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Advanced Diffusion Analysis (ADA)

MR Advanced Diffusion Analysis

Enhance your workflow by generating additional cDWI (calculated) images with b-values that were not acquired

MR Advanced Diffusion Analysis (ADA) is a post processing software application used to view, process and analyze MRI Diffusion Weighted Images.

The application calculates and displays cDWI at a b-value of choice and provides advanced supportive analysis and visualization tools of diffusion MRI images and parametric maps.

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  • The application presents a default diffusion analysis model based on the available original DWI images as well as a selection of alternative models including monoexponential, biexponential, simplified IVIM, and kurtosis.
  • A ‘goodness of fit’ value and fitted curve show the fitting quality of the selected model.
  • The application also provides parametric maps of perfusion fraction (f), pseudo diffusivity (D*), Diffusivity (D) and Kurtosis (K).

MR Cardiac

Comprehensive cardiac review and quantifications for MR exams
MR Cardiac enables visualization via viewing protocols, of a single, multiple or all available cardiac series, including synchronization of cardiac phases. The fast initial review allows clinicians to quickly view the general results of cardiac heart exams and decide on the first analysis that is needed. Visual scoring can be done using an AHA bull’s eye plot.

The package enables comprehensive functional volumetric analysis for the ventricles, such as ejection fraction, wall motion, wall thickness and thickening. Identification of spatial enhancement based on intensity signal changes is included while bookmark functionality “frames” any view on the data that is relevant for saving or communicating to other physicians. MR Cardiac also allows for quick functional analysis using the Areal Length Ejection Fraction (ALEF) method.
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  • Cardiac MR data labeling to enable fast reviews.
  • Cardiac phase and geometry linking for easy review.
  • MR Function semi-automatic and multiple manual segmentation tools for LV and RV.
  • Ability to see all slices of the SA series in one viewport.
  • Allows editing of source data and recalculatation of parametric maps by curve fitting using the Least Squares (LSQ) method.
Cardiac Quantitative Mapping

MR Cardiac Quantitative Mapping

Assess myocardial tissue characteristics
The MR Cardiac Quantitative Mapping helps you assess and review myocardial tissue characteristics in multiple, user-defined, field-strength specific lookup tables.
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  • Review global and diffuse myocardial pathologies by means of T1 maps, T2 maps, and T2* maps.
  • Manual and automatic motion correction tools are provided which may enhance map calculations.
  • Expended acquisitions support: Molli, shMolli, SASHA, T2prep.
Cardiac Temporal Enhancement

MR Cardiac Temporal Enhancement

Identify signal intensity changes in dynamic Cardiac MR
Using dynamically resolved cardiac data (multidynamic, multi- slice),  MR Cardiac Temporal Enhancement facilitates an understanding of blood flow through the heart. The application provides numerous result formats for the review of the identified temporal changes.
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  • Manual segmentation and editing options in order to segment the LV; optional automated affine or rigid corrections to compensate for breathing motion.
  • Integrated rest-stress comparison.
  • Various outputs formats, including time-intensity graphs, bull's eye plots, temporal enhancement diagrams, color-coded overlays on anatomical images.
Cardiac Whole Heart

MR Cardiac Whole Heart

Detailed 3D visualization of the segmented heart
MR Cardiac Whole Heart performs automatic segmentation of the heart into individual segments (e.g. LV, RV, atria, and coronaries).
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  • Results can be presented in a high-quality 3D rendering, including 3D export formats (i.e. STL) for 3D printing.
  • ‘Create new tissue segment’ workflow to support segmentation based on ‘masking and seeding’.
  • Seed based segmentation.
  • Minimal user interaction due to improved 3D segmentation.
  • Provide one 3D view / model from different series and dynamics to support decision making in complex hemodynamic structures.
  • Prepare and export 3D models in a user defined smoothness, opacity and format suitable for 3D printing and surgical navigation software.
Cartilage Assessment

MR Cartilage Assessment

Aiding in therapy planning by visualizing
MR Cartilage Assessment enables the visualization of cartilage structures integrated with color-coded T2 maps. Positioning of cartilage-shaped, layered ROIs is used to assess variation of T2 values across the cartilage depth to determine the degradation of the cartilage.
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  • Segmentation tools, allowing measurements of cartilage segments and layers.
  • Task-guided workflow.
  • Export color images with a broad range of styles.
  • Export T2 values as CSV (comma separated values) for further research.

