Alternatives to Amira Software

Compare Amira Software alternatives for your business or organization using the curated list below. SourceForge ranks the best alternatives to Amira Software in 2026. Compare features, ratings, user reviews, pricing, and more from Amira Software competitors and alternatives in order to make an informed decision for your business.

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    3D-DOCTOR

    3D-DOCTOR

    Able Software

    3D-DOCTOR is an advanced 3D modeling, image processing, and measurement software for MRI, CT, PET, microscopy, scientific, and industrial imaging applications. It supports both grayscale and color images stored in DICOM, TIFF, Interfile, GIF, JPEG, PNG, BMP, PGM, MRC, RAW, or other image file formats. 3D-DOCTOR creates 3D surface models and volume rendering from 2D cross-section images in real-time on your PC. You can export the polygonal mesh models to STL, DXF, IGES, 3DS, OBJ, VRML, PLY, XYZ, and other formats for surgical planning, simulation, quantitative analysis, finite element analysis, and rapid prototyping applications. You can calculate 3D volume and make other 3D measurements for quantitative analysis. 3D-DOCTOR's vector-based tools support easy image data handling, measurement, and analysis. 3D CT/MRI images can be re-sliced easily along an arbitrary axis. Multi-modality images can be registered to create image fusions.
    Starting Price: $480 per year
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    AnalyzeDirect

    AnalyzeDirect

    AnalyzeDirect

    AnalyzeDirect is a research-oriented medical technology company specializing in the worldwide distribution and support of Analyze, a leading advanced biomedical imaging visualization, manipulation, and measurement software. Analyze 15.0 offers simple, intuitive image visualization and analysis for medical research, featuring sophisticated segmentation tools for fast and precise region definition, in-depth statistical analysis with robust measurement tools, powerful inter- and intra-modality registration for image fusion, a versatile array of display tools for image review and visualization, and filtering tools for image post-processing and optimization. The software supports over 45 file formats, including DICOM and common radiological and neurological formats, and is used by physicians, scientists, professors, and graduate students at top medical centers, universities, pharmaceutical companies, biotech companies, medical device companies, and contract research organizations worldwide.
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    3D Slicer

    3D Slicer

    3D Slicer

    3D Slicer is a free, open source software platform designed for the visualization, processing, segmentation, registration, and analysis of medical, biomedical, and other 3D images and meshes. It also facilitates the planning and navigation of image-guided procedures. Serving as a desktop application, 3D Slicer addresses advanced image computing challenges with a focus on clinical and biomedical applications. Additionally, it functions as a development platform, enabling the rapid creation and deployment of custom solutions for both research and commercial products. The platform boasts a robust community of knowledgeable users and developers collaborating to advance medical computing. 3D Slicer is distributed under a BSD-style license, imposing no restrictions on its use in academic or commercial projects. However, it is not FDA-approved, and users are responsible for ensuring compliance with applicable regulations.
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    Vesalius3D

    Vesalius3D

    Vesalius3D

    Vesalius3D is a software application for high-quality 3D visualization and navigation through personalized, patient-specific anatomical structures. It allows users to instantly visualize patient-specific anatomy, revealing details and structures that might be missed using only standard 2D slices. Users can navigate inside the patient to get to their point of view quickly. The software is easy to use yet filled with functionality, utilizing existing standard medical images such as CT, MR, and Ultrasound without the need for special scans. It contains presets for the most commonly used tissues. Vesalius3D offers predefined visualizations, allowing users to bypass manual settings and immediately view results using starting visualizations tailored for most used tissues. The software provides various tools for measurement, including 2D quantification tools like distances, angles, and contour areas, as well as 3D quantification tools such as distances, contours, angles, etc.
    Starting Price: €25 per month
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    Simpleware

    Simpleware

    Synopsys

    Unlock the power of Simpleware software to seamlessly process 3D & 4D image data from MRI, CT, and micro-CT. Dive into your data with advanced visualization, detailed analysis, and accurate quantification. Create precise models ready for design, simulation, and 3D printing workflows. The Simpleware W-2024.12 release advances Simpleware software's further adoption of AI-assisted segmentation tools and streamlined design features to accelerate all your 3D image processing and analysis workflows. Our industry-leading 3D image processing and model generation platform allows you to create products and workflows from 3D & 4D image data and integrate seamlessly with design and simulation tools. Intuitive interface with quick-and-easy access to all tools and features. Comprehensive analysis of even the most complex 3D image data. Generate design and simulation-ready models of the highest quality.
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    Caas MR 4D Flow

    Caas MR 4D Flow

    Pie Medical Imaging

    Caas MR 4D Flow is specifically designed to extract relevant information from 3D phase-contrast MR images within a few clicks. Based on these phase-contrast images, two pioneering 4D Flow modules are offered to perform a complete flow analysis that can aid in reading and interpreting cardiovascular MR images and assist in planning the time and type of intervention. These two modules include a module to analyze vessels, from the aorta up to smaller vessels in, for example, the kidneys, and a module to analyze the heart valves in terms of regurgitation fraction. Key results include visualization of aortic blood flow as streamlines, pathlines, and color-coded vectors; distribution of wall shear stress and local values of wall shear stress; pressure difference over a segment; visualization and quantification of regurgitant fraction over all four valves; and 2D flow phase-contrast analysis.
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    EMSE

