Jama Connect® is an innovative platform for product development that establishes Living Requirements™. It weaves together disparate activities related to testing and risk management, ensuring comprehensive compliance, mitigating potential risks, enhancing processes, and maintaining adherence to regulations. Organizations involved in developing intricate products, systems, and software can now effectively outline, synchronize, and implement their requirements. This streamlined approach significantly decreases the time and resources needed to demonstrate compliance and minimizes the need for rework. By selecting a user-friendly, adaptable solution accompanied by supportive services focused on fostering adoption, companies can confidently pave the way to their success. The platform’s design emphasizes collaboration, ensuring that all stakeholders are aligned throughout the product development lifecycle.
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Significantly improve the speed and quality of Radiology reporting by reducing unnecessary dictation, particularly for ultrasound and DEXA. Imorgon transfers modality measurements into Powerscribe/Fluency/RadAI merge fields/tokens, eliminating manual entry errors.
Imorgon's specialized services offer the following advantages:
- All measurements are always transferred (usually DICOM SR)
- Electronic worksheets capture findings and insert them into Powerscribe/Fluency/RadAI (rather than dictating from a worksheet)
- Worksheets with priors, calculators, and clinical decision support (TI-RADS, O-RADS, etc)
- Integrate into Epic or other EHRs
- Vendor neutral
- Support to ensure everything continues working
Significant improvement in the overhead of reporting with a quick ROI.
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OSSA 3D
OSSA 3D is a cutting-edge application designed for the iPad, which converts CT scans into accurate 3D models ready for printing. This intuitive software serves as a valuable tool in the medical 3D printing landscape, enabling healthcare practitioners to create precise anatomical visuals that assist in surgical preparation and improve patient understanding. With the OSSA3D app, users can easily produce intricate digital models from medical imaging data, even without prior experience in 3D modeling, using just their fingers. The mobile platform enhances virtual surgical planning, enabling orthopedic surgeons to carefully map out each procedural step for their patients, including tasks like osteotomy, fracture reduction, screw placement, and plate templating. The application features automatic plate contouring, which streamlines the templating process and allows for the design of custom plates tailored to individual patient needs. Furthermore, a variety of 3D implant options, particularly for hip and knee replacements, can be seamlessly imported and modified for personalized applications, thus boosting the effectiveness of surgical procedures. The OSSA 3D app not only simplifies the surgical preparation process, but it also plays a pivotal role in enhancing patient outcomes and fostering a more efficient healthcare experience. Ultimately, this innovative tool represents a significant advancement in the intersection of technology and medicine.
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ARVIS
ARVIS, an acronym for Augmented Reality Visualization and Information System, represents a cutting-edge wearable surgical guidance device designed to assist orthopedic surgeons in various procedures, including total hip, total knee, and unicompartmental knee arthroplasties. Utilizing strategically positioned cameras, this system captures the surgeon's viewpoint while monitoring reusable markers on the patient, thus providing accurate, real-time navigation support directly within the surgical area. By eliminating the dependence on pre-operative imaging, ARVIS not only streamlines surgical processes but also reduces costs when compared to traditional robotic systems. The innovative augmented reality eyepiece is equipped with stereo infrared tracking cameras and a 3D AR display, all powered by a robust mobile processor that allows surgeons to maintain their attention on the patient without needing to divert their gaze to separate screens. Additionally, ARVIS features hands-free gaze and voice control, minimizing line-of-sight issues and seamlessly integrating into established surgical workflows, which enhances the overall surgical experience. As advancements in technology continue to emerge, systems like ARVIS are likely to lead to even more sophisticated surgical methods and improved outcomes for patients, reinforcing the importance of innovation in the medical field. Such developments highlight the potential for augmented reality to transform not only orthopedic surgery but also various disciplines within healthcare.
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