Best Elements Cranial SRS Alternatives in 2026
Find the top alternatives to Elements Cranial SRS currently available. Compare ratings, reviews, pricing, and features of Elements Cranial SRS alternatives in 2026. Slashdot lists the best Elements Cranial SRS alternatives on the market that offer competing products that are similar to Elements Cranial SRS. Sort through Elements Cranial SRS alternatives below to make the best choice for your needs
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Elements Spine SRS
Brainlab
Brainlab's Elements Spine Stereotactic Radiosurgery (SRS) represents a cutting-edge software solution aimed at refining the management of spinal metastases. This innovative workflow features automation at each phase, encompassing anatomical mapping, curvature adjustments, and target identification, which guarantees precision and uniformity down to submillimetric levels. A distinctive algorithm addresses variations in spinal curvature, thereby improving the accuracy of image fusion. The software employs automatic segmentation of spinal anatomy through a patented synthetic tissue model that effectively identifies and labels different spine levels for accurate dose calculations. Tools for outlining spinal tumors are included for Gross Tumor Volume (GTV) contouring, along with automatic suggestions for the Clinical Target Volume (CTV) and a cropped spinal canal object in alignment with International Spine Consortium Guidelines. Furthermore, the integration of AI-driven contouring solutions allows for the swift and dependable delineation of over 200 structures, including lymph nodes. This advancement not only streamlines the treatment process but also enhances overall patient outcomes in spinal cancer management. -
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Elements Multiple Brain Mets SRS
Brainlab
Brainlab's Elements Multiple Brain Metastases SRS represents a cutting-edge software solution aimed at optimizing the planning and execution of treatment for patients suffering from multiple brain metastases. This innovative workflow allows healthcare providers to target several metastases at once without subjecting the entire brain to radiation, thus significantly shortening the duration of treatment delivery. The procedure starts with pre-planning steps that are supported by automation, which includes tasks like image fusion, distortion correction, object outlining, and segmentation; all of which enhance both the speed and precision of the planning process. The software utilizes inverse-optimized dynamic conformal arc techniques, focusing on a single isocenter to achieve highly conformal dose distributions with sharp gradients, ensuring accurate target coverage while protecting surrounding healthy tissue. This method facilitates the rapid generation of consistent, high-quality radiosurgery plans within minutes, ultimately benefiting clinicians and patients alike by reducing treatment durations and enhancing overall outcomes. Moreover, the efficiency and effectiveness of this software can lead to improved patient satisfaction and a more streamlined clinical workflow. -
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3D-DOCTOR
Able Software
$480 per year3D-DOCTOR is a sophisticated software solution designed for 3D modeling, image processing, and measurement across various imaging modalities, including MRI, CT, PET, and microscopy, as well as scientific and industrial applications. It accommodates both grayscale and color images in multiple formats such as DICOM, TIFF, Interfile, GIF, JPEG, PNG, BMP, PGM, MRC, RAW, and more. This powerful software generates 3D surface models and performs volume rendering from 2D cross-sectional images in real-time on your computer. Users can export polygonal mesh models in various formats, including STL, DXF, IGES, 3DS, OBJ, VRML, PLY, and XYZ, making it suitable for applications like surgical planning, simulation, quantitative analysis, finite element analysis, and rapid prototyping. In addition, it allows for 3D volume calculations and other measurements crucial for quantitative insights. The vector-based tools enhance the ease of handling image data, facilitating measurement and analysis efficiently. Moreover, 3D CT and MRI images can be re-sliced along any chosen axis, and it is capable of registering multi-modality images to produce comprehensive image fusions, ensuring a versatile approach to imaging challenges. -
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Elements Contrast Clearance Analysis
Brainlab
Brainlab's Elements Contrast Clearance Analysis is an MRI-based technique aimed at distinguishing areas of contrast clearance and accumulation within brain tumor imaging datasets. This advanced high-resolution analysis enhances the understanding required for ongoing evaluations and decision-making across various clinical fields, including radiosurgery, radiation oncology, neurosurgery, neuro-oncology, and neuroradiology. The methodology entails capturing two standard 3D T1-weighted MRIs; the first scan is taken around 5 minutes after administering a standard dose of contrast agent, while the second scan occurs 60 to 105 minutes later. By subtracting the initial series from the subsequent one, volumetric maps are created that clearly identify zones of contrast clearance (shown in blue) against those of contrast accumulation (illustrated in red). These findings empower clinicians to better evaluate the effects of radiation treatment in contrast to potential tumor regrowth, allowing for more educated decisions regarding both initial and subsequent treatment plans. As a result, this analysis not only aids in clinical assessments but also enhances the overall management of patient care in complex cases. -
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Slice:Drop
Slice:Drop
FreeSlice:Drop is an interactive online platform designed for viewing medical imaging data in three dimensions, enabling users to swiftly examine scientific and medical imagery. It seamlessly accommodates various scientific file formats, including volumetric data, models, and fibers right from the start. Users can effortlessly drag and drop their medical imaging files onto the site, eliminating the need for any file conversions, allowing for immediate rendering. The platform utilizes WebGL and HTML5 canvas technology to visualize data in both 2D and 3D while employing its proprietary open-source toolkit known as XTK. Importantly, all data processing occurs on the client side, which means no information is transmitted over the internet, thereby safeguarding privacy and security. Furthermore, Slice:Drop provides a range of functionalities, such as adjusting 3D opacity, configuring window/level settings, implementing thresholding, and controlling label map opacity for volumetric data; as well as managing show/hide options, opacity settings, and scalars for mesh data; and applying show/hide features and fiber length thresholds for fiber visuals. This makes it an invaluable resource for professionals in the medical field who require efficient and secure access to imaging data. -
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qCT
Qure.ai
