Brainomix 360 e-ASPECTS is an AI-powered software that analyzes non-contrast CT brain scans to assist clinicians in detecting and characterizing ischemic brain tissue injuries, particularly in cases of acute stroke caused by MCA or ICA occlusions. It automatically provides an ASPECTS score, highlights affected brain regions, and visualizes voxel contributions to the score, helping clinicians make timely and more accurate assessments to guide stroke treatment.
The uCT ATLAS Astound with uWS-CT-Dual Energy Analysis is an advanced CT scanner designed to produce cross-sectional images of various body regions, including head, whole body, cardiac, and vascular areas. It integrates deep learning for image reconstruction to enhance image quality and reduce noise, and includes software for dual energy analysis to differentiate tissue types based on their chemical composition. This aids clinicians in lung cancer screening and detailed anatomical evaluation, supporting early diagnosis and treatment.
Rapid RV/LV is a medical imaging software designed to assist clinicians by automatically measuring the sizes of the right and left heart ventricles from CT pulmonary angiography scans. It provides annotated images and quantitative measurements to help assess right-heart strain, supporting clinical decision-making in cardiopulmonary conditions. The software uses machine learning to locate the ventricles and report their size ratio.
BriefCase is an AI-powered software by Aidoc Medical that automatically analyzes chest CT scans to identify cases with three or more acute rib fractures. It sends notifications with preview images to help radiologists prioritize these critical cases for faster review, enhancing clinical workflow and patient care without altering original images or providing primary diagnoses.
TruPlan Computed Tomography (CT) Imaging Software is designed to help clinicians visualize and measure the left atrial appendage and surrounding heart structures from CT scans. It supports pre-procedural planning and post-procedural evaluation of the left atrial appendage closure (LAAC) procedure by providing segmentation, image visualization, and measurement tools. Machine learning enhances segmentation and landing zone detection for improved workflow. The software aids in clinical decision-making but does not replace existing standard care procedures.
AVIEW is a medical imaging software by Coreline Soft that helps clinicians analyze CT scans of the lungs and heart. It automatically segments lung structures, characterizes lung nodules with detailed measurements, and provides calcium scoring of coronary arteries to assess cardiovascular risk. It integrates with AI-based CAD tools and offers cloud and mobile access, making it easier and faster for doctors to diagnose lung and heart conditions.
The Philips CT 3500 is a computed tomography X-ray system designed to produce detailed images of the head, whole body, cardiac, and vascular regions. It supports diagnostic imaging and low dose lung cancer screening using advanced imaging features and includes AI-based image reconstruction for improved image quality at reduced dose, helping clinicians with early detection and diagnosis.
BriefCase by Aidoc Medical, Ltd. is an AI-powered software that assists radiologists by automatically analyzing chest and abdominal CT scans to detect and flag suspected vertebral compression fractures. It helps prioritize medical images for review, enabling faster triage without altering original images or workflows, thus improving the efficiency of radiological diagnosis and patient care.
Cina is an AI-powered software designed to assist radiologists by automatically analyzing head CT and CT angiography images to detect intracranial hemorrhage and large vessel occlusion. It provides notifications and preview images to help prioritize and triage cases, enhancing workflow efficiency and potentially enabling faster diagnosis and treatment without replacing standard diagnostic procedures.
AVIEW RT ACS is a software solution developed by Coreline Soft Co., Ltd. that uses deep learning AI to automatically segment organs and generate contours from CT scans. It is intended to assist clinicians, particularly in radiation oncology, by providing initial organ contours for treatment planning, saving time and improving accuracy.
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