    EMSE

    Cortech Solutions

    EMSE is a suite of advanced, powerful, and usable software tools to measure, describe, and visualize human brain dynamics, used worldwide for research in neuroscience, neurotechnology, and clinical neurophysiology. We specialize in multimodal source estimation techniques, enabling the researcher to combine EEG and MRI datasets to better answer where things are happening in the brain, and when things change. Conventional neuroimaging (for example magnetic resonance imaging, or MRI) can answer the where question, but not the when question. Electroencephalography (EEG) and the closely allied Event-Related Potentials (ERPs) can tell you when something happened with an accuracy of thousandths of a second but aren't very good at the where questions. EMSE combines MRI and EEG to answer both when and where in a way that neither method can answer alone. We call this process multimodal dynamic functional brain imaging or source estimation.
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    Dragonfly 3D World
    Dragonfly 3D World by Object Research Systems (ORS) is a comprehensive software platform for multidimensional image visualization, analysis, and collaboration in scientific and industrial fields. It provides powerful tools to visualize, process, and interpret 2D, 3D, and 4D imaging data acquired through modalities such as CT, MRI, electron microscopy, and more. Dragonfly supports real-time volume rendering, surface rendering, and orthogonal slicing, allowing users to explore complex structures interactively. With its AI integration, users can apply deep learning for image segmentation, classification, and object detection. It offers advanced quantitative analysis tools, including region-of-interest analysis, measurements, and statistical evaluations. Its intuitive graphical user interface enables researchers to build reproducible workflows and perform batch processing.
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    qCT

    qCT

    Qure.ai

    Qure.ai's qLC-Suite is an AI-powered solution designed to enhance early detection and management of lung nodules, thereby facilitating timely intervention for lung cancer. The suite offers precise quantification, comprehensive characterization, and 3D visualization of lung nodules, ensuring no missed opportunities for early intervention. It supports both incidental and targeted screening by locating nodules and measuring their volume with a single click. Additionally, it tracks volumetric growth over time, aiding in monitoring nodule progression. The qLC-Suite integrates seamlessly into existing workflows, providing rapid analysis and reporting to support clinical decision-making. Comprehensive lung nodule management platform that enables care coordination through smart prompts, hardware-agnostic image viewing for AI-annotated chest X-rays and CTs, cross-departmental scan sharing, and custom notifications for suspect cases.
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    Vitrea

    Vitrea

    Canon Medical Informatics

    Vitrea software is a multi-modality vendor agnostic advanced visualization system providing comprehensive applications in a variety of IT environments – from single-site to multi-site standardization. Vitrea Advanced Visualization can help you standardize and consolidate your radiology IT footprint. Global Illumination is an alternate 3D rendering technique to help provide a more photorealistic view of human anatomy. Users are able to acquire and share these images for communication and education. Advanced imaging tools, such as in-suite 3D viewing and semi-automated measurements, provide physicians with patient information anywhere, anytime. Radiologists can share images throughout their enterprise.
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    Slice:Drop

    Slice:Drop

    Slice:Drop

    Slice:Drop is a web-based, interactive viewer for medical imaging data that allows users to instantly view scientific and medical imaging data in 3D. It supports a variety of scientific file formats out of the box, including volumes, models, and fibers. Users can simply drag and drop their medical imaging files onto the website without any necessary conversions, and they are ready to render. Slice:Drop uses WebGL and HTML5 canvas to render the data in 2D and 3D, utilizing its own open source toolkit called XTK. All data stays on the client, and nothing gets transferred via the internet, ensuring data privacy and security. The platform offers features such as 3D opacity adjustment, window/level settings, thresholding, and label map opacity control for volumes; show/hide, opacity, and scalars settings for meshes; and show/hide and fiber length threshold for fibers.
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    OsiriX

    OsiriX

    OsiriX MD

    OsiriX is a world-renowned medical image viewer, specializing in DICOM (Digital Imaging and Communications in Medicine) formats, used primarily by healthcare professionals for managing and viewing medical images. The platform supports 2D, 3D, and 4D visualization and integrates advanced post-processing tools for better diagnostic accuracy. With capabilities like volume rendering and enhanced image manipulation, OsiriX is used globally by radiologists, clinicians, and researchers. The platform is available in both free (Lite) and paid (MD) versions, with the MD version offering advanced features and certifications for clinical use, including FDA and CE approvals.
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    Google Medical Imaging Suite
    Google Cloud's Medical Imaging Suite is designed to help organizations transform imaging diagnostics by making imaging data accessible, interoperable, and useful. The suite offers a secure, compliant, fully managed service for managing healthcare data in FHIR, HL7v2, and DICOM formats, as well as unstructured text in natural language. By leveraging a cloud environment, it becomes easier and more cost-effective to house and share large libraries of medical images that exist in healthcare. The Cloud Healthcare API provides operations for reading DICOM instances, studies, and series that are consistent with the DICOMweb standard. Additionally, the suite accelerates research and transforms the patient experience in healthcare by offering solutions for data storage, analysis, and more. It also explains concepts and best practices for integrating a third-party medical imaging viewer with the Cloud Healthcare API.
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    Axial3D