Qure.ai's qLC-Suite is a cutting-edge AI-driven tool aimed at improving the early identification and management of lung nodules, which is crucial for prompt lung cancer intervention. This solution delivers accurate measurements, thorough characterization, and 3D imaging of lung nodules, ensuring that opportunities for early treatment are not overlooked. It is capable of supporting both incidental and targeted screenings by efficiently identifying nodules and calculating their volume with just one click. Moreover, the system monitors volumetric changes over time, providing valuable insights into nodule development. The qLC-Suite is designed to integrate smoothly into current workflows, offering quick analysis and reporting that assist healthcare professionals in their decision-making processes. In addition to its analytical capabilities, it serves as a comprehensive platform for managing lung nodules, facilitating care coordination through intelligent prompts, providing hardware-agnostic image viewing for AI-enhanced chest X-rays and CT scans, enabling seamless sharing of scans across departments, and allowing for tailored notifications for cases of concern. Overall, qLC-Suite represents a significant advancement in lung cancer care, promoting timely interventions that can ultimately save lives. -
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Materialise Mimics
Materialise
Materialise Mimics is an all-encompassing software solution aimed at transforming medical imaging data into precise 3D models, serving a variety of purposes such as custom device development and detailed anatomical studies. This platform includes a diverse array of tools that streamline the planning, designing, and 3D printing processes for models and surgical guides tailored to different levels of complexity, enabling immediate use in clinical settings. Central to the platform is Mimics Core, a sophisticated software designed for 3D medical image segmentation that efficiently transitions from image capture to the creation of 3D models. This functionality aids in virtual procedure planning and is essential to the overall effectiveness of the platform. Additionally, the Mimics Innovation Suite expands the platform's capabilities by offering advanced resources for engineers and researchers. By simplifying the engagement with 3D medical imaging data, it becomes a valuable asset for improving patient outcomes through innovative technological applications. Ultimately, this software provides a crucial bridge between advanced imaging techniques and practical medical solutions. -
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Elucis
Realize Medical
Realize Medical's Elucis is an FDA-approved extended reality platform that simplifies the segmentation of images, promotes collaboration among remote teams, and allows for procedural planning in a virtual reality space. Elucis is capable of handling an unlimited number of 3D and 4D CT and MR images, ensuring thorough project integration. It boasts cutting-edge image processing features, including both manual and automatic registration, as well as the display of images in 2D, 3D, and 4D formats. The platform’s segmentation tools are engineered for efficiency and user-friendliness, enabling precise measurement, cutting, and planning tasks directly in a virtual environment. Additionally, Elucis includes advanced 4D modeling capabilities that permit intricate segmentation of cardiac structures in mere minutes, regardless of the phase. Users have the flexibility to import 3D structure files from external sources and can easily export their work with a single click. Furthermore, the platform enhances teamwork by allowing multiple users to connect seamlessly with local or remote colleagues throughout the entire workflow, making it a versatile tool for medical professionals. This feature not only streamlines communication but also ensures that all stakeholders can contribute effectively to the project. -
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D2P
Oqton
The FDA-cleared D2P® software, in combination with 3D Systems printers, empowers surgeons, radiologists, lab technicians, and device designers to efficiently generate high-quality diagnostic digital 3D models and tangible 3D prints. By importing DICOM images into the D2P standalone modular software, all necessary steps for 3D model segmentation and preparation are streamlined into a single workstation. Designed as a medical device, D2P facilitates pre-operative surgical planning and the creation of 3D-printed anatomical models for diagnostic use. Its distinctive image segmentation toolkit, paired with sophisticated virtual reality (VR) visualization, significantly reduces the time and effort required for clinicians and point-of-care (POC) personnel to produce customized anatomical models for their patients. Furthermore, the digital models generated by D2P can be utilized across various platforms, including 3D printers, VR systems, surgical planning applications, and CAD software, enhancing the overall flexibility and effectiveness of medical practices. This innovative approach not only improves surgical preparation but also fosters collaboration among healthcare professionals by providing them with precise and accessible anatomical representations. -
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3mensio
Pie Medical Imaging
Effortlessly identify the suitable landing zone for the treatment of abdominal aneurysms (EVAR), thoracic aneurysms (TEVAR), or the insertion of fenestrated stents (FEVAR). All necessary metrics, including diameter, clock position, volume, and length, can be accurately acquired through automatically detected centerlines or 3D double oblique imaging. Furthermore, integrated manufacturer stent order sheets can create PDF files, simplifying the process of ordering specific stents via email. Our ongoing mission is to enhance the quality and efficiency of cardiovascular image analysis, which in turn optimizes patient treatment outcomes. We strive to align our product offerings with the most recent advancements in the cardiovascular sector. By doing so, we ensure that our customers receive the best software solutions at the most opportune moments. Recognizing the significance of proper training and support, we are committed to making sure all users are proficient and comfortable with their analysis. To meet diverse needs, we provide customizable training options that adapt to individual requirements, fostering a supportive learning environment for all users. -
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Axial3D
Axial3D
Axial3D is committed to enhancing personalized healthcare by revolutionizing the industry with its innovative 3D medical imaging and tailored patient solutions, thereby making individualized surgical care both routine and scalable. Their proprietary AI-driven platform, which operates in the cloud, enables medical device manufacturers, imaging specialists, and healthcare facilities to utilize rich data for creating precise 3D models that facilitate better surgical planning, lead to improved patient outcomes, and streamline workflows. Among the offerings are 3D visualizations, mesh files, print-ready files, and actual 3D printed models, all crafted to seamlessly fit into current medical practices. By transforming intricate DICOM images into accurate, actionable 3D representations, the company significantly enhances efficiency, speed, and scalability in the development of patient-specific devices. The cloud-based platform uniquely equips surgeons with a detailed perspective of their patient’s anatomy before surgery, thereby improving the accuracy and precision of surgical planning far beyond what traditional 2D imaging can provide. This advancement not only benefits individual patients but also paves the way for broader applications in the medical field. -
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Synapse 3D
FUJIFILM Healthcare Americas Corporation
