Best Medical Imaging Software in Mexico - Page 3

Compare the Top Medical Imaging Software in Mexico as of March 2026 - Page 3

  • 1
    PACSgear

    PACSgear

    Hyland

    PACSgear is a suite of solutions that enable users to capture, integrate, normalize and share medical images and associated data across a health system and connect them to an EHR healthcare software, VNA, or PACS. With PACSgear, users can share information from any specialty or department such as radiology, cardiology, emergency, gastroenterology, dermatology or orthopedics to enable collaboration and provide a complete view of all patient images for clinicians making diagnoses and patient care decisions. An enterprise-class image capture solution, PACSgear scales to meet the needs of any size healthcare delivery organization, from the smallest single facility to the largest and most complex healthcare organization. It can be implemented with one PACSgear module in a single department and other PACSgear applications can be added over time. Because of its multi-server enterprise architecture, PACSgear modules can be administered and configured from a central location or
  • 2
    FIRMM

    FIRMM

    Nous Imaging

    FIRMM provides real-time monitoring and biofeedback technology that addresses the significant problem of patient motion during brain MR. The FIRMM software solution efficiently imports MR images and analyzes and displays motion data in real-time, enabling the operator and patient to become aware of head motion during scanning, ultimately supporting workflows, reducing motion, and scanning efficiency. The FIRMM tablet has a touch screen with an easy-to-use GUI, allowing for minimal training time for scanner operators. FIRMM also automatically saves a log file per session, so there is no need to worry about actively saving a session. FIRMM does not require a camera or other complicated sensing hardware to be installed in your current MRI scanner. The FIRMM patient biofeedback is compatible with a wide range of video display configurations and integrates seamlessly with your in-bore A/V system.
  • 3
    OmegaAI

    OmegaAI

    RamSoft

    You’re dealing with staffing shortages and rising costs – of interest rates, salaries, and systems. And everywhere you look, you see struggling practices. But it doesn’t have to be this way. We have the solution. You can solve your staffing shortage by “hiring” OmegaAI. Omega AI is ready to be used immediately upon creation of an account. A cleaner, more focused interface eliminates the cumbersome and saves time. Enable easy interconnectivity between organizations and facilities. Enable patient autonomy with our integrated patient portal, Blume. Patients can navigate the entire medical imaging journey from their smartphone — they can upload referrals, insurance, history, and prior images, verify eligibility and prior authorization, schedule appointments, complete forms, make payments, view their images and reports, and share their images with doctors, family, and friends.
  • 4
    DoseLab

    DoseLab

    Varian

    DoseLab’s integrated linac QA database graphs machine data as a function of time, so you can identify trends in machine performance. Plan QA tests, assign them to specific users, and monitor results. Collect data from any type of test, including morning machine warm-up stats and TG-51 calibration data, defined based on numerical entry, text entry, Boolean choice, or multiple input formula.Monitor for machine QA images and process them with zero clicks required. Review machine QA results for simplified automation and trend analysis.
  • 5
    NovaMG PRO

    NovaMG PRO

    Novarad

    Integrated mammography viewer that enables you to ergonomically read a wide variety of breast imaging studies as well as studies from all other specialties all in one place. Efficient workflows achieve faster reads for high volume environments leading to higher patient output. Artificial Intelligence can improve doctor efficiency, lower false negatives in cancer detection, and assist in quality assurance of images. A comprehensive telemammography solution is the bridge to greater access of breast expertise improving diagnoses and outcomes. NovaMG PRO can be a stand-alone workstation with any PACS or mammography modality. The breast care workflow module is available as part of NovaPACS EI. Existing NovaPACS EI users can turn it on in minutes.
  • 6
    Ultromics

    Ultromics

    Ultromics

    Transforming heart failure detection. Precision heart failure detection from an echocardiogram using artificial intelligence. Built-in collaboration with Mayo Clinic, EchoGo Heart Failure uses AI to simplify the identification of patients with HFpEF, which has previously been difficult to detect, with accuracy and precision from a single apical 4-chamber view. It marks the first AI-enabled HFpEF detection platform for echocardiography. Ultromics is the leader in artificial intelligence for echocardiography, the most common cardiac imaging modality. Our technology enables more effective and earlier detection of heart failure to improve and extend the quality of life for everyone. Ultromics offers a simple, seamless, and secure cloud-based Software-as-a-Service (SaaS) platform that easily connects to your existing technology. It equips your echocardiography lab with precision heart failure detection and risk stratification that can reduce heart failure hospitalizations.
  • 7
    Merlin CardioMotion