    Axial3D

    Axial3D

    Axial3D is dedicated to advancing patient-specific care by transforming healthcare through its 3D medical imaging and 3D patient-specific solutions, making personalized surgical care routine and scalable. Our patented AI-driven, cloud-based platform empowers medical device companies, imaging providers, and hospitals to harness data-rich, accurate 3D models for enhanced surgical planning, improved patient outcomes, and optimized workflows. Our solutions include 3D visualization, 3D mesh files, 3D print-ready files, and 3D printed models, all designed to integrate seamlessly into existing medical workflows. By converting complex DICOM images into precise, actionable 3D data, we boost efficiency, speed, and scalability in patient-specific device development. Our cloud-based platform offers a unique solution for surgeons seeking a comprehensive view of their patient’s anatomy prior to surgery, enhancing the accuracy and precision of surgical planning beyond traditional 2D imaging.
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    ActiViz

    ActiViz

    Kitware

    ActiViz is a 3D visualization library for .NET C# and Unity, enabling developers to integrate advanced 3D visualization into their applications seamlessly. Built around the open source Visualization Toolkit (VTK), ActiViz supports a wide array of visualization algorithms, including scalar, vector, tensor, texture, and volumetric methods. It also offers advanced modeling techniques such as implicit modeling, polygon reduction, mesh smoothing, cutting, contouring, and Delaunay triangulation. ActiViz allows for the rapid development of production-ready, interactive 3D applications within the .NET environment and provides support for Windows Presentation Foundation (WPF). Integration with Unity software is also possible, expanding its applicability to game development and interactive simulations. Recent improvements in ActiViz 9.4 include support for multiple .NET versions from .NET Framework 4.0 to .NET 8, curved planar reformation to create panoramic views.
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    Materialise Mimics
    Materialise Mimics is a comprehensive software platform designed to facilitate the conversion of medical image data into accurate 3D models, supporting a range of applications from personalized device design to advanced anatomical analysis. The platform offers a suite of tools that enable efficient planning, design, and 3D printing of models and guides for cases of varying complexity, directly at the point of care. A key component of the platform is Mimics Core, an advanced 3D medical image segmentation software that streamlines the process from image acquisition to 3D model creation. This tool supports virtual procedure planning and is integral to the platform's capabilities. The Mimics Innovation Suite enhances the platform's functionality by providing advanced tools for engineers and researchers. It simplifies the use of 3D medical image data, making it accessible and beneficial for those aiming to improve patient care through technology.
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    TeraRecon

    TeraRecon

    TeraRecon

    Deliver clinical decision support throughout your entire enterprise. Enlighten your PACS and EMR to accelerate imaging workflows and improve patient outcomes. We know you have many types of images from many places and that your patients deserve the very best. Sometimes one size does fit all. Achieve enterprise wide AI-driven imaging interpretation with a modern tech stack and a smart user experience for every physician. From radiology review to procedure planning and point of care consultations, users can access a full suite of clinical tools in a powerful advanced UI or a simple and intuitive web based explorer. TeraRecon can support many modalities and 40 concurrent users doing advanced image processing on very large datasets from a single virtual server. Competitors can only support a few modalities and a handful of users before needing another server.
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    XDR Dental Imaging
    XDR’s Dental Imaging Software is clinically engineered for ease and diagnostic power. Exposure Meter when capturing and diagnosing. Single click Perio filter. Single click Sharp filter. Single click Endo filter. Cumulative Measurements. Image viewing and analysis during charting (Floater). Correction of projective distortion (Patented Unwarp). Bi-Directional Scaling (Rescale). Virtual acetate overlay for implant planning. Preformatted text insertion. Tooth number selection. Misfiled exams finder. See the subtlest of lesions, and the narrowest of files. Rated in the top tier by peer-reviewed research. Exposure feedback for diagnostic power and ALARA. Powered by mathematics and radiographic physics.
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    ActivityBase
    ActivityBase is the established industry software platform for screening data management, with feature-rich data analysis tools, built-in object/compound registration tools and the industry standard database. ActivityBase provides analysis support for a wide range of biochemical, cellular and biophysical assay formats (including Ion Channel, FLIPR, Kinetic, SPR, Mass Spectrometry assays). The system integrates into HCS imaging stores (Perkin Elmer Columbus, Thermo Fisher HCS Studio, Molecular Devices MDCStore) for easy import of data and images. ActivityBase also features built-in compound registration and plate management tools. With ActivityBase, you can easily track and manage the results from years of assays in one system. The system can be configured to meet your needs, without having to buy new analysis packs, and, through improvements in your data analysis processes, can even increase your lab analysis tenfold.
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    HeartFlow