Fujifilm's Synapse 3D represents a cutting-edge visualization solution that has been crafted in conjunction with a variety of medical professionals, including radiologists, cardiologists, and surgeons, providing more than 50 applications designed to improve both the accuracy and efficiency of diagnoses. This platform features advanced server-side technology that accommodates both cloud and on-premise hosting, enabling sophisticated image analyses that aid in interpretation, reporting, and treatment planning while promoting effective clinical collaboration throughout the organization. It addresses specialty fields such as cardiology, pulmonology, oncology, urology, neurology, and gastroenterology, showcasing its versatility. The architecture of Synapse 3D is scalable, allowing for unlimited expansion, and its reliable workflows boost overall productivity while catering to extensive visualization requirements through specialized applications. The platform also includes native cardiology features that enhance cardiac care, and its AI-driven detection capabilities significantly enhance the accuracy and efficiency of interpretations. Additionally, Synapse 3D offers seamless integration with Fujifilm's Synapse Enterprise PACS, making it an invaluable resource for healthcare providers seeking to optimize patient outcomes. With these comprehensive features, it stands to revolutionize the way medical imaging is approached in clinical settings. -
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XStream HDVR
Fovia Ai
Fovia's XStream HDVR SDK Suite delivers an extensive array of tools for sophisticated visualization, allowing for effortless integration across multiple platforms, such as enterprise networks, independent workstations, and cloud-enabled mobile applications. Within this suite, users will find features like F.A.S.T. Interactive Segmentation, which supports dynamic 3D segmentation, F.A.S.T. RapidPrint for efficient volume-to-print processes, and F.A.S.T. Cloud SDK designed for advanced visualization in the cloud. These innovative tools empower the creation of tailored workflows and high-performance imaging applications that enhance user experience. Furthermore, Fovia offers a user-friendly API coupled with custom integration support, ensuring that a wide range of needs in the advanced visualization sector are effectively addressed. This commitment to versatility and user satisfaction solidifies Fovia's position as a leader in the visualization technology market. -
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HeartFlow
HeartFlow
HeartFlow offers a groundbreaking, non-invasive cardiac test that delivers detailed visualizations of individual coronary arteries, allowing doctors to develop more tailored treatment strategies for their patients. The process begins when a patient has a standard coronary computed tomography scan performed at a medical facility. Following this scan, the CT images are securely sent to our cloud-based system. Utilizing cutting-edge algorithms powered by artificial intelligence, we create a customized digital representation of the patient's coronary arteries. Our skilled analysts then review this model, making necessary adjustments to ensure accuracy. After finalizing the patient-specific model, the HeartFlow pathway employs physiological principles and computational fluid dynamics to analyze blood flow and compute FFRCT values throughout the model. We adhere to strict and well-established protocols throughout this entire process, ensuring uniform processing for every individual patient, which ultimately enhances the quality of care provided. This innovative approach not only improves diagnostic precision but also empowers healthcare providers to make informed decisions for optimal patient outcomes. -
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Caas MR 4D Flow
Pie Medical Imaging
Caas MR 4D Flow is expertly crafted to efficiently extract pertinent data from 3D phase-contrast MR images with minimal effort. Utilizing these advanced images, it provides two innovative 4D Flow modules that facilitate comprehensive flow analysis, which is instrumental in the assessment and interpretation of cardiovascular MR images, as well as in strategizing the timing and nature of interventions. One of these modules focuses on evaluating blood vessels, ranging from major arteries like the aorta to smaller vessels such as those found in the kidneys, while the other specializes in assessing heart valves concerning regurgitation fraction. Among the significant outputs are the visualization of aortic blood flow presented as streamlines, pathlines, and color-coded vectors; detailed mapping of wall shear stress alongside localized wall shear stress values; measurement of pressure differences across specific segments; and the visualization and quantification of regurgitant fractions for all four heart valves, in addition to conducting 2D flow phase-contrast analyses. This comprehensive approach not only enhances understanding but also significantly aids clinicians in making informed decisions regarding patient care. -
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TeraRecon
TeraRecon
Implement comprehensive clinical decision support across your entire organization. Enhance your PACS and EMR systems to streamline imaging processes and boost patient care quality. We recognize that you manage diverse types of images from various sources, and your patients deserve optimal care. While sometimes a single solution may suffice, achieving an enterprise-wide AI-powered imaging analysis is possible with a contemporary technology framework and an intuitive user interface tailored for all physicians. Whether it's for radiology assessments, procedural planning, or consultations at the point of care, users can utilize a complete range of clinical resources through a robust advanced UI or a straightforward web-based interface. TeraRecon is capable of handling multiple imaging modalities and can support up to 40 concurrent users engaged in sophisticated image processing from one virtual server, whereas competitors typically struggle to accommodate many modalities or users without requiring additional servers. This scalability and flexibility position TeraRecon as a leader in the field of imaging solutions. -
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Butterfly
Butterfly Networks
$420 per yearThe Butterfly iQ+ is engineered to simplify the ultrasound experience. By connecting it to either our iOS or Android application, users can effortlessly select from 22 presets within seconds with just a finger swipe, enabling immediate scanning capabilities. This device is driven by our cutting-edge Ultrasound-on-Chip™, which expands the boundaries of ultrasound technology. With patented on-chip digital micro-beamforming, it achieves frame rates that are 15% faster and pulse repetition frequencies that are 60% quicker. Furthermore, its 1.75D array beamforming significantly reduces elevation beamwidth by 85%. Featuring an innovative low-noise, low-power semiconductor process paired with optimized electronics and a power-efficient FPGA, the device is designed for efficiency. Simply plug it into your mobile device, start scanning right away, and enhance your capabilities with Butterfly Education. Experience the precision you need with vivid color representation that accurately illustrates hemodynamic flow. The iQ+ is the world's only device utilizing Ultrasound-on-Chip™ technology, enabling users to effectively identify A lines, B lines, and pleural irregularities, resulting in quicker and clearer diagnostic insights. This remarkable tool not only enhances scanning efficiency but also elevates the overall quality of patient care. -
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VolView
Kitware
