BioTraceIO Precision (2.0) is a medical software that assists physicians by analyzing ultrasound images captured during liver ablation procedures to visualize and predict the ablation zone. It helps clinicians assess the effectiveness of radiofrequency or microwave ablation treatments by correlating ultrasound data with contrast-enhanced CT scans obtained post-procedure, improving decision-making while providing adjunctive visual information during and after treatment.
The EPIQ and Affiniti Series Diagnostic Ultrasound Systems by Philips are advanced ultrasound imaging systems used for a wide range of diagnostic applications across many body regions. The newly introduced Auto ElastQ software feature assists clinicians by automatically selecting the most stable frames and regions of interest for liver stiffness measurements with 2D shear wave elastography, making the diagnostic workflow easier and potentially more reliable. This helps healthcare professionals to assess liver tissue characteristics more efficiently during ultrasound exams.
IRISeg is a software application developed by Intuitive Surgical that utilizes machine learning to assist with the segmentation of contrast-enhanced kidney CT scans and generates 3D models for preoperative surgical planning and intraoperative display. It provides both automatic and manual tools to segment kidney structures, helping clinicians visualize anatomy more efficiently and accurately for better patient management.
DrAid™ for Liver Segmentation is a web-based AI software that assists healthcare professionals in analyzing liver images from CT scans. It generates semi-automated liver segmentation and allows physicians to manually refine these segmentations and identify lesions, aiding in evaluation and treatment planning without providing direct diagnosis.
The Portable Liver Elastography Ultrasound Diagnostic System (Liverscan C) is a medical imaging device used in clinical settings to non-invasively measure the stiffness and attenuation properties of liver tissue using ultrasound shear wave elastography. It aids clinicians in the diagnosis and monitoring of liver diseases by providing quantitative elastography metrics in a portable and easy-to-use system.
The Edison System is a non-invasive focused ultrasound device designed to mechanically destroy liver tumors using a non-thermal process called histotripsy. Integrated with diagnostic ultrasound imaging, it assists clinicians in precisely targeting and treating liver tumors without surgery, helping to improve liver cancer patient outcomes.
The Portable Digital Color Doppler Ultrasound System (SCN201D, SCN201L) by Telefield Medical Imaging is a portable, software-controlled ultrasound system designed for real-time visualization of anatomical structures and blood flow using B-mode, color Doppler, and pulsed wave imaging. It aids healthcare professionals by providing detailed imaging and fluid flow analysis across multiple body regions such as abdominal, musculoskeletal, and vascular areas, facilitating diagnosis at the point of care.
VitruvianScan (v1.0) by Perspectum Ltd is a software medical device designed to analyze MRI images to generate quantitative metrics and composite images for evaluating body fat and muscle composition. It assists trained healthcare professionals by providing non-invasive diagnostic information that supports clinical decisions regarding patient health and wellness.
Velacur is a portable ultrasound elastography device designed to assist clinicians in the assessment of liver diseases. It non-invasively measures liver tissue stiffness and fat content by analyzing shear wave speed and ultrasound attenuation, helping in the management of conditions such as hepatic steatosis. The device incorporates AI algorithms to improve image quality and accuracy of liver tissue characterization.
CADDIE is a cloud-based AI software that helps gastroenterologists detect suspected colorectal polyps during colonoscopy procedures by analyzing live video from endoscopy. It highlights potential lesions with visual markers to aid clinical decision-making, improving polyp detection without replacing the physician's judgment.
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