    HeartFlow

    HeartFlow

    HeartFlow's non-invasive personalized cardiac test provides unprecedented visualization of each patient's coronary arteries, enabling physicians to create more effective treatment plans for their patients. The HeartFlow FFRCT Analysis starts when a patient undergoes a standard coronary computed tomography scan at a hospital or imaging center. The CT images are securely uploaded to our cloud. Next, we use advanced algorithms incorporating artificial intelligence to build a personalized, digital model of that patient’s coronary arteries. Our team of highly trained analysts then inspects this model, making any needed edits. Once this patient-specific model is completed, the HeartFlow pathway applies physiologic principles and computational fluid dynamics to compute the blood flow and FFRCT values at every point in the model. Throughout the process, we follow rigorous and well-established protocols to ensure consistent processing for every patient.
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    Elements Multiple Brain Mets SRS
    Brainlab's Elements Multiple Brain Metastases SRS is an advanced software solution designed to streamline the planning and treatment of patients with multiple brain metastases. This workflow enables clinicians to irradiate multiple metastases simultaneously without exposing the entire brain to radiation, thereby reducing treatment delivery times. The process begins with automation-supported pre-planning steps, including image fusion, distortion correction, object outlining, and segmentation, which expedite planning and enhance accuracy. The software employs inverse-optimized dynamic conformal arc treatments, utilizing a single isocenter to deliver highly conformal doses with steep gradients, ensuring precise target coverage while sparing healthy tissue. This approach allows for the creation of consistent, high-quality radiosurgery plans in minutes, benefiting both clinicians and patients by minimizing treatment times and improving outcomes.
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    CubeVue

    CubeVue

    CurveBeam

    CurveBeam AI's CubeVue software provides powerful visualization tools to enhance dataset analysis, giving you intuitive interpretation and treatment planning tools at your fingertips. Basic visualization tools include zoom, pan, and window level adjustments; distance and angle measurements; case workup saving; side-by-side study comparisons; and the ability to create DICOM or JPEG images from any window, including 3D. Advanced visualization tools encompass dynamic 3D renderings, multiplanar reconstruction views, and SimX views. Dynamic 3D renderings allow free rotation to visualize the volume from any angle, peeling away or building on skin for clinical assessment, and scrolling through the volume slice by slice. MPR views enable the rotation of planes to create custom reformats on the fly, synchronized navigation of coronal, axial, and sagittal slices, and adjustment of slice thickness to create custom slabs. SimX views generate digitally reconstructed radiographs from CT data.
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    Elements Spine SRS
    Brainlab's Elements Spine Stereotactic Radiosurgery (SRS) is an advanced software solution designed to optimize the treatment of spinal metastases. The workflow incorporates automation at every step, including anatomical mapping, curvature correction, and target definition, ensuring submillimetric accuracy and consistency. A unique algorithm compensates for variations in spinal curvature, enhancing image fusion accuracy. Automatic segmentation of spinal anatomy utilizes a patented synthetic tissue model to identify and label individual spine levels, facilitating precise dose calculations. The software provides spinal tumor outlining tools for Gross Tumor Volume (GTV) contouring and automatically proposes the corresponding Clinical Target Volume (CTV) and cropped spinal canal object based on International Spine Consortium Guidelines. Integration with AI-powered contouring solutions enables automatic, reliable, and fast delineation of over 200 structures, including lymph nodes.
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    Studycast

    Studycast

    Core Sound Imaging

    Studycast is a cloud-based PACS and workflow solution that enables you to view diagnostic-quality images, document findings, and generate structured reports from anywhere, anytime. Studycast’s intuitive design streamlines the entire process from EMR to exam to report generation and back into your EMR. It’s designed to help practices improve efficiency, reduce costs, and deliver faster patient care. Practitioners can log in from any device to view and analyze images and loops in a browser-based viewer built for speed. Studycast saves you time by: - Automatically populating worksheets with measurements sent from the modality. - Generating a “normal” report instantly with just two clicks. - Sharing your studies, reports, and images via secure portals to referring physicians and patients - Routing finalized studies automatically to your EMR.
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    INFINITY ANALYZE 7

    INFINITY ANALYZE 7

    Teledyne Vision Solutions

    INFINITY ANALYZE 7 is an intuitive software package designed for camera control, image capture, and processing across life science, clinical, and industrial research applications. It supports both brightfield and fluorescence imaging modes, ensuring high-quality, reproducible, and accurate results. The software includes features such as image processing, fluorescence acquisition, calibration and presets, annotations, and comprehensive camera controls. Users can perform tasks like focus stacking, and image stitching, and apply various post-processing functions to captured images. The fluorescence mode allows for multi-channel or single-channel image capture, streamlining the process of acquiring sequences into composite results. User-defined button labels and hot keys facilitate quick access to presets when switching microscope objectives, enhancing workflow efficiency. Annotations like lines, arrows, and shapes can be added to highlight areas of interest.
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    Zegami