FreeVolView is an open-source tool designed for radiological professionals, enabling them to visualize DICOM data in three dimensions through interactive cinematic volume rendering. This application runs directly in web browsers, allowing secure data handling as files remain on the user's device without requiring installation. Supporting a convenient drag-and-drop interface for DICOM files, VolView excels in delivering high-quality and interactive 3D renderings. Users can explore various color presets, modify lighting and transparency settings, crop images, and engage with 3D data for enhanced understanding. The platform features both standard 2D and 3D controls, measurement tools, and annotation capabilities, with continual updates made in response to user suggestions. As it operates locally, VolView harnesses the processing power of the user's CPU, GPU, and disk space, avoiding reliance on external servers or cloud services. Additionally, being open-source, it remains freely available to healthcare professionals, promoting wide accessibility and collaboration in the clinical community. This empowers clinicians to utilize advanced visualization techniques in their diagnostic processes. -
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OsiriX is a highly esteemed medical imaging software designed for viewing DICOM (Digital Imaging and Communications in Medicine) files, catering especially to healthcare professionals who require efficient management and analysis of medical images. This versatile platform boasts capabilities for 2D, 3D, and 4D visualization, complemented by sophisticated post-processing tools that enhance diagnostic precision. Its advanced features, including volume rendering and detailed image manipulation, make it a preferred choice among radiologists, clinicians, and researchers worldwide. Available in two versions, OsiriX provides a free (Lite) option alongside a paid (MD) version that includes enhanced functionalities and necessary certifications for clinical application, such as FDA and CE approvals. Additionally, the software's user-friendly interface and robust performance contribute to its widespread adoption in the medical community.
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Altris AI
Altris AI
Altris AI is an advanced, cloud-based clinical decision support system powered by artificial intelligence, specifically tailored to aid eye care professionals in interpreting OCT scans and making informed decisions. The platform streamlines the identification of pathological OCT scans while recognizing over 70 retina-related pathologies and biomarkers, which include some that are quite uncommon. Features of the system encompass severity detection, analysis of retina layer thickness, layer segmentation, and both automatic and manual measurement capabilities. It is designed to work seamlessly with all OCT devices and accommodates various data formats like DICOM, JPEG, and PNG. Furthermore, Altris AI has received FDA clearance, CE certification, and is compliant with GDPR and HIPAA regulations, thereby upholding rigorous standards for data security and patient confidentiality. By integrating this innovative tool into their practices, eye care professionals can significantly enhance patient triage, improve diagnostic precision, and more effectively track the progression of diseases over time. As a result, the adoption of Altris AI not only streamlines workflows but also elevates the overall quality of patient care in eye health. -
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CubeVue
CurveBeam
CubeVue software by CurveBeam AI offers an array of robust visualization features that significantly improve dataset analysis, providing users with intuitive tools for interpretation and treatment planning right at their fingertips. Among the basic visualization functionalities are options for zooming, panning, adjusting window levels, measuring distances and angles, saving case workups, comparing studies side by side, and exporting images in DICOM or JPEG formats, including 3D views. More advanced features include dynamic 3D renderings, multiplanar reconstruction (MPR) views, and SimX views. The dynamic 3D renderings provide the flexibility to rotate and visualize the volume from any perspective, allowing users to peel away layers of skin for clinical evaluation and scroll through the volume slice by slice. MPR views facilitate the on-the-fly rotation of planes, enabling users to create custom reformats instantly, synchronize navigation across coronal, axial, and sagittal slices, and modify slice thickness for tailored slabs. Additionally, SimX views produce digitally reconstructed radiographs derived from CT data, enhancing diagnostic capabilities and contributing to better patient outcomes. This comprehensive suite of visualization tools empowers healthcare professionals to make informed decisions during the treatment planning process. -
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EndoAim
ASUS
The ASUS EndoAim AI Endoscopy System represents a state-of-the-art, compact artificial intelligence tool tailored to support gastroenterologists in the identification and categorization of polyps during colonoscopy examinations. By leveraging Intel Core processors alongside the OpenVINO toolkit, EndoAim achieves a remarkable processing rate of 60 frames per second with a latency of under 70 milliseconds, facilitating swift detection of polyps, including those that are particularly small or challenging to find. The system visually highlights potential polyps on the display screen and classifies them as either adenoma or non-adenoma, thus providing immediate feedback to healthcare professionals. Moreover, EndoAim includes a convenient one-click feature for size measurement, which enhances the evaluation of polyp dimensions without relying on traditional visual estimation techniques. This innovative system integrates effortlessly with existing colonoscopy setups, necessitating only a mini PC as additional hardware, and has already seen implementation in more than 30 medical facilities across Taiwan. Its widespread adoption underscores the growing reliance on AI technologies in improving diagnostic accuracy in gastroenterological practices. -
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ResolutionMD
ResolutionMD
Our innovative mobile visualization platform, recognized with awards, allows healthcare professionals to work together and make diagnoses while accessing and sharing 2D/3D medical images seamlessly across various devices. With secure data access from any location, there's no need to transfer or duplicate original files. This platform is selected and relied upon by some of the largest and most cutting-edge healthcare institutions globally. Designed by clinicians for their peers, the ResolutionMD enterprise viewer enhances patient care and optimizes workflows through features that comply with HIPAA regulations, alongside robust mobile functionality. With FDA Class II certification and other international accreditations, you can confidently make diagnoses using both mobile and web applications, ensuring high-quality care for patients everywhere. This innovative approach not only improves efficiency but also fosters a collaborative environment among healthcare providers. -
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CADDIE
Odin Vision
