
TeleRay stands out as the pioneering telehealth and image management solution in the industry. This cloud-based platform enables users to safely exchange medical images with a variety of professionals, including specialists, clinicians, and referring doctors, as well as with patients. Its robust feature set allows for the importation and conversion of both DICOM and non-DICOM images, along with providing query capability and HL7 connectivity. Additionally, it seamlessly integrates with any electronic medical record (EMR) system, and users can access images via an FDA-approved viewer on any device, regardless of location.
The platform offers comprehensive DICOM image migration services, which encompass setup, training, and implementation support. Options for live streaming and remote control of imaging modalities are also available, allowing professionals to effectively collaborate from virtually anywhere.
TeleRay prioritizes security with peer-to-peer health and data communication, and its application includes useful workflow tools such as waiting rooms, multi-call capabilities, call transfers, and image sharing, making it user-friendly and budget-conscious.
Currently, over 3,000 locations utilize our services, including 38 leading medical centers across more than 20 countries, demonstrating our extensive reach and reliability. Discover the benefits of TeleRay by signing up for a free trial today.
Learn more

Dragonfly acts as a highly efficient alternative to Redis, significantly improving performance while also lowering costs. It is designed to leverage the strengths of modern cloud infrastructure, addressing the data needs of contemporary applications and freeing developers from the limitations of traditional in-memory data solutions. Older software is unable to take full advantage of the advancements offered by new cloud technologies. By optimizing for cloud settings, Dragonfly delivers an astonishing 25 times the throughput and cuts snapshotting latency by 12 times when compared to legacy in-memory data systems like Redis, facilitating the quick responses that users expect. Redis's conventional single-threaded framework incurs high costs during workload scaling. In contrast, Dragonfly demonstrates superior efficiency in both processing and memory utilization, potentially slashing infrastructure costs by as much as 80%. It initially scales vertically and only shifts to clustering when faced with extreme scaling challenges, which streamlines the operational process and boosts system reliability. As a result, developers can prioritize creative solutions over handling infrastructure issues, ultimately leading to more innovative applications. This transition not only enhances productivity but also allows teams to explore new features and improvements without the typical constraints of server management.
Learn more
Dragonfly 3D World
Dragonfly 3D World, created by Object Research Systems (ORS), is an advanced software platform designed for the visualization, analysis, and collaborative exploration of multidimensional images applicable to numerous scientific and industrial sectors. This comprehensive platform features a wide range of powerful tools that support the visualization, processing, and interpretation of imaging data in 2D, 3D, and 4D formats, sourced from modalities such as CT, MRI, and electron microscopy, among others. Users can delve into complex structures through interactive approaches, including real-time volume rendering, surface rendering, and orthogonal slicing. The incorporation of artificial intelligence in Dragonfly allows users to apply deep learning methodologies for image segmentation, classification, and object detection, greatly improving the accuracy of their analyses. Furthermore, the software boasts advanced quantitative analysis capabilities that enable researchers to perform region-of-interest studies, conduct measurements, and execute statistical evaluations. The intuitive graphical interface of Dragonfly aids researchers in building reproducible workflows and streamlining batch processing, thereby enhancing both consistency and productivity in their tasks. With its extensive functionalities and user-friendly design, Dragonfly 3D World is an indispensable tool for professionals eager to expand the frontiers of imaging analysis in their fields. This innovative platform not only facilitates research but also fosters collaboration among scientists and industry experts, making it a cornerstone for future advancements.
Learn more
ARIA Clinical Solutions
The ARIA® oncology information system is tailored to support both medical and radiation oncology, including proton therapy, ensuring a broad spectrum of functionalities. It facilitates the review and management of clinical images, prescriptions, lab results, quality assurance data, and patient outcomes, among other important information. Cancer staging is automatically aligned with AJCC guidelines, and the system offers flexible management options for toxicities. With a strong focus on interoperability, ARIA enables seamless use of patient data across a variety of devices and platforms. It provides robust support for HL7 and DICOM standards, which simplifies the transfer of patient information between different healthcare facilities. By granting immediate access to patient data, the system empowers healthcare teams to improve their planning capabilities and make real-time adjustments. Additionally, ARIA enhances the effectiveness of image-guided treatment techniques by efficiently utilizing radiographic, fluoroscopic, and cone-beam CT images. The system also keeps track of essential activities for evidence-based Pay-for-Performance programs, all while maintaining compliance with HIPAA regulations. Moreover, ARIA systematically organizes and stores patient data and images, ensuring that healthcare teams remain well-informed and focused on delivering optimal care. This all-encompassing approach not only streamlines workflows but also plays a significant role in improving patient outcomes, ultimately leading to a more effective oncology care experience.
Learn more