    Zegami

    Zegami

    Deliver explainable imaging AI faster and more accurately with Zegami. Our full-stack service enables researchers, data scientists and medical practitioners to deliver explainable imaging AI with greater efficiency and accuracy. Our team and tools become your data science plug-in, to ​create, enhance and validate machine learning models in healthcare, life sciences and manufacturing, to drive your business or project forward.​
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    CryoTrack

    CryoTrack

    CryoTrack

    CryoTrackIMS is a complete software package - ideal for molecular biology, cell banks, cellular biology, clinical samples, biorepository, biobanking, biochemistry, immunology and protein labs, high-throughput screening, QA, IVF labs and core labs and facilities. Create any box, plate or pie configuration - select rows and columns or select a Pie configuration - your box is created in seconds ready to input data. Inventory of valuable biological samples and specimen is critical for basic research and biotech business. Keeping track of large numbers and types of samples (DNA, RNA, plasmids, clones, proteins, peptides, probes, antibodies, enzymes, specimen, tissues, cell lines and more) and where they are and their precise location is a nightmare and daunting task for many that cost a great deal not only in monetary terms but also leads to frustrations and time loss. CryoTrack offers a complete solution for individual labs in universities, clinics, biotech and pharmaceutical companies.
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    Medis Suite XA

    Medis Suite XA

    Medis Medical Imaging Systems

    Medis Suite XA is our solution for X-Ray angiography. With a workflow based on 30+ years of experience in cardiovascular image analysis, Medis Suite XA is a complete package that provides various modules including a highly practical viewer, various coronary and vascular analyses that allow for anatomical evaluation of the arteries, various analyses for both ventricles, as well as integrated reporting. The analysis of coronary and peripheral vessels (QCA and QVA) in angiograms. The analysis of left and right ventriculograms (QLV and QRV). Innovative QFR® analysis, a measure of the functional significance of lesions, without the need for adenosine and/or a pressure wire. Seamless integration in the healthcare IT environment and an easy connection with the DICOM network. Innovative QFR® analysis, a measure of the functional significance of lesions, without the need for adenosine and/or a pressure wire.
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    ORS Dragonfly

    ORS Dragonfly

    Object Research Systems

    Powerful, flexible, and user-friendly, Dragonfly delivers quantitative answers for today's most demanding 2D/3D/4D imaging studies, including data from correlative and hyperspectral imaging systems, X-ray, SEM, FIB-SEM, ion beam, and confocal microscopy, as well as other advanced applications. Gain detailed insight into material structures and properties with interactive inspection tools and robust quantification workflows. Post-processing functions include data restructuring, filtering, volume and slice registration, image stitching. Powerful segmentation tools to accurately label image features. Meet image enhancement and segmentation challenges with Dragonfly's Deep Learning solutions. Automate your 3D analysis workflows with easy-to-author macros. Dragonfly with Deep Learning is a transformative solution for image processing. Experience the only commercially-supported Deep Learning engine that lets you train and execute custom networks.
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    Qritive

    Qritive

    Qritive

    Making cancer diagnosis fast, accurate, and affordable. During our lifetime, 1 in 3 of us will get cancer. But cancer diagnosis is slow and expensive because doctors are not equipped with modern automated tools. Qritive provides an AI-powered solution to help doctors analyse both microscopy images and text from patient data. As a result, hospitals will be more efficient in making cancer diagnoses, allowing them to save costs. Pantheon is a CE marked vendor-agnostic digital pathology platform that enables digitization of the entire pathology lab workflow and telepathology, supports rich report generation, and provides a platform for AI analysis of pathology whole-slide images. Differentiates a wide range of benign diseases and malignancies in breast tissue.
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    XStream HDVR
    Fovia's XStream HDVR SDK Suite offers a comprehensive set of tools for advanced visualization, enabling seamless integration into various platforms, including enterprise-wide networks, standalone workstations, and cloud-based mobile applications. The suite includes components such as F.A.S.T. Interactive Segmentation for dynamic 3D segmentation, F.A.S.T. RapidPrint for streamlined volume-to-print workflows, and F.A.S.T. Cloud SDK for cloud-based advanced visualization. These tools facilitate the development of custom workflows and high-performance interactive imaging applications. Fovia provides a user-friendly API, custom integration assistance, and a comprehensive feature set to meet diverse needs in the advanced visualization market.
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    Savante

    Savante

    Xybion Corporation

    Consolidating and validating data sets is a highly challenging and business-critical effort for many Contract Research Organizations (CROs) and drug developers who perform toxicology studies either internally or outsourced with external partners. Savante provides a mechanism for your organization to create, merge, validate, and visualize preclinical study data regardless of source or format. Savante provides a vehicle for preclinical data aggregation, analysis, and visualization in SEND format to scientific staff and management. Preclinical data from Pristima XD is automatically synchronized into the Savante repository. Data from other sources can be aggregated through migration and import, including direct loads of sent data sets. The Savante toolkit handles the necessary consolidation, study merging, control terminology mapping, and data definition file preparation.
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    Hermia