CADDIE (Computer-Aided Detection for Endoscopy) is an innovative AI software created by Odin Vision, aimed at enhancing the ability of endoscopists to identify and evaluate colorectal polyps during colonoscopy. Utilizing the robust cloud infrastructure provided by NVIDIA, CADDIE processes live video feeds from traditional white-light endoscopes, offering visual indicators that point out areas of concern for potential polyps. This system classifies polyps into adenomas and non-adenomas, which supports healthcare professionals in making well-informed choices regarding resection and histopathology. Moreover, CADDIE evaluates bowel cleanliness by calculating the percentage of visible mucosa and identifies the appendiceal orifice to ensure successful cecal intubation. Its cloud-based design facilitates effortless software updates, eliminating the necessity for on-site technical interventions. Additionally, CADDIE is built to work seamlessly with existing endoscopy equipment and can be integrated into current clinical practices with little to no training needed, making it a valuable tool in modern gastroenterology. Overall, this technology aims to improve patient outcomes and enhance the accuracy of colorectal screenings. -
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Us2.ai
Us2.ai
Us2.ai is revolutionizing the battle against heart disease by utilizing AI-driven ultrasound software that ensures heart health can be accessible to everyone. This innovative platform provides 45 automated echo parameters, such as strain analysis, and enables real-time interpretation of 2D and Doppler images. It seamlessly integrates with any ultrasound machine, producing zero-click, comprehensive reports that maintain high accuracy and can be easily compared with expert evaluations. The AI echo copilot from Us2.ai autonomously analyzes all heart chambers through both 2D and Doppler perspectives, incorporating global reference guidelines into detailed, real-time reports. Recently, the software obtained FDA clearance for Us2.v2, which also boasts 45 automated echo parameters, including strain analysis, representing a remarkable advancement in healthcare technology. Ultimately, Us2.ai aims to democratize echocardiography, ensuring that ultrasound technology is available to individuals regardless of their location or circumstances, thereby promoting better heart health for all. This commitment to accessibility and innovation positions Us2.ai at the forefront of the medical technology landscape. -
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Studycast
Core Sound Imaging
Studycast is a cloud-based PACS and imaging workflow platform that helps providers work faster and more securely. Clinicians can access diagnostic-quality images, document findings, and create structured reports from any location. Its intuitive design streamlines the entire process from exam to archive, improving efficiency, reducing costs, and supporting quicker patient care. As a true cloud-native system, Studycast requires no complex installations or expensive hardware. It provides secure access from any internet-connected device and unifies the full imaging workflow within one simple platform. The workflow is fully end-to-end: orders route directly to imaging equipment, studies upload automatically to the cloud, and technologists complete before sending cases to physicians. Automatic alerts notify clinicians when studies are ready, reducing delays. Physicians can review cine loops, compare images, annotate diagrams, take measurements, and sign reports digitally from any location. More than 120 specialized worksheets (including echo, OB, POCUS, vet, and more) support accuracy and consistency, featuring auto-filled measurements, dropdown fields, and interactive diagrams. Studycast Advisor™ provides guideline-based recommendations to enhance reporting. Providers can log in from desktops, laptops, or mobile devices with secure access to studies and reports. Results can be shared easily with patients and referring providers through HIPAA- and PIPEDA-compliant portals. All data is encrypted and stored across multiple secure sites for redundancy and long-term compliance. Automated archiving ensures information stays protected and accessible. Studycast can be implemented in just a few weeks, with configuration support, unlimited training, and ongoing assistance included. -
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INFINITY ANALYZE 7
Teledyne Vision Solutions
INFINITY ANALYZE 7 is a user-friendly software solution tailored for camera management, capturing images, and processing them in life science, clinical, and industrial research settings. It accommodates both brightfield and fluorescence imaging modes, guaranteeing results that are reproducible, precise, and of high quality. The software boasts a variety of functions, including image processing, fluorescence acquisition, calibration settings, customizable presets, annotations, and extensive camera controls. Users are able to engage in activities such as focus stacking, image stitching, and executing numerous post-processing techniques on the acquired images. The fluorescence functionality supports both multi-channel and single-channel image acquisition, simplifying the creation of composite images from sequences. Enhanced workflow efficiency is achieved through user-defined button labels and hotkeys, which provide rapid access to presets during microscope objective switches. Additionally, users can incorporate annotations such as lines, arrows, and shapes to emphasize specific areas of interest within their images, further enriching the visual data presentation. This versatility makes INFINITY ANALYZE 7 an invaluable tool for researchers aiming for detailed and organized imaging capabilities. -
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CryptoChart
Novarad
CryptoChart™ offers a secure and efficient method for delivering patient medical images and records through a straightforward yet highly secure CryptoChart code. This code allows patients to access their images at any time and from any location, making it simple to share via text message or email. If you require help with CryptoChart, it’s best to contact the facility where you initially received your information. Empower your marketing team to enhance both patient and physician experiences, providing them with a distinct competitive edge. Alleviate the demands on IT by utilizing a robust 25-character encryption strength, along with a random web access code. The viewer is compatible with all mobile devices and desktops, ensuring convenience. Offer your patients a fast and effortless way to manage and share their personal health information, enhancing their overall experience and satisfaction. -
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XDR’s Dental Imaging Software is expertly designed to provide both user-friendly functionality and exceptional diagnostic capability. It features an Exposure Meter that enhances both the capturing and diagnosing processes. Users can effortlessly apply filters such as the Perio, Sharp, and Endo with just a single click. It also allows for cumulative measurements and real-time image viewing during charting, thanks to its Floater feature. The software incorporates a patented Unwarp technology to correct projective distortion, along with Bi-Directional Scaling for precise rescaling. Additionally, it offers a virtual acetate overlay designed specifically for implant planning and supports preformatted text insertion for efficiency. Users can easily select tooth numbers and utilize a misfiled exams finder. This robust software can detect even the faintest lesions and the narrowest files. It consistently ranks among the best in peer-reviewed studies, providing exposure feedback to ensure diagnostic accuracy while adhering to ALARA principles. By leveraging advanced mathematics and radiographic physics, this software stands out as a powerful tool in dental imaging. Ultimately, it enhances the overall workflow and accuracy of dental diagnostics.
