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Siemens high end Multi-Slice CT Scanner
Metal fixation of bilateral femora, left hip and knee
Siemens high end Multi-slice CT scanner with Single source Dual Energy Imaging [First in the country] syngo.CT DE Calculi Characterization allows identification and characterisation of different kinds of kidney stones. Basis for this approach is the utilization of Dual Energy CT data in order to calculate a visual color coded material decomposition into uric acid and other stone types.
Kidney stone diagram helps to highlight, evaluate and characterize potential kidney stones.
Color coding and calculation parameters of potential kidney stones can be adjusted for the diagnostic purpose in order to visualize and evaluate materials other than oxalate and uric acid.
Kidney stone marker calculates the volume of the stone & displays the CT values of the stone in the Kidney Stone Diagram.
Syngo.CT DE Gout facilitates the visualization of deposited uric acid crystals in peripheral extremities by automatically color-coding these crystals. Conventional methods of diagnosing gout, for example the aspiration of the joint, are limited in feasibility. Apart from this, gout can be difficult to diagnose also because there are various forms of arthritis that have similar symptoms. syngo.CT DE Gout is overcoming these limitations by being non invasive, more specific, and fast. It also gives insight into areas that cannot be reached with a conventional aspiration, since uric acid crystals can also be located in periarticular soft tissues, such as tendons and ligaments. syngo.CT DE Gout is also beneficial in following up the therapy response by being non-invasive, fast and accurate.
Syngo.CT DE Gout provides a quick and very clear visualization of the extent and localization of uric acid crystals.
Syngo.CT DE Gout gives you the relevant information even in acute cases, where the joint is inflamed and a conventional aspiration cannot be performed.
High scan speed. High pitch values enable the clear visualization of long-range vascular structures with homogenous contrast from the aorta to the foot.
Detailed images. High spatial resolution enabled the sharp delineation of all structures and the visualization of multiple stenosis.
Routine abdomen scanned at 50% of normal dose resulting in limited image quality with high noise.
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