Merge PACS is a software system that helps medical professionals view, analyze, and manage images from various medical imaging modalities such as CT, MRI, PET, ultrasound, and mammography. It supports diagnostic reading, reporting, and communication workflows, enabling clinicians to efficiently handle patient imaging studies and related data. It includes advanced image manipulation tools and workflow management features to assist radiologists and other medical staff.
Syngo.Via RT Image Suite is a software tool designed to help clinicians visualize, manipulate, and contour medical images from various imaging modalities such as CT, MRI, and PET. It supports 3D and 4D image visualization and assists with the segmentation of tumors and organs-at-risk to aid in radiation therapy planning and response assessment. The software incorporates AI techniques, including deep learning-based contouring, to improve the accuracy and efficiency of treatment preparation, thereby enhancing patient care in radiation therapy.
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.
BrainScope TBI is a portable, non-invasive device that assists clinicians in evaluating patients with mild traumatic brain injury and concussion by analyzing brain electrical activity through EEG along with cognitive tests and clinical symptoms. It helps identify the likelihood of structural brain injury and assesses brain function, supporting decisions about the need for further imaging like CT scans.
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.
The Zio XT and Zio AT ECG Monitoring Systems by iRhythm Technologies, Inc. analyze continuous ECG data collected via wearable patches and generate detailed reports on cardiac events. These systems help clinicians diagnose heart rhythm abnormalities by providing comprehensive, beat-to-beat ECG analysis over long monitoring periods for patients with or without symptoms.
Biovitals Analytics Engine is a cloud-based software that analyzes continuous biometric data from sensors measuring heart rate, respiratory rate, and activity in ambulatory patients. It creates a personalized biometric signature for each patient and computes a Biovitals Index to track changes in vital signs over time, providing clinicians with additional insight for routine monitoring without replacing traditional vital sign monitoring.
EyeBOX is an eye-tracking device designed to help diagnose concussion by measuring and analyzing eye movements in patients within one week of a head injury. It uses near-infrared cameras to track gaze positions and an AI-driven algorithm to detect subtle changes in eye movements associated with concussion, aiding clinicians in neurological assessment.
KIDScore D3 is an AI-based decision support tool designed to aid embryologists in assessing the viability of embryos on Day 3 by scoring their likelihood to develop to the blastocyst stage. It integrates with the EmbryoScope timelapse incubator systems and helps clinicians select embryos for transfer, freezing, or continued development, enhancing decision-making in assisted reproduction procedures.
The physIQ Heart Rhythm and Respiration Module is a software device that analyzes ECG signals and movement data to calculate heart rate, heart rate variability, detect atrial fibrillation, and determine respiration rate. It helps clinicians remotely monitor cardiac and respiratory health in adult patients outside of critical care settings, enhancing patient care through advanced signal processing and automated analysis.
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