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MiNNOVAA
MiNNOVAA
MiNNOVAA is a company specializing in medical information technology, particularly in the realms of medical imaging software and the exchange of medical images. With the guiding principle of "medical imaging innovation," we stand out for our nimbleness and the state-of-the-art technology we utilize in crafting our solutions. Our main areas of concentration are the development of medical image viewers, enhancement of radiology workflows, and the incorporation of artificial intelligence in diagnostic reporting. Our energetic team comprises around 20 skilled programmers and product managers, alongside professionals in marketing, sales, technical support, call center operations, and administration, all dedicated to driving a meaningful transformation in the field of medical imaging and enhancing individual healthcare experiences. We offer a comprehensive clinical imaging IT solution tailored for mid-sized hospitals and imaging clinics, featuring a wide array of functionalities such as on-premise core PACS software, a DICOM web viewer, multi-platform imaging workstation software, seamless integration with EHR/EMR/HIS systems, and an efficient workflow engine/RIS. Ultimately, our commitment to innovation and comprehensive solutions aims to redefine how medical imaging is approached and utilized within healthcare settings. -
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Invivo
DEXIS
Invivo™ 6, developed by Anatomage, represents cutting-edge 3D imaging software utilizing Cone Beam CT technology, specifically crafted for dental experts. This innovative platform is ideal for a variety of applications, including implant planning, orthodontics, oral surgery, and restorative dentistry, providing sophisticated visualization tools and accurate treatment planning capabilities. Notable functionalities consist of virtual design options for crowns, abutments, and implants, as well as the integration of digital impressions and the creation of surgical guides. Additionally, the software improves clinical workflows through seamless collaboration and sharing features on the Anatomage cloud, which leads to quicker and more precise diagnosis and treatment strategies. Such advancements not only streamline processes for dental professionals but also enhance patient care outcomes significantly. -
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3D Slicer
3D Slicer
Free3D Slicer is an open-source software tool that provides a comprehensive platform for visualizing, processing, segmenting, registering, and analyzing medical and biomedical 3D images and meshes. In addition to these features, it supports the planning and navigation of image-guided medical procedures. Functioning as a desktop application, 3D Slicer tackles complex challenges in image computing, specifically tailored for clinical and biomedical contexts. Furthermore, it acts as a development framework that allows for the swift creation and implementation of custom applications for both research and commercial endeavors. The platform is backed by a vibrant community of skilled users and developers who work together to enhance the field of medical computing. Distributed under a BSD-style license, 3D Slicer places no limitations on its use in both academic and commercial settings, but it is important to note that the software is not FDA-approved, placing the onus on users to ensure they meet relevant regulatory requirements. This collaborative environment fosters innovation and encourages the development of unique solutions to meet the evolving needs of the medical field. -
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AudaxCeph
AudaxCeph
$500 one-time paymentHarness the power of Artificial Intelligence to streamline your workflow in the orthodontic practice, ensuring efficiency and speed that are essential. Utilize AI for obtaining measurements that assist in crafting treatment plans, projecting skull growth, predicting treatment outcomes, and running simulations. This technology allows for the rapid placement of cephalometric landmarks, significantly reducing the time spent on these tasks. Organize all related documents into a timeline format, making them easily accessible whenever needed. Be prepared to present and discuss the advancements in orthodontic treatment with your patients at any moment. Our cephalometric software is offered in two distinct editions, each featuring unique tools; however, they share the same advanced cephalometric engine, guaranteeing quick and accurate results. The user-friendly AudaxCeph SuperEasy, enhanced with AI, takes on the task of automatically placing cephalometric points on both soft and hard tissue landmarks in just seconds, transforming the efficiency of your practice. With this innovative approach, you can focus more on patient care and less on administrative tasks. -
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Simplant
Dentsply Sirona
Guided surgical procedures for your selected implant systems can greatly enhance outcomes. Simplant provides reliable 3D solutions for implant treatments, ensuring that prosthetic results align with initial plans. The offerings from Simplant are not only economically viable but also designed for ease of use, and they seamlessly integrate with the brands and tools that dental professionals are already familiar with. This computer-guided implant technology supports over 10,000 implants across more than 100 different brands and is compatible with all DICOM-compliant CT scanners, as well as major optical and intraoral scanning devices. With services ranging from dental scanning and treatment planning to drilling and the placement of implants, Simplant also facilitates the provision of Immediate Smile temporary restorations prior to surgical intervention, thus equipping clinicians with a thorough 3D system that fosters predictable and effective implant treatment results. By utilizing these advanced technologies, dental practitioners can significantly improve patient outcomes and streamline their workflow. -
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DoseLab
Varian
DoseLab features a comprehensive linac QA database that visualizes machine performance over time, allowing for easy identification of performance trends. It enables efficient planning of QA tests, the assignment of tasks to designated users, and the tracking of outcomes. You can gather data from a wide range of tests, which may include morning warm-up statistics and TG-51 calibration data, with inputs ranging from numerical entries to text and multiple-choice options. Additionally, the system provides seamless monitoring of machine QA images, requiring no manual clicks for processing. This facilitates a streamlined approach to reviewing QA results, enhancing automation and trend analysis capabilities, thus improving overall operational efficiency. -