    Hermia

    Hermes Medical Solutions

    Hermia is a sophisticated, vendor-neutral molecular imaging suite designed to unify and streamline clinical workflows across nuclear medicine, PET/SPECT/CT/MR reviewing, and advanced imaging analysis while supporting scanners and DICOM data from any manufacturer, enabling facilities to choose hardware freely and consolidate multiple legacy systems into one platform. It offers high-performance multimodality image display and analysis with intuitive, customizable workflows that accelerate reporting, improve data visualization, and reduce manual steps from acquisition through interpretation, facilitating fast and accurate review of PET/CT, SPECT/CT, and PET/MR studies. Hermia’s comprehensive toolset includes optimized SPECT reconstruction for diverse procedures and radio-pharmaceuticals, a broad nuclear medicine processing toolkit for osteology, gastroenterology, nephrology, and endocrinology, and specialized modules for pneumology with lung function and SPECT V/Q quantification.
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    MiNNOVAA

    MiNNOVAA

    MiNNOVAA

    MiNNOVAA is a medical information technology company providing solutions in the field of medical imaging software and medical image exchange. Our motto is 'medical imaging innovation,' and our key characteristic is the agility and cutting-edge technology we employ to develop our solutions. Our primary focus areas include medical image viewer, radiology workflow, and artificial intelligence in diagnostic reporting. With a young and dynamic team consisting of approximately 20 programmers and product managers, along with colleagues in marketing, sales, technical support, call center, and administration, we strive to make a significant transformation in medical imaging and contribute to individual healthcare. Our clinical imaging IT solution caters to mid-size hospitals and imaging clinics, providing an extensive range of features, including on-premise core PACS software, DICOM web viewer, imaging workstation software (multi-platform), integration with EHR/EMR/HIS, and workflow engine/RIS.
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    Invivo

    Invivo

    DEXIS

    Invivo™ 6, powered by Anatomage, is a state-of-the-art CBCT (Cone Beam CT) 3D imaging software tailored for dental professionals. It is designed for implant planning, orthodontics, oral surgery, and restorative dentistry, offering advanced visualization and precise treatment planning. Key features include virtual crown, abutment, and implant design, digital impression integration, and surgical guide creation. The platform enhances clinical workflows by allowing easy collaboration and sharing via the Anatomage cloud, enabling faster and more accurate diagnosis and treatment planning.
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    D2P

    D2P

    Oqton

    FDA 510(k)-cleared D2P® software and 3D Systems printers allow surgeons, radiologists, lab technicians, and device designers to create diagnostic-quality digital 3D models and physical 3D prints easily and quickly. DICOM images are imported into the D2P stand-alone modular software package that consolidates all 3D model segmentation and preparation steps into one workstation. D2P is a cleared medical device intended for pre-operative surgical planning and the production of 3D-printed anatomic models for diagnostic purposes. The unique image segmentation tool set and its advanced virtual reality (VR) visualization allow clinicians and point-of-care (POC) staff to minimize the effort and time associated with the creation of patient-specific anatomic models. Digital models exported from the D2P software can be used in a wide variety of applications including 3D printers, VR devices, surgical planning software, and CAD software.
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    Synapse 3D

    Synapse 3D

    FUJIFILM Healthcare Americas Corporation

    Fujifilm's Synapse 3D is an advanced visualization platform developed in collaboration with radiologists, cardiologists, surgeons, and other specialists, offering over 50 applications to enhance diagnostic accuracy and efficiency. Its server-side technology supports both cloud and on-premise hosting, performing state-of-the-art image analyses to assist with interpretation, reporting, and treatment planning while facilitating clinical collaboration across the enterprise. Specialty areas include cardiology, pulmonology, oncology, urology, neurology, and gastroenterology. The platform's scalable architecture supports limitless growth, dependable workflows enhance productivity, and specialized applications meet vast visualization needs. Native cardiology offerings elevate cardiac care, and AI-driven detection improves interpretation accuracy and efficiency. Synapse 3D seamlessly integrates with Fujifilm's Synapse Enterprise PACS.
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    3mensio

    3mensio

    Pie Medical Imaging

    Easily determine the appropriate landing zone for treatment of abdominal aneurysms (EVAR), thoracic aneurysms (TEVAR) or placement of fenestrated stents (FEVAR). All relevant measurements (e.g. diameter, clock position, volumes and length) can be obtained via automatic detected centerline or 3D double oblique. Integrated manufacturer stent order sheets generate PDF files so specific stents can be easily ordered via e-mail. We always aim to improve the quality and efficiency of cardiovascular image analysis to optimize patient treatment. Align our product portfolio with the latest developments in the cardiovascular field. In this way we aim to provide our customers with the optimal software solution at the right time. We believe in the importance of training and support to assure that all our users are proficient and comfortable with their analysis. Offer training options that can be tailored to your needs.
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    Curi

