
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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Google AI Studio is an all-in-one environment designed for building AI-first applications with Google’s latest models. It supports Gemini, Imagen, Veo, and Gemma, allowing developers to experiment across multiple modalities in one place. The platform emphasizes vibe coding, enabling users to describe what they want and let AI handle the technical heavy lifting. Developers can generate complete, production-ready apps using natural language instructions. One-click deployment makes it easy to move from prototype to live application. Google AI Studio includes a centralized dashboard for API keys, billing, and usage tracking. Detailed logs and rate-limit insights help teams operate efficiently. SDK support for Python, Node.js, and REST APIs ensures flexibility. Quickstart guides reduce onboarding time to minutes. Overall, Google AI Studio blends experimentation, vibe coding, and scalable production into a single workflow.
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AliceVision
We create a comprehensive software solution for 3D reconstruction, photomodeling, and camera tracking. Our objective is to establish a robust software foundation that incorporates cutting-edge computer vision algorithms, which can be rigorously tested, analyzed, and reused. To ensure the delivery of advanced algorithms that meet the high standards of quality and reliability throughout the visual effects and filming workflow, it is essential to foster connections between academia and industry. Photogrammetry, the discipline focused on obtaining measurements from photographs, deduces the geometry of a scene using a collection of unordered images or videos. While photography captures a 3D scene onto a 2D surface, resulting in a loss of depth perception, photogrammetry seeks to reverse this effect. The comprehensive modeling of a scene is achieved by linking two computer vision techniques: "Structure-from-Motion" (SfM) and "Multi View Stereo" (MVS). This integrated pipeline enhances the accuracy and detail of the reconstructed 3D models. Ultimately, our mission is to push the boundaries of visual representation in various applications.
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ReconstructMe
ReconstructMe operates on a principle akin to that of a typical video camera—just maneuver around the object you wish to create a 3D model of. The scanning capabilities of ReconstructMe cater to a range of sizes, from small items like human faces to larger spaces such as entire rooms, and it functions effectively on standard computer hardware. Explore its various features and learn how to incorporate ReconstructMe into your projects through our robust SDK. Instead of merely generating a video feed, ReconstructMe provides a full 3D model in real-time as you navigate around the subject. Additionally, it is essential to be aware of the hardware requirements for optimal performance. ReconstructMe excels in capturing and processing color information from the scanned object, provided that the sensor is equipped to deliver the necessary color data. This versatility makes it a valuable tool for diverse modeling applications.
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