    Merlin CardioMotion

    Central Data Networks

    The CardioMotionTM echo analysis and reporting software from Merlin and available from CDN in Australia changes the game and changes the way you are supporting the rapid identification of cardiac issues. Intended for emergency medicine, CCU/ICU, oncology departments, medical center clinicians, ultrasound departments, cardiology departments, or regional and remote sites where point-of-care devices are used. Also beneficial in cardiac monitoring of clinical trials. Merlin CardioMotionTM is unique as it works effectively with slow frame rate echo clips without the need for an ECG trace for detection and as such is suitable for use with clips from lower specification ultrasound machines. Using revolutionary image processing technology Merlin CardioMotionTM is based on a platform of proprietary algorithms that enable automatic detection of the ventricular wall and its borders. This provides you with a rapid and accurate quantitative assessment of your patient’s heart’s dynamic performance.
  • 8
    ViewPoint 6

    ViewPoint 6

    GE HealthCare

    Get a better view when post processing Cardiology data sets. EchoPAC Suite features integrated post-processing tools to allow you to review, analyze and perform measurements at an offline workstation, freeing up your ultrasound system to help improve workflow. ViewPoint 6 can help you create comprehensive and easy to read reports quickly. Your ultrasound reports can include everything from images and measurements to images and diagrams to results and recommendations. The reporting capabilities in ViewPoint 6 can help reduce manual data entry and potentially reduce errors from manual work. From the start of the exam to final storage, ViewPoint 6 fits into your workflow as a scalable solution designed to help simplify your daily routine.
  • 9
    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.
  • 10
    AS Software

    AS Software

    AS Software

    The leading ultrasound reporting and image management cloud platform built to simplify and automate your workflows. Reduce the burden of documentation for your team and create reports in seconds. Enhance care with automated reporting, billing and image management through one enterprise ultrasound automation platform. Accessible anytime, anyplace. Empower physicians and healthcare staff to manage and understand complex patient data and workflows. Bridge the gap between healthcare departments, existing platforms, and unstructured data — providing trusted and secure integrations with data you can depend on, all in one place.
  • 11
    AIATELLA

    AIATELLA

    AIATELLA

    Every year, cardiovascular diseases claim over 20 million lives worldwide. Many of these deaths could be prevented with early detection. Yet, the global healthcare system is overwhelmed, and limited by human capacity for detailed analysis. That's where AIATELLA steps in. Our groundbreaking AI-powered image analysis solution transforms the landscape of cardiovascular diagnostics. By automating manual measurements of vasculature in a quantified way and using historical data, we drastically cut down on the time, cost, and level of expertise needed, significantly expanding the capacity for critical imaging. AIATELLA's solution improves the speed, accuracy, and precision of diagnostics, delivering measurements and disease-progression analysis in seconds instead of hours. By improving the speed, accuracy, and variability in the analysis we are enabling the doctors to spend more time with patients and enabling true preventative and personalized medicine for all.
  • 12
    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.
  • 13
    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.
  • 14
    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.
  • 15
    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.
  • 16
    MIStar

    MIStar

    Apollo Medical Imaging Technology

    Apollo Medical Imaging Technology is a clinically-driven medical imaging software company specializing in the creation of advanced image processing software for clinical and research applications. Their flagship product, MIStar, is a fast, economical, and easy-to-use software package that provides a broad spectrum of advanced functions and cost-effective cross-modality solutions for clinicians and the OEMs that serve them. MIStar supports various imaging modalities, including CT, MR, NM, and PET, and offers advanced modules such as CT Perfusion for stroke, brain tumor, body tumor, liver, kidney, and prostate; DSC-MRI for stroke; DCE-MRI for brain tumor, breast, body tumor, liver, kidney, and prostate; DWI & ADC; DTI Fiber Tractography; NM Renogram Analysis; and Image Fusion. The software features data access and image input through DICOM networking functions, an intuitive clinical database, and easy anonymization and archiving.
  • 17
    BrainSightAI

    BrainSightAI

    BrainSightAI

    BrainSightAI is a health tech company leveraging artificial intelligence and machine learning to revolutionize brain mapping through AI-based connectomics, generating personalized brain maps. Our VoxelBox products utilize AI-based connectomics to generate personalized brain maps. These tools aim to enhance pre-surgical planning and improve outcomes for patients with brain tumors and other neurological conditions. BrainSightAI collaborates with leading hospitals nationwide to conduct clinical trials focused on various brain-based disorders, including Alzheimer's disease, brain tumors, psychiatric disorders, Parkinson's disease, and stroke. Our mission is to advance brain science and enhance lives by providing cutting-edge tools for understanding the human brain.
  • 18
    BRIT Systems