MR Diffusion

Detailed review of diffusion indicated lesions
MR Diffusion tool enables analysis of diffusion characteristics such as ADC, eADC, and FA in stroke cases and other diseases. Registration of the underlying data allows for reduced blurring in case data affected by motion.
mr diffusion
  • Registration, masking, and viewing is organized automatically so an immediate diffusion view of the data is provided.
  • Choose the relevant parametric maps to be calculated and viewed or exported.
  • Ability to select the b-values required for analysis.
  • For DTI data, additional advanced parameters like Radial- or Axial Diffusivity, and Relative Anisotropy can be generated.
DynaCAD Breast

MR DynaCAD Breast*

Purpose-built to streamline workflow and enhance productivity for MRI Breast reading
DynaCAD Breast* has been tailored to enhance the review and analysis of MRI breast studies by providing a flexible workspace with custom hanging protocols and multi-vendor viewing capabilities.
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  • DynaCAD’s automatic segmentation allows for on-the-fly user modification and provides volume analysis, lesion composition statistics, histograms, and a 3D rendered morphological overview.
  • Results are automatically incorporated into standardized reports.
  • The DynaLOC Breast Interventional Planning software module supports the use of interventional breast coils and MR stereotactic localization devices to perform MR-guided breast interventional procedures.
*Not available for sale in all countries. Please contact local Philips representative for details. Please contact local Philips representative for details on multivendor coverage.
DynaCAD Prostate

MR DynaCad Prostate*

Designed to enhance confidence, productivity, and accuracy for MRI Prostate reading
DynaCAD Prostate* provides a powerful, easy-to-navigate, multi-vendor MR image analysis application featuring custom hanging protocols with all images synchronized for easy, multi-parametric review.
mr dynacad prostate
  • DynaCAD features automatic segmentation of the prostate gland, providing an overall gland volume estimation. It also features single-click volume analysis, and lesion statistics, and histograms as well as color overlay based on diffusion ADC values.
  • Lesions are assessed using the PIRADS v2 scoring and incorporated into standardized reports.
  • Lesions identified and marked on the system can be passed to a UroNav system for fusion biopsy.
*Not available for sale in all countries. Please contact local Philips representative for details. Please contact local Philips representative for details on multivendor coverage.
Echo Accumulation

MR Echo Accumulation

Optimizing image contrasts for multi-echo MR data
MR Echo Accumulation enables the calculation of new images based on the selected sum of echo times.
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  • Helps optimize cartilage contrast within high-resolution knee images.
  • Processing provides interactive update of results.

MR FiberTrak

Visualize white matter connectivity in the brain
MR FiberTrak provides visualization of white matter tracts using task guidance for generating common or user-defined tracts.
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  • Detailed examples are used to guide the user for the various tracts.
  • Hospital preferred tracts can be added for later guidance.
  • Various forms of displays and output, like 3D visualization, 2D color cross sections, overlays, or quantitative results and functional maps.
  • Bookmarks allow saving of any (intermediate) view of the package on a dataset.
  • DICOM-based output with merged anatomical tractography information (through MMV).


Brain activation analysis
The MR IViewBOLD package facilitates off-line functional BOLD MRI analysis for both block, event-related, and seed-based resting state analysis, so you can visualize task-related areas of activation. Automated pre-processing such dynamics registration and registration to anatomical reference enables efficient workflow.
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  • Rich paradigms can be defined through manual definitions or file import.
  • Review through 2D, 3D TID selection and various underlays.
  • Regression analysis applies the Hemodynamic Response Function (HRF) to provide the best fit.
  • Patient motion induced activation is taken out by using the motion patterns as one of the regressors.
  • Export of functional results to other DICOM nodes such as surgical planning devices is included in the base configuration.
Liver Health

MR Liver Health

Simplify workflow with, automated calculation of whole liver volume
MR Liver Health provides global liver information from MR mDIXON images, including volume, fat fraction, T2*, and R2* parameters from the whole liver or from ROIs in an automatic and non-invasive manner.
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  • Enhances accuracy of the liver segmentation for referrers, by showing images of segmentation with and without T2* threshold correction.
  • Calculates the relativity map R2* (= 1/T2* map).
Longitudinal Brain Imaging (LoBI)

MR Longitudinal Brain Imaging (LoBI)

Gain an optimized view of the body’s most complex organ
MR Longitudinal Brain Imaging (LoBI) supports evaluation of neurological disorders tracked with serial brain scans to monitor disease state and progression.
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  • Scans are automatically registered to simplify comparison.
  • Editing tools and volumetric quantification.
  • Comparative Brain Imaging (CoBI) functionality, to track subtle differences in the brain by subtracting scans taken at different time points.

