System, Image Processing, Radiological
Main Filters
System, Image Processing, Radiological
3shape A/S | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
R1.3 | 0 | - |
3shape Medical A/S | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
2.17.3 (R1.2) | 0 | - | ||
2016-1 | 0 | - | ||
2017-1 | 0 | - | ||
2017-1 | 0 | - |
AI4MEDIMAGING - MEDICAL SOLUTIONS, S.A. | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
v1.0 | 0 | - |
Barco NV | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
K9300350C | 0 | - | ||
K9300351C | 0 | - | ||
K9301540C | 0 | - | ||
K9301648C | 0 | - | ||
K9301648D | 0 | - | ||
K9301649C | 0 | - | ||
K9301649D | 0 | - | ||
K9301654B | 0 | - |
Biim Ultrasound AS | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
P001000 | 0 | - | ||
P001050 | 0 | - | ||
P001052 | 0 | - | ||
P001117 | 0 | - | ||
P001118 | 0 | - | ||
P001137 | 0 | - | ||
P001160 | 0 | - | ||
P001175 | 0 | - |
Brainreader ApS | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
2.2.8 | 0 | - | ||
2.2.9 | 0 | - | ||
2.3 | 0 | - | ||
2.4 | 0 | - | ||
2.5 | 0 | - |
Combinostics Oy | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
2.0.X | 0 | - |
Disior Oy | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
Bonelogic 2 | 0 | - |
Hinacom Software and Technology, Ltd. | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
V2.0 | 0 | - |
Materialise NV | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
HEAPR-01-001-01 | 0 | - | ||
HEAPR-01-002-01 | 0 | - |
Neusoft Medical Systems Co., Ltd. | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
NeuViz Prime | 0 | - |
Nordicneurolab AS | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
1.1 | 0 | - | ||
2.3 | 0 | - |
Planmeca Oy | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
4 | 0 | - |
Radiobotics ApS | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
v.1. | 0 | - |
Shanghai United Imaging Healthcare Co., Ltd. | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
uWS-CT | 0 | - | ||
uWS-CT | 0 | - | ||
uWS-MI | 0 | - | ||
uWS-MR | 0 | - | ||
uWS-MR | 0 | - |
Shantou Institute of Ultrasonic Instruments Co., Ltd. | ||||
CATALOG # | QTY | PRICE | DESCRIPTION | |
SR-1000 | 0 | - | ||
SR-1000S | 0 | - | ||
SR-1100 | 0 | - | ||
SR-1100S | 0 | - | ||
SR-2100 | 0 | - | ||
SR-2100S | 0 | - | ||
SR-2300 | 0 | - | ||
SR-2300S | 0 | - |
3,538 Results
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Biim Ultrasound L12-4 Linear Array Transducer
Biim Ultrasound AS
Biim Ultrasound L12-4 Linear Array Transducer
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nordicBrainEx
Nordicneurolab AS
The nordicBrainEx Software is a post-processing application for dynamic MRI data developed with focuson ease of use and high performance on a standard Windows workstation. The software providescomprehensive functionality for dynamic image analysis and visualization of MRI data, where signalchanges over time are analyzed to determine various modality dependent functional parameters. Thefollowing algorithms provide the main functional analyses of the application.- BOLD: BOLD fMRI analysis is used to highlight small magnetic susceptibility changes in thehuman brain in areas with altered blood-flow resulting from neuronal activity.- DTI: Diffusion analysis is used to visualize local water diffusion properties from the analysis ofdiffusion-weighted MRI data. Fiber tracking utilizes the directional dependency of the diffusionto display the white matter structure in the brain.- DSC: Calculations of perfusion related parameters that provide information about the bloodvessel structure and characteristics. Examples of such maps are blood volume, blood flow, timeto peak, mean transit time and leakage.In addition to these specific functional analyses, the application also provides general visualization tools,a database for data handling, and a reporting feature. This is to ensure that the workflow of theapplication is optimized to ensure efficiency and high throughput in a clinical environment.
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Planmeca Romexis
Planmeca Oy
Planmeca Romexis is a modular imaging software for dental and medical use,
0
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3Shape Implant Studio
3shape Medical A/S
IMPLANT STUDIO IPGS (Implant Planning and Surgical Guide) is intended to be used as pre-operative planning soft-ware to plan the placement of one or more implants based on an imported CBCT scan and optionally aligned with a loaded 3D surface scan. The implants are provided by a secured implant library. In addition Virtual Crowns can be used for optimized implant positioning under the esthetical aspect. Further a surgical guide for a guided surgery can be designed and exported for 3rd party fabrication based on the approved implant position. The use of the software requires to have the necessary expertise in implant dentistry.The IMPLANT STUDIO IPGS system must be operated by trained dental practitioners and dental technicians who are skilled in implant dentistry.The IMPLANT STUDIO IPGS software is to be used in general dentist clinics and dental laboratories.
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Implant Studio
3shape A/S
3Shape Implant Studio® is an implant planning and surgery planning software tool intended for use by dental professionals who have appropriate knowledge in dentalimplantology and surgical dentistry. This software reads imaging information output from medical scanners such as CT and optical scanners. It allows pre-operativesimulation and evaluation of patient anatomy and dental implant placement.Surgical guides and the planned implant position can be exported as 3D models and the guides can be manufactured using said 3D models when used as input to 3Dmanufacturing systems.
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AI4CMR
AI4MEDIMAGING - MEDICAL SOLUTIONS, S.A.
AI4CMR v1.0 is a cloud-hosted service used with any third-party DICOM viewer applicationwhere the DICOM viewer serves as the user interface and the interface to a PACS or scanner forAI4CMR. AI4CMR is implemented as a plug-in to the DICOM viewer by the user andautomatically processes and analyses cardiac MR images received by the DICOM viewer toquantify relevant cardiac function metrics and makes the information available to the user at theuser’s discretionIndications for use:AI4CMR software is designed to report cardiac function measurements (ventricle volumes, ejection fraction, indices etc.) from 1.5T and 3T magnetic resonance (MR) scanners. AI4CMR uses artificial intelligence to automatically segment and quantify the different cardiac measurements. Its results are not intended to be used on a stand-alone basis for clinical decision-making. The user incorporating AI4CMR into their DICOM application of choice is responsible for implementing a user interface.