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Tomography

imaging of an object from it's cross-sections.

See Also: Computed Tomography


Showing results: 46 - 52 of 52 items found.

  • Cutting-edge 3D GPR array solution for efficient subsurface imaging cart solutions

    Raptor - ImpulseRadar

    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.

  • X-ray Microscopy

    ZEISS Xradia Versa - Carl Zeiss AG

    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.

  • Real Time DSP Software

    ATS-GPU - AlazarTech

    ATS-GPU is a software framework developed by AlazarTech to allow users to do real-time signal processing using an Open CL compatible Graphical Processing Unit (GPU). Input to the GPU can either come from an AlazarTech PCI Express waveform digitizer or from user-supplied data. Fundamentally, ATS-GPU solves the problem of transferring data from a waveform digitizer to a GPU at very high speeds. A floating point FFT routine built into ATS-GPU has been benchmarked at 235,000 FFTs per second for 2048 points on one input. Ideal for Optical Coherence Tomography (SS-OCT). Benchmarks also showed that users can keep up with 500 MS/s sampling on one channel for 2048 point streaming FFTs.

  • Swept-Source OCT System

    Santec Corporation

    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.

  • OCT Imaging

    Thorlabs, Inc.

    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.

  • OCT Spectrometer

    Dubhe - OtO Photonics Inc.

    Series spectrometers are designed for the high-resolution, high-sensitivity measurements required by Optical Coherence Tomography (OCT) applications. This new series features a new transmissive optical design with an improved integrated body, employing patented alignment mechanism to deliver ultra-high (0.04nm) optical resolution. It is available in two versions with different CMOS camera max line rates: 80kHz or 20kHz, catering to different application needs. The DB series uses a transmission grating and a fully transmissive Czerny-Turner optical design to deliver high optical resolution, high sensitivity, low dispersion, and high-speed spectrum response.

  • Imaging

    Thorlabs, Inc.

    Welcome to Thorlabs; below you will find links to our imaging systems and components. The products below are not only designed specifically for imaging applications, but they can be easily integrated into our entire line of photonics products. This makes it easy to modify or build custom imaging systems. Thorlabs’ Selection of Imaging Systems consists of our Laser Scanning Microscopy systems and OCT Imaging Systems. Our Laser Scanning Microscopy offering includes multiphoton and confocal fluorescence microscopy systems. Thorlabs is a leader in the development of Optical Coherence Tomography (OCT) Imaging Systems. We offer complete systems as well as a selection of components that are ideal for constructing a custom OCT system. Our series of Laser-Scanning Cytometry instruments are non-confocal systems that utilize laser-spot scanning illumination. The detection system, which combines PMTs for fluorescence detection and photodiodes for absorbance and scatter detection, offers excellent quantitative cytometric performance and imaging capabilities. Our Burleigh® line or microscope platforms, micromanipulators, and accessories provide leading edge stability and control for electrophysiology research, and our line of Optogenetics equipment includes fiber optic components and light sources for in vivo optical stimulation for neuroscience research.

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