SIS Software Version 3.6.0 is an advanced medical imaging application designed to assist neurosurgeons, neurologists, and radiologists by processing MRI and CT scans to create detailed 3D models of brain structures, particularly the subthalamic nuclei. It uses machine learning to enhance images, aiding in the visualization and planning of stereotactic brain surgeries, thereby improving surgical accuracy and patient outcomes.
D2P is a software tool developed by 3D Systems that processes medical imaging data (DICOM) to create 3D segmentations and physical models. It assists clinicians in surgical planning by allowing the generation of accurate physical replicas of anatomical regions from imaging data, supporting diagnosis and treatment decisions in cardiovascular, craniofacial, gastrointestinal, genitourinary, neurological, and musculoskeletal areas.
SurgicalAR is a software platform that allows clinicians to view and manipulate medical images in both traditional 2D and advanced 3D formats, including augmented reality via head-mounted displays. It aids surgical planning and medical image review by providing tools such as image manipulation, measurements, and 3D visualization of CT and MR images. This enhances the understanding of complex anatomical structures to improve clinical decision making.
AI Rad Companion (Engine) by Siemens Medical Solutions is a software platform designed to assist technicians and physicians in viewing, processing, and analyzing medical images from multiple modalities. It supports integration with PACS systems and allows external AI-based post-processing extensions, improving clinical image analysis and workflow.
Centricity Universal Viewer by GE Healthcare is a medical imaging software solution designed to display, manage, analyze, and share medical images from multiple imaging modalities. It facilitates radiologists and cardiologists in interpreting diagnostic images, improving workflow and clinical decision-making. It supports many imaging formats but is not intended for digital pathology diagnosis. The product enhances clinicians' ability to view and interpret images efficiently across healthcare systems.
icobrain is an AI-powered software that automates the identification, labeling, and volume measurement of brain structures from MR and CT images. It assists clinicians in evaluating brain conditions such as dementia and traumatic brain injury by providing detailed volumetric reports and visual overlays, improving the efficiency and accuracy of brain image analysis.
Arterys MICA is a software platform designed to display, process, store, and transfer medical imaging data, including CT and MR images. It features modules specialized for cardiac and oncology workflows, providing quantitative analysis to aid clinicians in diagnosis. The software runs on standard computers via a web browser and supports enhanced image viewing and lesion evaluation for clinical decision support.
Ziostation2 is an advanced medical image processing software that supports multiple imaging modalities including CT, MRI, Ultrasound, and X-ray. It helps clinicians view and analyze medical images by providing tools for image quantification, manipulation, and communication. This software is designed to enhance the workflow and diagnostic process for radiologists and other trained medical professionals.
Quantitative Total Extensible Imaging (QTxI) is a software tool that helps medical professionals manage and evaluate digital medical images from CT and PET scans. It supports tasks such as storing, retrieving, and displaying images, as well as identifying and analyzing regions of interest (ROIs) in full or partial body scans with 3D visualization. This software aids clinicians by automating quantification and monitoring changes in imaging data to improve diagnostic and treatment decision workflows.
The UNiD Spine Analyzer is a software tool that helps healthcare professionals view, measure, and analyze medical images related to the spine. It assists in planning orthopedic surgeries by allowing surgeons to perform measurements and plan the placement of surgical implants. This tool enhances surgical planning accuracy and efficiency for spine treatments.
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