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TEM Lamella Preparation And Volume Imaging Under Cryogenic Conditions
ZEISS Correlative Cryo Workflow
ZEISS Correlative Cryo Workflow connects widefield, laser scanning, and focused ion beam scanning electron microscopy in a seamless and easy-to-use procedure. The solution provides hardware and software optimized for the needs of correlative cryogenic workflows, from localization of fluorescent macromolecules to high-contrast volume imaging and on-grid lamella thinning for cryo electron tomography.
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Industrial Computed Tomography
TomoScope® XL NC
Coordinate measuring machine with x-ray tomography for the most stringent requirement with a small cone beam angle
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Industrial Computed Tomography
TomoScope® XS FOV
Coordinate measuring machine for three-dimensional measurement according to the principle of computed tomography, Fast measurement in the field of view of the detector without moving axes with high resolution and high power
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Imaging Platform
TRITOM
The patented TriTom imaging platform is based on Photoacoustic Fluorescence Tomography (PAFT) technology that provides unparalleled capabilities for whole body imaging and in vivo characterization of small animal models.
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Micro-CT for Life Science
Micro computed tomography is X-ray imaging in 3D, by the same method used in hospital CT scans, but on a small scale with massively increased resolution. It really represents 3D microscopy, where very fine scale internal structure of objects is imaged non-destructively. Bruker microtomography is available in a range of easy-to-use desktop instruments, which generate 3D images of your sample’s morphology and internal microstructure with resolution down to the micron level.
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Resistivity Imaging & Sounding System
Syscal Junior Switch
The Syscal Junior is an all-purpose resistivity imaging and sounding system for environmental applications. The system can be supplied as a standard imaging system capable of recording two measurements simultaneously. The second recording channel significantly improves data acquisition time when the instrument is fitted with internal switching board for 24 (Switch-24) 48 (Switch-48) or 72 (Switch-72) electrodes for Electrical Resistivity Tomography (ERT).
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Electrical Tomography Software
Res2dinv
This very popular software, developped by M.H.Loke, uses the method involving the Sasaki minimum squares inversion (1992) to produce a 2D sub-soil model starting from the data of apparent resistivity (up to 2000 electrodes). It is completely automatic and does not require that the user formulates a starting model. When using a state-of-art computer, the inversion of a single pseudosection will require only a few minutes.RES2DINV supports spreading types like Wenner, Schlumberger, Pole-Pole, Pole-Dipole, line Dipole, equatorial Dipole and other non-conventional spreading types.
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Optical Coherence Tomography (OCT) systems
dOCTor™
dOCTor™ Optical Coherence Tomography (OCT) systemsoffer very high quality non-invasive tissue imaging in 2D and 3D. They are ideal for: In-Vivo Imaging Small Animal Imaging Tissue Engineering and Visualization Developmental BiologydOCTor systems are available in Swept-Source(SS) OCT and Time-Domain (TD) OCT configurations to satisfy different application imaging needs.
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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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Computed Tomography and CT Scanner
When conventional x-ray images aren’t enough, a diagnosis for soft tissue conditions requires appropriate technology. Whether cross-sectional images are required or entire pictures of internal organs, CT exams and scanning are a vital part of a healthcare or imaging facility.
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Medical Imaging
ams offers high-speed, low-noise and low-power sensing solutions that enable manufacturers of Computer Tomography (CT) equipment and digital X-Ray Flat Panel Detectors (FPD) to produce crystal clear images while exposing patients to low doses of radiation. We are taking our leading imaging sensing solutions and expertise forward to achieve an unprecedented level of image accuracy while enhancing convenience and safety for the user.
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OCT Imaging
Optical Coherence Tomography (OCT) imaging on the system, subsystem, and component level. Our drive for innovation is shaping our entire rapidly expanding product line. Complete SD-OCT systems are available that are out-of-the-box ready for biological, industrial, and research applications. In addition to our standard OCT systems, Thorlabs offers Doppler OCT extensions for specialized applications. For customers building or modifying their own system, a line of components that have been tested for use in OCT applications is available. In addition to the growing portfolio of standard OCT systems that we offer, Thorlabs is dedicated to providing OCT solutions to meet specific applications. Please contact us to discuss how our OCT technologies can be applied to meet your unique requirements.
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Cutting-edge 3D GPR array solution for efficient subsurface imaging cart solutions
Raptor
The Raptor system covers a wide range of applications and can be configurated with 450 MHz or 800 MHz antennas. Raptor 3D Arrays are based on Real-Time sampling (RTS) technology and the unique antenna design is a milestone in the evolution of the GPR. A Raptor Antenna can be arranged in different ways, which allows for both standard and more advanced GPR measurements. These include common mid-point (CMP), wide-angle reflection and refraction (WARR) and Tomography.
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Electrical Tomography Software
Res3dinv
In areas with complex geology, there is no substitute for a fully 3D surveys. The arrays supported include Pole-Pole, Pole-Dipole, inline Dipole-Dipole, equatorial Dipole-Dipole, Wenner-Schlumberger and also non-conventional arrays.RES3DINV uses the smoothness-constrained least squared inversion technique to produce a 3D model of the subsurface starting from the data of apparent resistivity.