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Remedico
Remedico
$99 per monthRemedico is a Patient Relationship Management software for dental clinics. It was designed to redefine the future dental care and clinic operations. Key Features Smart Appointments™: A scheduling system that optimizes clinic workflow. HyperRealistic™ 3D Dental Chart: Detailed, interactive patient charting. Treatment Case and Plan Management: Tailored to individual patient needs. Patient Flow™: Improves patient experience by streamlining the patient journey. Set a reminder for observation on any patient or treatment case Retention Booster™: AI enhanced communication tools to increase patient retention. Patient Quiz: Easily gather patient's personal information and medical information Dentaverse™: Revolutionary VR app for vivid treatment visualization. Remedico helps clinics embrace an integrated future, where patient care, clinic efficiency, and growth are all seamlessly integrated. -
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Amira Software
Thermo Fisher Scientific
Thermo Scientific Amira Software serves as a robust and versatile solution for visualizing, analyzing, and comprehending life science and biomedical research data across a range of imaging modalities, such as optical and electron microscopy, CT, MRI, and more. Notably efficient and adaptable, Amira Software enhances advanced bioimaging workflows in diverse research domains, including structural biology, cellular biology, tissue imaging, neuroscience, preclinical studies, and bioengineering. Among its standout features are capabilities for importing and processing image data, visualization and exploration, sophisticated segmentation, measurement, quantification, and analysis, as well as tailored tools for molecular visualization, object tracking, filament tracing, meshing for finite element analysis, diffusion tensor imaging, 3D registration, and the analysis of biomaterial deformation. Additionally, Amira Software provides options for customization and integrates seamlessly with ecosystems like MATLAB, Python, and custom C++, making it a highly adaptable tool for researchers. This flexibility ensures that researchers can tailor their workflows to meet specific experimental needs and challenges. -
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ActiViz
Kitware
FreeActiViz is a comprehensive 3D visualization library tailored for .NET C# and Unity, facilitating the seamless incorporation of sophisticated 3D visualization capabilities into applications. It is founded on the open-source Visualization Toolkit (VTK) and encompasses a diverse range of visualization algorithms, which include scalar, vector, tensor, texture, and volumetric techniques. Moreover, ActiViz boasts advanced modeling functionalities such as implicit modeling, polygon reduction, mesh smoothing, cutting, contouring, and Delaunay triangulation, enhancing its versatility in various applications. This library enables developers to quickly create interactive 3D applications ready for production within the .NET ecosystem, with additional support for Windows Presentation Foundation (WPF). Furthermore, its compatibility with Unity software broadens its potential uses, making it suitable for both game development and interactive simulations. Notably, the latest version, ActiViz 9.4, introduces support for multiple .NET versions from .NET Framework 4.0 to .NET 8, along with innovative features like curved planar reformation for generating panoramic views, highlighting its continuous evolution and adaptability in the field. -
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ChameleonDR
Novarad
ChameleonDR seamlessly integrates with your existing film or CR x-ray system, allowing for straightforward installation over current components. Once in place, it delivers high-definition image quality while significantly reducing radiation exposure by up to 300%, depending on the specific procedure performed. This remarkable performance is achieved through cutting-edge acquisition technologies embedded in a superior HD detector panel, paired with sophisticated image processing capabilities. The A3 image post-processing technology automatically applies a series of advanced algorithms that consider factors such as patient size and density, working together seamlessly like a finely-tuned equalizer enhances the sound of a premium audio setup. As a result, clinicians can expect the highest caliber of imaging, with optimal bone-to-tissue contrast. Radiology technicians will be amazed by the clarity and detail of the images displayed on their new 4K ultra HD touch screen workstations. The difference made by a 15MP image, expertly calibrated, is invaluable for ensuring accurate and confident diagnoses. Furthermore, this innovative system not only enhances image quality but also streamlines workflow efficiency in clinical settings. -
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AnalyzeDirect
AnalyzeDirect
AnalyzeDirect is a company focused on medical technology research that excels in distributing and supporting Analyze, a premier software for advanced biomedical imaging visualization, manipulation, and measurement across the globe. The latest version, Analyze 15.0, provides an easy-to-use interface for image visualization and analysis tailored for medical research, equipped with advanced segmentation tools that allow for rapid and accurate definition of regions, extensive statistical analysis capabilities with reliable measurement tools, and powerful registration features for fusing images from different modalities. It also includes a diverse set of display options for thorough image review and visualization, along with filtering tools that enhance post-processing and optimization of images. This software is compatible with over 45 different file formats, such as DICOM as well as various standard radiological and neurological formats. Its user base spans physicians, scientists, professors, and graduate students at leading medical institutions, universities, pharmaceutical firms, biotech organizations, medical device manufacturers, and contract research entities around the world. AnalyzeDirect continues to innovate in this field, ensuring that users have access to the most effective and cutting-edge tools for their research needs. -
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EchoPixel True 3D
EchoPixel
