the same sample. The results produced emphasize the strengths of each modality while offsetting their individual limitations.nanoGPS navYX™ is an open solution which makes SEM-Raman correlative microscopy seamless regardless of the electron and optical microscopes used. Simply stick the Coordinates Transfer System to the sample!
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Optical microscopy (OM)
Materials Analysis Technology Inc.
Optical microscopy is used to display the surface morphology of samples by 2D intensity contrast due to deflection and reflection of visible light shined on areas of interest. Its resolution is about half of the incident wavelength, which is ~0.2 μm for visible light (wavelength of 400-700 nm). Such resolution limits the maximum magnification to X1000, and thus optical microscopy provides preliminary inspection of sample surface structure.
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Nanoscale Microscopy Standards
The nanoscale AFM-CD standard (CD, critical dimension) contains structures to calibrate line widths and periods of AFM (atomic force microscopy) devices.
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Cryo-Correlative Microscopy Stage
CMS196
Linkham Scientific Instruments
Electron microscopy (EM) provides structural information at very high resolution. However, it can give only restricted insight into biological and chemical processes due to limitations in staining and sample preparation processes. Fluorescence microscopy on the other hand is a very sensitive method to detect biological, chemical and genetic processes and events inside living cells. Cryo-CLEM brings it all together: it is a new and emerging technique to combine the individual advantages from both Fluorescence and EM by imaging the same sample location with both techniques and superimposing the complementing information.
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Fluorescence Microscopy Solutions
Bruker’s suite of fluorescence microscopy systems provides a full range of solutions for life science researchers. Our multiphoton imaging systems provide the imaging depth, speed and resolution required for intravital imaging applications in neuroscience, oncology and immunology.
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Analytical Software for Microscopy
SPIP
SPIP™ or Scanning Probe Image Processor - is an advanced software package for processing and analyzing microscopic images at nano- and microscale. It has been developed as a proprietary software by Image Metrology and is unique in the microscopy and microscale research market. With the high level of usable features, SPIP provides industrial and academic researchers with an advanced toolkit for working with microscope images, incl. extracting data from most microscopy file types, cleaning and enhancing data, analyzing measurements, visualizing and reporting analysis results. The software is used for research and innovation in a variety of industries such as pharmaceutical, cosmetics, semiconductors, hard disk manufacturing, polymer and aluminum manufacturing. Furthermore, SPIP is widely recognized as the standard microscope image analysis software for research and education at leading universities, and has been cited in more than 1200 scientific publications.
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Analytical Software for Microscopy
SPIP
SPIP™ or Scanning Probe Image Processor - is an advanced software package for processing and analyzing microscopic images at nano- and microscale. It has been developed as a proprietary software by Image Metrology and is unique in the microscopy and microscale research market. With the high level of usable features, SPIP provides industrial and academic researchers with an advanced toolkit for working with microscope images, incl. extracting data from most microscopy file types, cleaning and enhancing data, analyzing measurements, visualizing and reporting analysis results. The software is used for research and innovation in a variety of industries such as pharmaceutical, cosmetics, semiconductors, hard disk manufacturing, polymer and aluminum manufacturing. Furthermore, SPIP is widely recognized as the standard microscope image analysis software for research and education at leading universities, and has been cited in more than 1200 scientific publications.
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Atomic Force Microscopy
Bruker’s industry-leading AFM microscopes provide the highest levels of performance, flexibility and productivity, and incorporate the very latest advances in atomic force microscopy techniques. Applications range from materials science to biology, from semiconductors to data storage devices, from polymers to optics with measurement of nanoscale topography, nano-mechanical, nano-electrical and nanoscale chemical mapping.
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Scanning Probe Microscopy
SPECS Surface Nano Analysis GmbH
As Scanning Probe Microscopy (SPM) is a key tool for nanotechnology, SPECS offers dedicated solutions for highly demanding requirements.In UHV, strong emphasis lies on spectroscopic methods such as scanning tunneling spectroscopy and inelastic tunneling spectroscopy as well as single atom and molecule manipulation. With the invention of a Joule-Thomson cryostat by Prof. Wulf Wulfhekel, SPECS now offers the JT-STM , operating sample and sensors in thermal equilibrium below 1K with optional high magnetic field.
