RXNT
RXNT has spent over 25 years building cloud-based healthcare software designed for ambulatory practices and medical organizations of all sizes and specialties. Our innovative, AI-powered, and data-backed software solutions help practices grow, improve clinical efficiency, and streamline business operations—whether you're a solo provider, large healthcare organization, or billing services company.
With over 60,000 medical professionals across all 50 U.S. states relying on RXNT, our fully-integrated, ONC-certified software system includes Electronic Health Records (EHR), Physician Practice Management (PPMS), Medical Billing and Revenue Cycle Management (RCM), E-Prescribing (eRx), Scheduling, Patient Portal, mobile applications, and more. Every product works seamlessly as one system or can be used standalone, giving you flexibility to choose what works best for your practice.
Our SaaS-based Full Suite software solution integrates every area of RXNT through a secure, centralized database, enabling real-time data flow across clinical and administrative functions.
Whether you're modernizing your medical practice or scaling your healthcare business, RXNT delivers all-in-one technology to help you succeed. So far, users have transmitted over 125 million prescriptions and processed more than $7 billion in insurance claims.
Built for usability and accessibility, RXNT’s cloud-based software is available 24/7 from any device and includes mobile apps for iOS and Android. Simple, transparent pricing means no hidden fees, and every plan includes free implementation & training periods, data migration, storage, software updates, and U.S.-based customer service.
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Imorgon
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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MIStar
Apollo Medical Imaging Technology is an innovative software firm dedicated to improving medical imaging through cutting-edge image processing solutions designed for both clinical settings and research applications. Their flagship product, MIStar, is distinguished by its affordability and user-friendly interface, incorporating a vast array of advanced features and adaptable cross-modality solutions that meet the requirements of both clinicians and original equipment manufacturers. MIStar effectively supports multiple imaging modalities such as CT, MR, NM, and PET, and includes specialized components like CT Perfusion for analyzing strokes and tumors, DSC-MRI for stroke evaluations, and DCE-MRI for tumor diagnostics, along with DWI & ADC and DTI Fiber Tractography for comprehensive assessments. Furthermore, it features NM Renogram Analysis and Image Fusion functionalities, enhancing its utility as a holistic medical imaging tool. The software also guarantees efficient data handling and image input through DICOM networking, paired with a user-friendly clinical database that simplifies the anonymization and archiving of sensitive patient information. This comprehensive suite of capabilities establishes MIStar as an indispensable resource in contemporary medical imaging practices, making it a go-to solution for healthcare professionals striving for excellence in patient care and research.
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Elements Contrast Clearance Analysis
Brainlab's Elements Contrast Clearance Analysis utilizes MRI technology to effectively differentiate between areas of contrast clearance and accumulation in brain tumor imaging datasets. This sophisticated high-resolution technique significantly improves the insight required for ongoing assessments and decision-making in various medical specialties, such as radiosurgery, radiation oncology, neurosurgery, neuro-oncology, and neuroradiology. The process involves obtaining two standard 3D T1-weighted MRIs; the first is captured approximately five minutes after the injection of a standard contrast agent, followed by a second scan taken between 60 to 105 minutes later. By performing a subtraction of the first series from the latter, volumetric maps are generated that distinctly highlight regions of contrast clearance (depicted in blue) and those of contrast accumulation (marked in red). This information empowers healthcare professionals to more accurately gauge the impacts of radiation therapy against the possibility of tumor regrowth, thus facilitating more informed decisions regarding both initial and ongoing treatment strategies. Consequently, this analytical approach not only supports clinical evaluations but also plays a crucial role in enhancing the overall management of patient care in challenging medical scenarios, ultimately leading to improved patient outcomes.
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