MR MobiView

Automatic review of total body MR data

MR MobiView combines multiple images into a single full-field view to review multi-scanner acquisitions. MobiView is displayed with a single mouse click in the IntelliSpace Portal Multi Modality Viewer. Zero-click display is also available using predefined protocol.

Key clinical cases are MRA run-offs, whole body metastases screening from eye-to-thighs, and total spine views to show the complete CNS. The resulting image series can be viewed, filmed, and exported using a DICOM compliant tool.

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  • Fully automated composition of data sets from multi- station acquisitions into full FOV images.
  • Applications include Runoff MRA, Complete CNS and Complete Torso.
  • Display composite images stored, filmed and exported via DICOM and PC-compatible formats.
  • Images compatible with viewing, measurement, and processing tools, including MIP and MPR.

MR NeuroQuant®*

Automated brain image analysis solutions
MR NeuroQuant®* automatically segments and measures volumes of brain structures and compares these volumes to standard norms.
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  • Convenient and cost-effective means to gain reliable, objective measurements of neurodegeneration.
  • Helps reduce the subjectivity of the diagnosis.
* NeuroQuant is a trademark of CorTechs Labs, Inc.

MR Permeability

Lesion characterization by reviewing vascular leakage
MR Permeability helps perform measurements, such as measuring the leakage of gadolinium chelates into the extra-vascular extracellular space (EES). The most important use relates to oncology of the prostate and brain. This tool calculates parametric maps such as Ktrans and Kep which is related to tracer kinetics behavior.
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  • Gain a comprehensive overview and characterization of leakage of gadolinium chelates into the extra-vascular extracellular space (EES) by quantifying Ktrans and Kep.
  • Review includes comparison with other anatomicals, viewed in the same orientation as the source data.
  • Detailed graph analysis to analyze uptake curves of drawn regions of interest, including the display of the manually defined or model-based AIF.

MR QFlow

Visualizing and quantifying blood flow dynamics

MR QFlow supports visualizing and quantifying of flow data. Creates 2D color flow overlay maps on anatomical which can be used, for example, to calculate stroke volumes.


QFlow is now also integral part of MR Cardiac suite allowing combined reporting with other analysis tools like Functional.

mr qflow
  • Includes automatic vessel contour detection for large vessels to perform vessel's flow analysis.
  • Background correction allows for offset correction required for q-flow data of certain MR vendors.
  • Integrate QFlow as part of MR Cardiac Suite.
  • Allow comparison of flow results to cardiac function in ONE suite.
  • Qflow and Function (and other analysis) combined reporting.

MR SpectroView

Understanding the metabolic changes with MR
Proton spectroscopy data can be analyzed with the MR SpectroView application, which enables anatomy-based automatic generation of the right processing presets based on enhanced DICOM data. The package provides task guidance for easy adaptations of the final processing settings.
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  • Clinically driven protocols, with task guidance for fast adaptations.
  • Rich set of options to optimize fitting, create metabolite or ratio data or maps.
  • Quality indicators based on line widths of the unsuppressed water peak and SNR of the highest metabolite peaks.

MR Subtraction

Improve image contrasts for MR data in dynamic studies
MR Subtraction enables subtraction calculations of dynamic studies and also provides for computation of magnetization transfer contrast ratio (MTC) images from an appropriate set of input images.
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  • Weighting factors can be defined to influence the subtraction or MTC outcome.
T1 Perfusion

MR T1 Perfusion

Support in assessing lesions by reviewing blood supply characteristics
MR T1 Perfusion Analysis produces measurements of relative enhancement, maximum enhancement, time to peak (TTP), and wash-in rate. Registration of the source images in the dynamic series can remove motion artifacts, and temporal and spatial smoothing of the input data can be performed to improve SNR.
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  • User-selected color-coding of the functional data.
  • The maps can be viewed and stored as overlays on anatomical reference images.
  • The opacity of the overlay is user-defined.
  • ROI analysis is also included.
  • Wash-out calculation for better handling large number of time points.
T2* (Neuro) Perfusion

MR T2* (Neuro) Perfusion

Reviewing brain tissue viability
MR T2* (Neuro) Perfusion is designed to assess brain perfusion helping with stroke assessment and other disease tracking.  Visualization and quantitative analysis of the diffusion-perfusion mismatch in case of acute stroke is also included.
mr t2 neuro
  • User-selected color coding of the functional data, and maps can be viewed and stored as overlays on anatomical reference images.
  • A user-defined opacity overlay.
  • Leakage correction standard.
  • Temporal and spatial smoothing of the input data can be performed to improve SNR.
  • User-defined opacity of the overlay.
  • ROI analysis can be performed, and an arterial input functions (AIF) can be defined if required.

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