rTOP is a teleoperation platform that allows medical professionals to remotely operate, assist, review, monitor, and standardize medical imaging and diagnostic devices. It supports video and USB interfaces for human interface devices, enabling read-only or full access control to these devices. The system facilitates remote collaboration and training across healthcare sites, helping clinicians efficiently share expertise and improve workflow, even when not physically present with the imaging equipment.
ZeTTA PACS is a software system designed for hospitals and diagnostic centers to receive, store, retrieve, and display medical images from various modalities such as CT, MRI, ultrasound, and X-ray. It helps healthcare professionals securely access and analyze diagnostic images over hospital networks, supporting efficient image interpretation and management but does not provide diagnostic decision-making functions.
CephNinja is a software tool designed for dental professionals to assist in orthodontic treatment planning and case diagnosis by enabling cephalometric tracing and analysis of lateral cephalometric x-ray images. It operates on macOS and iOS platforms, supporting 2D image visualization and detailed landmark digitization but requires interpretation by trained practitioners. The software is not intended for standalone diagnostic use, especially its mobile version.
SpectoMed (v1.0) is a software tool for medical professionals that enables real-time 3D visualization and analysis of CT and MRI images. It supports virtual and augmented reality interfaces to aid clinicians in preoperative planning and during surgery by providing realistic spatial views of patient anatomy along with measurement tools, enhancing diagnostic assessment and surgical preparation.
ApolloHipX is a software system designed to aid surgeons during Total Hip Replacement by precisely measuring the position and alignment of hip replacement components using radiological images. It integrates pre-operative 3D patient data with intra-operative 2D X-ray images to provide near-real-time assistive measurements, helping ensure the implants are correctly positioned relative to the patient's bone structures.
Brainomix 360 e-CTA is a software system used by trained medical professionals to analyze CT Angiography images of the brain. It processes these images to provide visualizations and quantitative measurements, such as vessel density asymmetry, specifically in the middle cerebral artery region. This helps clinicians assess cerebral blood vessel conditions and supports clinical decision-making for stroke and related conditions. The software uses AI/ML algorithms to improve vessel detection and image quality, and integrates with standard hospital imaging systems for ease of use.
Clarify DL is a software solution that uses deep learning integrated with iterative image reconstruction techniques to reduce noise and improve image quality in Nuclear Medicine bone SPECT images. It helps clinicians by enhancing image clarity which potentially improves diagnostic confidence and patient outcomes.
The aprevo® Digital Planning software is a semi-automated surgical planning tool used by trained medical personnel. It processes 3D spine models in conjunction with clinician inputs to produce 3D models of spinal corrections and anatomical measurements, which assist surgeons in pre-operative planning for spine surgeries.
Lightning Viewer is a web-based medical image viewing software that allows healthcare professionals to review, manipulate, and annotate diagnostic images from various modalities. It supports major desktop browsers, offers advanced visualization tools like 3D MPR and MIP, and integrates with PACS systems to facilitate efficient radiology workflows and aid clinicians in making diagnostic decisions.
Cercare Medical Neurosuite (CMN) Capillary Function with Virtual Expert is a software tool designed to assist trained medical professionals by providing advanced image processing and analysis of MRI and CT scans, specifically for brain perfusion and diffusion imaging. It helps visualize hemodynamic properties and tissue characteristics important for managing conditions like acute stroke by automatically identifying regions of interest and calculating volumetric and perfusion parameters, improving diagnostic and treatment decision workflows for clinicians.
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