EchoPixel's True3D software platform generates a holographic digital replica of a patient's heart, which allows surgical teams to analyze and strategize using a virtual model prior to making any incisions. This innovative technology addresses the constraints of traditional 2D imaging by offering a 4D interactive holographic environment that provides real-time insights on the positioning of catheters and implantable devices in complex anatomical settings. True3D finds its application in various clinical scenarios, including congenital heart anomalies such as MAPCA, PA reconstruction, DORV, ASD, VSD, and CAVC, as well as in structural heart interventions like LAAO, transseptal cross, TMVR, and TAVR. Leading medical institutions around the globe, including Miyazaki University Hospital in Japan, have embraced this platform, which has also achieved medical device registration in Japan. By utilizing True3D, healthcare professionals can deepen their comprehension of three-dimensional anatomical relationships, which may lead to shorter procedure durations. Furthermore, the ability to visualize a patient's heart in such detail can significantly enhance preoperative planning and ultimately improve patient outcomes. -
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Surgical Science
Surgical Science
Surgical Science stands out as a premier provider of medical simulation training and software solutions, with a commitment to improving patient safety and healthcare results through personalized, validated simulations. By offering high-fidelity simulations, they allow healthcare professionals to refine their skills—ranging from fundamental techniques to the management of intricate cases—safely, without exposing patients to risk. Renowned by surgeons, clinicians, and healthcare teams globally, Surgical Science's evidence-based simulations contribute to enhanced patient care on a daily basis. With over 8,000 simulators in operation, spanning more than 150 medical procedures and backed by over 400 validated studies, their influence is considerable. Their ready-to-use simulators, combined with evidence-based customizable curricula, empower healthcare professionals and teams to advance their expertise, foster professional development, and ultimately enhance the quality of patient care and safety. Furthermore, the integration of these advanced simulation tools into training programs has revolutionized the way medical professionals prepare for real-world challenges, ensuring they are equipped to provide the best possible care in critical situations. -
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Quantib Brain
Quantib
Quantib Brain is a radiology software solution that has received FDA clearance and CE marking, specifically designed for the segmentation of brain scans. Collaboratively developed with GE Healthcare, it operates as a plug-in for the Advantage Workstation (Server), delivering automated quantification of brain structures in a user-friendly software setting. This innovative tool allows for the longitudinal analysis of brain volume measurements, encompassing white matter, grey matter, intracranial volume, and cerebrospinal fluid, which aids in monitoring the progression of atrophy. Furthermore, it includes functionality for the segmentation and tracking of white matter hyperintensities. Quantib Brain offers a detailed summary of volumes for grey matter, white matter, ICV, CSF, and total brain volume, all presented in a clear results table. Users can also benefit from self-selected cross-sections, which can be easily exported into a detailed report, ensuring all examination findings are readily shareable for collaborative review. This capability enhances the overall efficiency of diagnosis and patient management in clinical settings. -
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BioDigital Human
BioDigital
The BioDigital Human serves as an innovative 3D software platform designed for the visualization of anatomy, diseases, and their corresponding treatments. Our platform transforms health-related information into a format that is visually appealing, easily understandable, and engaging for users. Utilizing interactive 3D technology has been shown to enhance both the speed and comprehension of education regarding anatomy, diseases, and treatment practices. You can create and manage these interactive visualizations for deployment across various digital platforms, all at a significantly reduced cost compared to traditional methods. Custom visualizations can be developed using Human Studio, or our professional services team can assist in crafting specific visual representations of conditions and treatments. Additionally, the ability to integrate interactive 3D visualizations into any Learning Management System (LMS) or digital solution provides a cohesive experience for end-users. For the first time, organizations can quickly enhance the immersion of their educational content in health, medicine, and life sciences by leveraging BioDigital's advanced software. Not only do these interactive 3D models provide a tailored approach to learning about human anatomy, physiology, diseases, and treatments, but they can also be seamlessly embedded into curricula or any educational resource to enrich the learning experience. This innovative approach is poised to revolutionize how educational content is delivered in the medical field. -
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Infervision
Infervision
Founded in 2016, Infervision stands at the forefront of AI-driven medical technology, dedicated to enhancing multidisciplinary healthcare services and operations through innovative artificial intelligence solutions. Their advanced AI offerings are designed to assist healthcare professionals across a spectrum of tasks, including disease screening, diagnosis, intervention, treatment, patient management, and medical research. Among their array of solutions, InferRead CT Lung specializes in detecting lung nodules from chest CT scans, while InferRead DR Chest focuses on identifying chest abnormalities via X-ray imaging. Moreover, InferRead CT Coronary is tailored for recognizing coronary artery stenosis during coronary CT angiography, and InferRead CT Stroke is adept at triaging hemorrhages from brain CT scans. The company also provides InferRead CT Bone for spotting chest fractures in CT images and InferRead CT Pneumonia for diagnosing and managing pneumonia cases. Beyond these, their offerings extend to InferOperate, which facilitates 3D reconstruction for thoracic, liver, and urological surgical procedures, and InferCare, a tool designed for effective patient management and image follow-up. Additionally, InferScholar acts as an AI-enhanced resource for medical research, further solidifying Infervision's commitment to transforming healthcare through AI technology. This comprehensive suite of solutions positions Infervision as a pivotal player in the evolution of medical practices.