    Curi

    Curi Bio

    Mantarray brings functional data into the earliest stages of preclinical testing of new medicines. By providing parallel analysis of 3D engineered muscle tissues with adult-like functional profiles, Mantarray enables the discovery, safety, and efficacy testing of new therapeutics. With over 95% tissue formation success rate, the Mantarray Plate Kit allows for reliable and reproducible engineered tissues across 24 wells. The Mantarray platform provides an easy-to-use, scalable, and flexible system that allows researchers to examine 3D tissues in vitro in the convenience of their own lab. Be among the first to receive the instrument. The Mantarray system features a novel magnetic sensing technique that can detect the contraction of EMTs. This enables the user to measure the contractility of 24 tissues in parallel, a high throughput, and in real time. The system features user-friendly software that takes away the requirement for manual calculations of contractility.
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    Image Central

    Image Central

    Advanced Imaging Concepts

    Advanced Imaging Concepts provides the highest quality Digital Imaging for Optical Microscopes today. Are you purchasing Digital Imaging Equipment for Microscopy? Confused by the choices? Let AIC show you the value in what you already own! Recycle existing equipment! Allow AIC to show you how to add Z-Focus control, motorized X-Y stages, shutters for transmitted and fluorescent illumination, deconvolution software and complete Real Time Confocal Systems to your existing microscope. AIC has been providing State Of The Art Digital Imaging Solutions to our customers since 1989. In 1993 AIC introduced Image Central™ - a true MS-Windows image archival and databasing program designed specifically for microscopy market. Image Central™ is an information and image management software product. Images of all types from across an entire organization can be stored, browsed and searched using alphanumeric queries.
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    ResolutionMD

    ResolutionMD

    ResolutionMD

    Our award-winning mobile visualization platform enables healthcare professionals to collaborate and diagnose while viewing and sharing 2D/3D medical images on any device. Get secure access to data from anywhere, without moving or copying any source files. Chosen and trusted by the largest and most advanced healthcare institutions worldwide. Developed by clinicians, for clinicians, the ResolutionMD enterprise viewer improves patient care and streamlines workflows with HIPAA compliant collaboration features and mobile capabilities. FDA Class II and other global accreditations let you diagnose with confidence on mobile and web.
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    F.A.S.T. aiCockpit
    Fovia Ai's F.A.S.T. aiCockpit is an AI viewer delivering efficient navigation, visualization, and interaction with AI results from multiple vendors and algorithms, all via one consistent user experience with fewer overall clicks. It allows users to visualize and interact with all their algorithm results in one convenient interface, supplying a streamlined experience for radiologists and clinical specialists. The platform delivers physician-validated findings to AI orchestrators, PACS, and reporting systems using the latest interoperability standards. It supports multiple AI formats, including DICOM Structured Reports, DICOM Key Images, DICOM GSPS, and DICOM segmentation objects. F.A.S.T. aiCockpit features a cloud-ready framework, delivering AI-assisted radiology results anytime and anywhere, accessible from any web-enabled browser. With one simple integration, users can complete their AI offering without launching multiple viewers.
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    VEPRO PACS/EMR
    Enterprise Electronic Medical Record, the EMR Manager is the global image and document management solution for every institute and department. All medical, but also non-medical data are centrally archived as DICOM objects and are available to everyone. In connection with the VEPris, even the most complex work processes are carried out safely and above all quickly. On a VEPRO DICOM archive, all healthcare providers can have access if authorized. This allows referring or post-treatment physicians access to images and reports. All multimedia patient information - image, film, audio and text - are not only displayed in fraction of seconds, but also all possibilities of professional image processing can be done by the users. The EMR Manager is available in three different versions and graduated functionalities. 3D image processing, whether in the hospital, private practice or at home - with the EMR Manager and WEBstudio you process all your 3D reconstructions such as MIP, MPR, VR & Co.
    Starting Price: $9000 one-time payment
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    VolView

    VolView

    Kitware

    VolView is an open source radiological viewer developed for clinical professionals, offering interactive, cinematic volume rendering to visualize DICOM data in 3D. Running directly in your web browser without the need for installation, it ensures data remains securely on your machine. VolView supports drag-and-drop functionality for DICOM files and provides high-quality, interactive 3D cinematic volume renderings. Users can choose from various coloring presets, adjust lighting and transparency, crop images, and interact with 3D data to gain deeper insights. The application includes standard 2D and 3D controls, measurement tools, and annotation features, with ongoing additions based on user feedback. As a local web application, VolView utilizes your machine's CPU, GPU, and disk resources for data processing and visualization, eliminating the need for servers or cloud services. Being open source, it is freely accessible to clinicians.
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    Elucis

