Vitesse (5.0) is a treatment planning software designed for medical professionals to assist in planning, guiding, optimizing, and documenting high-dose-rate brachytherapy procedures. It supports real-time ultrasound guidance, image import and export via DICOM standards, and visualization of complex imaging data including PET and MR scans. This software helps clinicians create and manage radiation treatment plans accurately and efficiently, improving patient care in radiation therapy.
MIM – Symphony HDR Fusion is an advanced medical imaging software designed to assist trained clinicians with processing and analyzing multiple imaging modalities such as CT, MRI, PET, and ultrasound. It supports fusion and registration of images, contouring of tumors and tissues, and planning for high dose rate brachytherapy treatments. By integrating image visualization, catheter digitization, and dose planning, it helps clinicians optimize radiation therapy for cancer patients safely and effectively.
LungVision is an AI-powered software system that helps clinicians navigate tools within the lungs during procedures. It combines previously acquired 3D CT images with real-time fluoroscopic X-ray images to provide detailed guidance for targeting lung lesions, thus enhancing the precision of pulmonary interventions.
Preview Shoulder is a software tool designed to help orthopedic surgeons plan shoulder surgery using 3D models created from CT scans. It allows surgeons to place digital implants within the shoulder anatomy and generate detailed surgical plans to improve surgical outcomes. This software is used as a pre-operative planning aid and is intended for adult patients only, not for diagnostic purposes.
The uMI Panorama is a PET/CT system that provides combined metabolic and anatomical imaging to assist healthcare professionals in detecting, diagnosing, staging, and managing various diseases including oncology, cardiology, and neurology conditions. It supports both PET and standalone CT imaging and can be used for low dose CT lung cancer screening, enhancing patient care with fused functional and anatomical images.
Brainlab Elements is a suite of software applications that process and analyze medical image data from various modalities to assist clinicians in planning surgeries and radiation treatments. It offers tools for image registration (fusion), segmentation (contouring), diffusion tensor imaging (fibertracking), blood oxygen level dependent MRI analysis (BOLD MRI mapping), and cerebrovascular image fusion (Image Fusion Angio). These capabilities help improve precision and understanding of patient anatomy and function during clinical procedures.
ViewFinder Software Version 1.1 by Elaitra Ltd is a specialized software tool designed for clinicians to review digital breast tomosynthesis images. It dynamically matches tissue across different breast views using AI to reduce cognitive load, helping radiologists to compare images more efficiently and accurately during breast cancer screening and diagnosis.
EndoNaut is a software system designed to aid physicians during fluoroscopy X-ray guided procedures by overlaying preoperative 3D vascular anatomy onto live fluoroscopy images. It assists in accurately positioning surgical tools and endovascular devices in the chest, abdomen, pelvis, neck, and lower limbs for treatments like aneurysm repair and arterial embolization. This image fusion and navigation tool enhances procedural accuracy, although it does not replace the surgeon's judgment and requires real-time imaging confirmation before device deployment.
EndoNaut is a medical imaging software system that helps doctors during endovascular procedures by overlaying three-dimensional vessel images from preoperative scans onto real-time two-dimensional fluoroscopy images. This assists clinicians in accurately positioning catheters, guidewires, and stents within blood vessels in areas like the thorax, abdomen, pelvis, and lower limbs, improving procedural outcomes and patient care.
The LungVision System is a medical imaging software that helps doctors navigate tools inside the lungs during procedures. It works by segmenting CT scan data and overlaying it on live X-ray images to guide catheter placement accurately, improving procedural safety and effectiveness.
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