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FDR D-EVO GL

Simplified long view imaging, Drastically optimized image quality

A single exposure is performed within a timeframe of milliseconds; significantly reducing the risk of patient movement compared to a traditional DR multi-shot acquisition over a period of several seconds.

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  • FDR D-EVO GL allows long-view radiography of the entire lower limb or vertebral column with a single exposure.
  • FDR D-EVO GL improves the efficiency of long-view exams, reducing exam times for the patient.

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Features

FDR D-EVO GL improves the efficiency of long-view exams, reducing exam times for the patient.

Long-view radiography on DR systems traditionally requires multiple exposures, dramatically increasing the time the patient must hold still compared to CR systems. Using one exposure with the FDR D-EVO GL reduces time for the patient to remain steady; making the examination less susceptible to patient movement artifacts.

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Fujifilm's exclusive technologies for achieving low dose and sharp image

Drastically optimized image quality with Dynamic Visualization II

State of the art recognition algorithms automatically adjust contrast and density for individual body parts based on calculation of estimated 3D image data. By suppressing black-out and white-out in the image, the alignment of the entire vertebral column and spinal kyphosis is greater visualized.

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Removal of the scatter radiation components using Virtual Grid

Virtual Grid is an image processing software that corrects for the effects of scatter radiation that otherwise reduce image contrast and clarity. Without the need for an anti-scatter grid, this software quickly creates high quality images.

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ISS capture technology promotes high sensitivity

Equipped with Fujifilm’s proprietary Irradiated Side Sampling (ISS) technology, which positions its capture electronics (TFTs) at the irradiation side, in contrast to traditional detectors. This design significantly suppresses scattering and attenuation of X-ray signals, improving efficiency to produce sharper images at lower doses compared to Conventional method.

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Improving sensitivity of low-density are as with a noise reduction circuitry

The uniquely developed noise reduction circuitry reduces noise in the image.

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Blending large and small phosphor particles at an optimal ratio

Increased X-ray absorption through our uniquely designed scintillator, which applies photographic film technology to optimize the blending ratio of phosphor particles of different sizes.

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