    BRIT Systems

    BRIT Systems

    Our single cloud-based solution helps you consolidate your facility or health system’s radiology services under one contract and drive down costs without compromising the quality, reliability, or accessibility of imaging studies. BRIT Systems is a pioneer of modern imaging solutions for the healthcare enterprise. Their single cloud-based solution helps consolidate radiology services under one contract, driving down costs. The company offers a quality control module designed to enhance quality performance across radiology ecosystems, creating value for both facilities and their patients. Explore the modules contained in our cloud-based solution to see how each creates value for our partner facilities and their patients. No radiology solution is one-size-fits-all. We recognize that our full suite of services may be more than some facilities require. Once any of our services are implemented in your facility, any additional modules you may need can be made available to you.
  • 19
    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.
  • 20
    Elements Contrast Clearance Analysis
    Brainlab's Elements Contrast Clearance Analysis is an MRI-based methodology designed to differentiate regions of contrast clearance and accumulation in brain tumor datasets. This high-resolution analysis provides additional insights to support ongoing assessment and decision-making in clinical specialties such as radiosurgery, radiation oncology, neurosurgery, neuro-oncology, and neuroradiology. The process involves acquiring two standard 3D T1-weighted MRIs, one approximately 5 minutes and another 60 to 105 minutes after the injection of a standard dose of contrast agent. The first series is subtracted from the second to generate volumetric maps that distinguish regions of contrast clearance (depicted in blue) from contrast accumulation (depicted in red). These results enable clinicians to assess radiation effects versus tumor regrowth, facilitating more informed decisions for initial and follow-up treatments.
  • 21
    Elements Cranial SRS
    Brainlab's Elements Cranial Stereotactic Radiosurgery (SRS) is an advanced software solution designed to streamline the planning of complex cranial procedures, such as arteriovenous malformations, pituitary adenomas, and vestibular schwannomas. The workflow integrates automation at every step, including image fusion, distortion correction, object outlining, and segmentation, ensuring submillimetric accuracy and consistency. A key feature is the patented 4Pi arc setup optimization, which, combined with a volumetric modulated arc therapy algorithm specifically designed for radiosurgery, achieves high plan quality by delivering highly conformal doses while avoiding critical structures. The software also offers unique 3D views and robust dosimetric results, enhancing the precision and efficiency of treatment planning. Additionally, Elements SmartBrush allows for quick and easy 3D target outlining by defining volumes on just two slices.
  • 22
    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.
  • 23
    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.
  • 24
    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.
  • 25
    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.
  • 26
    NovaPACS EI
    NovaPACS EI is an advanced PACS system with enterprise imaging built-in, transforming the way facilities store, present, and share medical images, multimedia, and patient information. It allows facilities to handle radiology, cardiology, pathology, and mammography, and provides tools for encounter-based imaging throughout the hospital or system. The solution breaks down patient information silos by enabling your EMR with a patient-centric Universal Viewer, providing the right information at the right time for more accurate diagnoses, assisting in delivering value-based care, and enhancing doctor-patient engagement through the power of storyboards. It also improves multi-specialty and cross-department collaboration, leading to better operational efficiencies and cost management. NovaPACS EI scales from large hospitals down to critical access hospitals, managing patients with chronic or complex conditions through all episodes of patient care.
  • 27
    ARVIS

    ARVIS

    Enovis

    ARVIS (Augmented Reality Visualization and Information System) is a wearable, self-contained surgical guidance system designed to assist orthopedic surgeons during total hip, total knee, and unicompartmental knee arthroplasty procedures. By utilizing cameras mounted at the surgeon's viewpoint, ARVIS tracks reusable markers on the patient to provide accurate, real-time, hands-free navigation guidance directly at the point of care. This system eliminates the need for pre-operative imaging, streamlining the surgical process and reducing costs compared to traditional robotic systems. The proprietary augmented reality eyepiece combines stereo infrared tracking cameras with a 3D AR display, all powered by a high-performance mobile processor, allowing surgeons to maintain focus on the patient without diverting attention to external monitors. Operated through hands-free gaze and voice controls, ARVIS minimizes line-of-sight issues and integrates seamlessly into the surgical workflow.
  • 28
    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.
  • 29
    Quantib Brain
    Quantib Brain is an FDA-cleared and CE-marked radiology software solution for brain scan segmentation. Developed in collaboration with GE Healthcare, it functions as a plug-in for the Advantage Workstation (Server), offering automated brain structure quantification within a familiar software environment. The software enables longitudinal comparison of quantified brain volumes, including white matter, grey matter, intracranial volume, and cerebrospinal fluid, facilitating the tracking of atrophy development. Additionally, it provides the option for white matter hyperintensity segmentation and monitoring. Quantib Brain presents a clear overview of volumes for grey matter, white matter, ICV, CSF, and total brain volume in an informative results table. These results, supported by self-selected cross-sections, can be exported into a comprehensive report. The software ensures that all examination results can be shared instantly.
  • 30
    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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