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Seismic Analysis and Monitoring
Seismic analysis and monitoring have been designed on the base of the contemporary seismic studies. We can offer you a wide range of tools for geophysical surveys, seismic tomography, automated monitoring of bearing structures (structural health monitoring), seismic monitoring of oil piping systems.
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Neutronic Detection
Neutron imaging is a non-destructive method used to see inside objects that may be inpenetrable by X-ray or other techniques.Neutrons offer the benefit of being able to see through heavy metals such as lead but can also be used to examine delicate processes.Photonis Neutron detector is designed to provide either still images or video using both cold and thermal neutron imaging techniquesfor non-destructive testing and neutron tomography.
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Industrial CT Scanning Services
Computed tomography (CT) is also referred to as industrial x ray and industrial imaging. It is an x-ray methodology yielding 3-dimensional (3D) results by placing an object on a rotational stage between an x-ray tube and x ray detector, rotating the object 360 degrees and capturing images at specific intervals—such as every degree or every half degree.
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Computerized Knife-Edge Tomography (CKET)
Many new generation lasers, having a spectrum which is out of the sensitivity response of typical camera detectors require different technologies to be ex-amined. Tomographic knife-edge technology offers a feasible solution. Multiple knife-edges scanning from different directions provide beam profiles depen-dent on scanning angle. By reconstruction techniques used in tomography, an image-like profile can be reconstructed and analyzed. Various detectors are used to provide a wide spectral range measurement capability
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Industrial Computed Tomography
TomoScope® L
High Accuracy Multisensor coordinate measuring machine for 3D measurements using the principle of Computed Tomography, in combination with additional sensors (tactile sensor systems, optical sensors)
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Micro-CT for material science
Micro computed tomography is X-ray imaging in 3D, by the same method used in hospital CT scans, but on a small scale with massively increased resolution. It really represents 3D microscopy, where very fine scale internal structure of objects is imaged non-destructively. Bruker microtomography is available in a range of easy-to-use desktop instruments, which generate 3D images of your sample’s morphology and internal microstructure with resolution down to the sub-micron level.
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Swept-Source OCT System
Santec’s Swept-Source Optical Coherence Tomography System (SS-OCT) provides a complete, flexible solution which can be used for a wide range of applications, both medical and industrial. Components can be selected to optimize the imaging speed, resolution, imaging area and depth for each application. The system is supplied with a graphic user interface (GUI) that controls the scan parameters and displays both cross sectional and 3D images. An API is available as an option, for integration with other equipment and image analysis automation. We also supports the hardware and software customization where appropriate.
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CT Inspection System
FF35 CT
The YXLON FF35 CT computed tomography system is designed to achieve extremely precise inspection results for a wide range of applications. Available in a single or dual tube configuration, it is perfect for very small to medium size parts inspection in the automotive, electronics, aviation, and material science industries.
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Preclinical Imaging Modalities and Solutions
Bruker offers advanced preclinical imaging solutions for a broad spectrum of application fields, such as oncology, neurology, cardiology, inflammation, infectious diseases, cancer research, functional and anatomical neuroimaging, orthopedics, cardiac imaging and stroke models. Our range of techniques includes MRI (Magnetic Resonance Imaging) , PET (Positron Emission Tomography), SPECT (Single Photon Emission Computed Tomography) micro-CT (Micro Computed Tomography), optical imaging and magnetic particle (MPI) imaging.
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Electrical Resitivity Tomography System
WERT-60/120 2D
The resistivity/IP mainframe of WERT-60/120 2D Resistivity Tomography system designed the receiver and the transmitter in one unit, which support 1D Resistivity, 1D Induced Polarization VES survey and 2D electrical tomography survey;it features multiple functions, high accuracy, fast speed, high reliability and excellent expandability.
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Industrial Computed Tomography
TomoScope® XL
Micro focus X-ray source up to 225 kV (option: 300 kV micro focus tube) Grater range of x-ray detectors Grater range of x-ray detectors
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Segmented STEM Detector
Opal
In a drive to meet our customers’ needs, El-Mul developed a detection solution for Scanning Transmission Electron Microscopes (STEM) which can support multiple applications such as DPC, cryo tomography, imaging of strain, charge, light elements or Z-contrast.
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High-efficiency Fiber Stretcher
PZ2
The PZ2 provides the most extensive stretch of our stretcher product family. It is a fiber wound piezoelectric element for use in a wide range of optical interferometric measurement and sensing system applications. Typical uses include open loop demodulation, sensor simulation, white-light scanning interferometry and large angle modulation of interferometric phase. The PZ2 is ideal for use in OCT [Optical Coherence Tomography] and OCDR [Optical Coherence Domain Reflectometry] applications requiring scattering or boundary definition measurements.
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Electrical Tomography
POLARES32
By exploiting an innovative technology based on the use of Alternating Current (AC), the POLARES32 Electrical Tomography can measure and display all the survey parameters at the same time: ground resistivity values, current, voltage, spontaneous potential, induced polarization and indication the quality of the measurement.
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CT-PORTABLE
Computed tomography (CT) has recently gained increasing importance as a non-destructive inspection method for industry. CT enables a quick visualization of a three-dimensional volume model of the external and internal structure of an object, which can also be interpreted by non-experts. So far, however, the acquisition costs and the relatively complicated operation often prevented a widespread introduction of computed tomography systems.