    Elucis

    Realize Medical

    Realize Medical's Elucis is an FDA-cleared extended reality platform that enables users to easily segment images, collaborate with multiple remote colleagues, and plan procedures within a virtual reality environment. Elucis supports unlimited import of 3D and 4D CT and MR images, allowing for comprehensive project integration. The platform offers advanced image processing capabilities, including manual and automatic image registration, as well as 2D, 3D, and 4D image display. Its segmentation tools are designed for speed and ease of use, facilitating measurement, cutting, and planning directly in virtual reality. Elucis also features sophisticated 4D modeling tools, enabling detailed segmentation of cardiac structures across all phases in minutes. Users can import 3D structure files from other sources and export their creations with a single click. The platform supports multi-user collaboration, allowing connection with local or remote colleagues at any point in the workflow.
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    Visiopharm

    Visiopharm

    Visiopharm

    Two decades of partnering with thought leaders to discover, understand, and mitigate sources of error from biopsy to data, led to breakthroughs in tissue data mining tools, precision, workflow, and automation. Learn more about image analysis & tissue mining in multi and highplexed images, mine your data for clinically relevant patterns that lead to disease insight, and transform your research tissue images into knowledge. Learn more about image analysis CE-IVD APPs and workflows, and shift the paradigm on standardization with AI-driven pathology solutions that provide diagnostic decision support. The app center is your gateway to our extensive library of ready-to-run AI-based apps as well as APPs that scale to meet your needs. Browse through our library of publications, guides, webinars, and posters and learn about digital pathology and how our software supports our customers.
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    Infervision

    Infervision

    Infervision

    Infervision is a leading AI medical technology company established in 2016, focusing on improving multidisciplinary services and operations with AI. They offer cutting-edge AI products that support medical professionals in all areas, from disease screening and diagnosis to intervention and treatment, patient management, and medical research. Their solutions include InferRead CT Lung for lung nodule detection from chest CT, InferRead DR Chest for detecting chest abnormalities from chest X-rays, InferRead CT Coronary for identifying coronary artery stenosis in coronary CTA, InferRead CT Stroke for triaging hemorrhage from brain CT, InferRead CT Bone for identifying chest fractures from chest CT, and InferRead CT Pneumonia for identifying and triaging pneumonia from chest CT. Additionally, they offer InferOperate for 3D reconstruction in thoracic, liver, and urological surgeries, InferCare for patient management and image follow-up, and InferScholar as an AI-enabled medical research tool.
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    GeoMx Digital Spatial Profiler (DSP)
    Quickly resolve tissue heterogeneity and the complexity of microenvironments with the GeoMx Digital Spatial Profiler (DSP), the most flexible and robust spatial multi-omic platform for analysis of FFPE and fresh frozen tissue sections. GeoMx is the only spatial biology platform that non-destructively profiles the expression of RNA and protein from distinct tissue compartments and cell populations with an automated and scalable workflow that integrates with standard histology staining. Spatially profile the whole transcriptome and 570+ protein targets separately or simultaneously from your choice of sample inputs: whole tissue sections, tissue microarrays (TMAs), or organoids. Make GeoMx DSP your spatial biology platform of choice for biomarker discovery and hypothesis testing. Decide where to draw the line and let the tissue be your guide with biology-driven profiling that empowers you to choose the tissue microenvironments and cell types that matter most to you.
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    NeuroQ

    NeuroQ

    Syntermed

    NeuroQ is a leading brain imaging analysis software that provides a powerful diagnostic tool available for multiple modalities and clinical applications. It offers an integrated solution for FDG, Amyloid, SPECT, DaTscan, and Epilepsy, supporting the most relevant functional imaging modalities to increase accuracy in differential diagnosis. NeuroQ is one of the most widely used quantitative tools for the differential diagnosis of dementia. The software goes beyond visual reads by providing valuable non-subjective diagnostic information, rapidly comparing metabolic levels in more than 240 predefined regions of the brain to a normal database, and quantifying the degree of abnormality and statistical significance of the findings. NeuroQ has been developed to aid in the assessment of human brain scans through quantification of mean pixel values lying within standardized regions of interest, and to provide quantified comparisons with brain scans.
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    MIDAS FEA NX

    MIDAS FEA NX

    MIDAS FEA NX

    MIDAS FEA NX is a specialized finite element analysis (FEA) software built to support detailed structural and civil engineering simulations by providing a user-friendly, CAD-like modeling environment paired with advanced analysis capabilities. It allows engineers to import various 3D CAD formats directly and create high-quality finite element meshes using automatic and hybrid mesh generation techniques, reducing manual preparation time and improving model accuracy. It supports both linear and nonlinear analyses, including complex simulations with high-performance solvers and parallel computing to handle large, real-world projects efficiently. FEA NX excels at refined method analysis required by design codes for structures with complex geometry, enabling in-depth evaluation of stress, deformation, and behavior under diverse loading conditions. It integrates seamlessly with the broader MIDAS COLLECTION tools and other structural analysis programs.