
TeleRay is an industry-first telehealth and image management platform. TeleRay cloud-based medical image management platform allows users to securely share images with professionals (specialists, referring, clinicians) and patients. The platform has many features, including the ability to import or convert DICOM or non DICOM images, query and HL7 connectivity. Integrate with any EMR, view images on an FDA approved viewer anywhere on any device.
Complete DICOM image migration is available- set up, training, and implementation is included. Live streaming and remote control of modalities are options and great for many use cases to place professionals virtually in a room any where.
TeleRay is the most secure platform with peer 2 peer health and data communication. You can use the app to access workflow tools like waiting rooms, multi-calls, call transfer and sharing of images. It's simple and affordable.
More than 3000 locations use our service, including 38 of the top medical centers in more than 20 nations. Get started today for free.
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Service Center by Office Ally is trusted by more than 80,000 healthcare providers and health services organizations to help them take complete control of their revenue cycle. Service Center can verify patient eligibility and benefits, submit, correct, and check claims status online, and receive remittance advice. Accepting standard ANSI formats, data entry, and pipe-delimited formats, Service Center helps streamline administrative tasks and create more efficient workflows for providers.
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Elements Spine SRS
Brainlab's Elements Spine Stereotactic Radiosurgery (SRS) represents a cutting-edge software solution aimed at refining the management of spinal metastases. This innovative workflow features automation at each phase, encompassing anatomical mapping, curvature adjustments, and target identification, which guarantees precision and uniformity down to submillimetric levels. A distinctive algorithm addresses variations in spinal curvature, thereby improving the accuracy of image fusion. The software employs automatic segmentation of spinal anatomy through a patented synthetic tissue model that effectively identifies and labels different spine levels for accurate dose calculations. Tools for outlining spinal tumors are included for Gross Tumor Volume (GTV) contouring, along with automatic suggestions for the Clinical Target Volume (CTV) and a cropped spinal canal object in alignment with International Spine Consortium Guidelines. Furthermore, the integration of AI-driven contouring solutions allows for the swift and dependable delineation of over 200 structures, including lymph nodes. This advancement not only streamlines the treatment process but also enhances overall patient outcomes in spinal cancer management.
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CubeVue
CubeVue software by CurveBeam AI offers an array of robust visualization features that significantly improve dataset analysis, providing users with intuitive tools for interpretation and treatment planning right at their fingertips. Among the basic visualization functionalities are options for zooming, panning, adjusting window levels, measuring distances and angles, saving case workups, comparing studies side by side, and exporting images in DICOM or JPEG formats, including 3D views. More advanced features include dynamic 3D renderings, multiplanar reconstruction (MPR) views, and SimX views. The dynamic 3D renderings provide the flexibility to rotate and visualize the volume from any perspective, allowing users to peel away layers of skin for clinical evaluation and scroll through the volume slice by slice. MPR views facilitate the on-the-fly rotation of planes, enabling users to create custom reformats instantly, synchronize navigation across coronal, axial, and sagittal slices, and modify slice thickness for tailored slabs. Additionally, SimX views produce digitally reconstructed radiographs derived from CT data, enhancing diagnostic capabilities and contributing to better patient outcomes. This comprehensive suite of visualization tools empowers healthcare professionals to make informed decisions during the treatment planning process.
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