The Swoop Portable MR Imaging System by Hyperfine, Inc. is a bedside portable MRI device designed to produce internal head images using magnetic resonance imaging. It allows clinicians to perform imaging at the point of care when full diagnostic exams are not practical. Its AI-enabled reconstruction algorithm enhances image quality by reducing noise and blurring for multiple MRI sequences, helping physicians with diagnosis.
AI4CMR v1.0 is a software tool that uses artificial intelligence to automatically analyze cardiac MRI scans to measure cardiac function parameters like ventricle volumes and ejection fraction. It helps clinicians by providing automated quantification of cardiac metrics from MR images, improving workflow efficiency and supporting clinical decisions when integrated into a DICOM viewer.
BrainInsight is a software product from Hyperfine, Inc. that automatically processes low-field MR brain images to label, segment, and measure brain structures. It provides physicians with annotated images, color overlays, and reports that help in evaluating brain anatomy and pathology more efficiently. The system is cloud-based and integrates with FDA-cleared PACS systems to seamlessly assist clinical workflows.
ProstatID is an AI software tool designed to assist radiologists by analyzing prostate MRI scans to identify and assess suspicious lesions that may indicate prostate cancer. It processes MRI images and provides detection overlays, lesion likelihood scores, 3D renderings, and a summary report to support diagnostic decisions for high-risk screening or diagnostic imaging.
The MAGNETOM Free.Max and MAGNETOM Free.Star are advanced magnetic resonance imaging (MRI) systems designed by Siemens. These devices produce detailed cross-sectional images of the body to help clinicians visualize internal structures and diagnose various conditions. Featuring new software and hardware enhancements, they provide improved imaging workflows, patient comfort with different bore sizes, and automated shoulder examination support, aiding physicians in accurate diagnosis and patient management.
CoLumbo is a medical imaging AI software tool designed to assist radiologists and spine surgeons by automatically segmenting and measuring lumbar spine features from MRI images. It highlights out-of-range measurements and generates reports for review and approval by clinicians, improving the efficiency and consistency of lumbar spine evaluation, but does not provide diagnosis.
The Swoop Portable MR Imaging System is a bedside portable MRI device designed for producing images of the internal structure of the head when full diagnostic exams are not feasible. It uses advanced AI-based image reconstruction algorithms to enhance image quality with reduced noise and blurring, aiding clinicians in diagnosis at the point of care, such as emergency rooms or critical care units.
AIR Recon DL is a deep learning-based software feature for GE Healthcare MRI systems that improves image quality by reducing noise and ringing artifacts in MRI images. It helps clinicians by enabling shorter scan times without losing image clarity, thus improving patient comfort and diagnostic accuracy across multiple anatomies and MR field strengths.
SwiftMR is a software device that automatically enhances MRI images by reducing noise and increasing image sharpness using deep learning algorithms. It supports brain, spine, and musculoskeletal MRI images and integrates with existing PACS systems to improve diagnostic image quality without interrupting clinical workflow.
The Achieva, Ingenia, Ingenia CX, Ingenia Elition and Ingenia Ambition MR Systems by Philips are advanced 1.5 and 3.0 Tesla MRI machines that produce high-quality cross-sectional images to help physicians diagnose various conditions. They include AI-enhanced features like SmartSpeed AI for faster image acquisition without loss of quality, aiding clinicians with quicker and improved diagnostic imaging.
Join hundreds of your peers who rely on RadAI Slice. Get the essential weekly briefing that empowers you to navigate the future of radiology.
We respect your privacy. Unsubscribe at any time.