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Scanning Electron Microscopy
SEM
Materials Evaluation and Engineering
JEOL JSM-6610 LV LaboratoryScanning electron microscopy (SEM) uses electrons for imaging to obtain higher magnifications and greater depth of field than light microscopes. The instruments at MEE are capable of variable-pressure, or low vacuum, SEM (VPSEM), as well as traditional high-vacuum conditions for sample observation. VPSEM is a specialized method using a variable-pressure sample chamber that allows direct evaluation of samples that are not readily examined with a traditional high-vacuum SEM. Nonconductive or vacuum sensitive samples that would typically require additional sample preparation can be directly analyzed in VPSEM without the need for additional sample preparation, such as carbon or metallic conductive coatings. This reduces both sample preparation time and distractions in microanalysis. Our laboratory also has a field emission SEM (FESEM) for critical high-magnification work and low-voltage (LVSEM) applications. Each instrument has a spacious sample chamber that can accommodate large and irregularly-shaped specimens and accessories for feature dimensional analysis and chemical microanalysis.
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Digital Microscopy Cameras
Lumenera®
Designed to be a cost-effective, versatile solution for clinical, life science, materials science and educational professionals.
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Microscopy and Automation Solutions
Opto already offers automated multifluorescence microscopes for cell analysis, inverted autofocus microscopes for motion analysis of growth processes, and high- throughput fluorescence microscopes for DNA and RNA sequencing.
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3D Optical Microscopy
Bruker is the worldwide leader in 3D surface measurement and inspection, offering fast, non-contact analyses for samples ranging in size from microscopic MEMS to entire engine blocks. Our microscopes are the culmination of ten generations of proprietary Wyko® Technology advances that provide the high sensitivity and stability necessary for precision 3D surface measurements in applications and environments that are challenging for other metrology systems.
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Microscopy and Nanotechnology Labs
Integrated Dynamics Engineering
IDE, with the most vibration isolation and EMI cancellation systems in use today, is no stranger to nanotechnology. For over twenty years, IDE has been addressing the special needs of research environments with advanced isolation solutions. IDE’s influence and global reach can be seen in the most cutting edge labs pushing physical boundaries to extremes in advanced materials, surface science, microbiology and more.
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Fluorescence Multiphoton Microscopy
Ultima Investigator™
As the most streamlined model of Bruker''s Ultima family of multiphoton microscopes, Ultima Investigator™ features a base system specifically optimized for in vivo studies and is designed for add-on flexibility with a host of specialized options. Ultima Investigator''s high-resolution, high-speed, high-sensitivity deep imaging provides the ultimate value for smaller labs and additional imaging bandwidth in larger labs.
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Scanning Acoustic Microscopy (CSAM)
Scanning Acoustic Microscopy, also known as C-SAM or Acoustic Micro Imaging or AMI, outstanding benefit is its ability to find hidden defects within assemblies and materials that can occur during manufacturing or environmental testing. Defects such as delaminations, voids and cracks can be identified and analyzed more effectively using Acoustic Microscopy than with any other inspection method.Unlike other non-destructive techniques such as X-Ray and Infrared Imaging, Acoustic Microscopy is highly sensitive to the elastic properties of the materials it travels through. Because of this, the ability of Acoustic Microscopy to find and characterize these physical defects is clearly superior. Typical applications include production control, failure analysis, and product development.Through the use of ultra-high frequency ultrasound, C-SAM non-destructively finds and characterizes physical defects—such as cracks, voids, delaminations and porosity— that occur during manufacturing, environmental testing or even under normal component operation. Because of the unique aspects of the technology, AMI can locate these defects better than any other inspection method.
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Cathodoluminescence Solutions for Electron Microscopy
CLUE Series
HORIBA Scientific's Cathodoluminescence Universal Extension enhances any SEM’s analytical capabilities while maintaining its original functionality. Since the sample is able to remain in the same spot, CLUE can easily be combined with other microscopy applications, such as EDS and EBIC.