Enterprise Storage & Routing
Hybrid Cloud Architecture: Intelligent, tiered storage combining lightning-fast local caches with secure, scalable object storage (AWS S3) for long-term archiving.
High-Speed Database Engine: Built on advanced PostgreSQL architecture for instantaneous metadata querying, study indexing, and rapid search across massive institutional archives.
Intelligent DICOM Routing: Rule-based routing engines that automatically forward studies to specific workstations or reading groups based on Modality, Application Entity Title (AET), or referring physician.
Clinic-Level Auto-Routing: Configure automated rules to route all incoming studies from a specific clinic/hospital directly to designated DICOM nodes.
Automated Ingest Transcoding: Advanced backend controls that automatically transcode incoming compressed or uncompressed DICOM data, complete with adjustable lossy quality settings to optimize storage.
Manual DICOM Push: Manually route and push patient studies directly to external PACS nodes and workstations by selecting destination AE Titles.
Data Ingestion & Metadata Control
Web-Based Drag-and-Drop Upload: Seamlessly ingest studies by dragging raw .dcm files or .zip archives directly into the web interface.
Non-DICOM Ingestion Engine: Upload standard clinical photography and non-DICOM image formats (JPEG, PNG) and automatically convert them into fully compliant DICOM studies with auto-generated Accession and Study IDs.
Native DICOM Tag Editing: Interrogate, view, and directly edit raw DICOM tags (Patient ID, Accession Number, etc.) within the web interface to fix broken metadata from older modalities.
Flexible Study Export: Download complete studies as raw ZIP files, securely anonymized ZIP files, or as ISO images ready for native CD/DVD burning.
Clinical File Manager: Attach external non-DICOM files and clinical documents directly to a patient's study for centralized record-keeping.
Unified Workflow & High-Volume Queuing
Real-Time Radiologist Dashboards: Clean, state-driven queues (Pending, In Process, Closed) that give reporting physicians instant visibility into their daily workload.
Rapid Reading Queue: A specialized reporting interface featuring seamless "Next" and "Previous" navigation, allowing radiologists to power through a stack of assigned cases without returning to the main dashboard.
Centralized Assignment Engine: A dedicated administrative interface to query unassigned cases and securely assign, share, or transfer study ownership to specific reporting physicians network-wide.
Multi-Parameter Study Search: Highly granular query engine allowing filtering by Patient ID, Accession Number, Modality, Date Ranges, Reporting Status, and specific Clinics/Hospitals.
Custom Keyword Tagging: A flexible tagging system allowing users to assign specific keywords to studies for easy retrieval during research, education, or peer review.
Institution Reassignment: Instantly reassign institution tags to move cases between different clinics, hospitals, or veterinary centers within the network.
Clinical Decision Support & Explainable AI
Chest X-Ray Pathology Risk Dashboard: Rapid multi-pathology screening that evaluates specific conditions (Atelectasis, Cardiomegaly, Mass, Edema, Fibrosis, etc.) and plots them on an intuitive Healthy-to-Risk probability scale.
Interactive Grad-CAM Heatmaps: Click "Explain" on any high-risk AI finding to instantly overlay visual heatmaps onto the radiograph, highlighting the exact anatomical regions driving the AI's prediction. Features toggles for raw gradients and color inversion.
Automated AI Execution: Microservices natively listen to incoming DICOM streams, executing relevant models automatically in the background before the radiologist opens the study.
Auto Segmentation & 3D Modeling
104+ Anatomical Structures: Out-of-the-box, zero-click automated contouring for skeletal elements, major vascular networks, thoracic organs, and abdominal viscera.
3D Volumetric Rendering: Transforms standard 2D CT and MRI slices into high-fidelity, interactive 3D surface meshes in seconds for surgical planning and orthopedic modeling.
Neuro-Oncology Precision: Specialized 3D brain tumor segmentation mapping for precise boundary detection and neurological volume analysis.
Advanced Diagnostic Viewer Capabilities
Multi-Planar Reconstruction (MPR): Seamlessly reconstruct 3D volumetric data into synchronized coronal, sagittal, and axial views for comprehensive spatial evaluation.
PET-CT Fusion & Molecular Imaging: Dedicated hybrid viewing modes for PET-CT registration, enabling precise overlay of metabolic activity onto anatomical structures.
Advanced Thresholding & Segmentation Tools: Native viewer tools for volumetric thresholding and quantitative analysis, including support for Total Metabolic Tumor Volume (TMTV) workflows.
Comprehensive Measurement Toolkit: Instant access to dynamic ROI calculations, Hounsfield Unit (HU) mapping, angle geometries, and distance measurements directly in the browser.
Native Dark Mode: A system-wide Dark Mode toggle designed to dramatically reduce radiologist eye strain in low-light reading rooms and diagnostic centers.
Advanced Reporting & Templating
Built-in Template Designer: A native rich-text editor allowing administrators and radiologists to create, save, and load custom reporting macros and standard templates.
Split-Screen Dictation Editor: A built-in report editor that docks alongside the diagnostic viewer, eliminating the need to toggle between external word processors and the PACS interface.
Custom Brand Integration: Embed hospital or clinic logos directly into the diagnostic reports for professional, white-labeled output.
Report Addendum Support: A dedicated module for appending post-finalization notes and addendums to locked reports, ensuring compliance and accurate clinical tracking.
Automated Study Link Embedding: Automatically generates and embeds secure, zero-footprint web viewer links directly into the final report for referring physicians.
Secure Study Sharing
Granular Sharing Controls: Securely share studies via email with highly specific permissions. Administrators can toggle "Allow Online Viewing," "Allow Downloading," and "Attach Report" on a case-by-case basis.
Time-Expiring Access: Protect patient data by setting strict, automated expiration dates and times for shared study links.
Comprehensive Patient Sharing: Share an isolated, single study or bundle and share all historical studies for a specific patient in a single encrypted link.
System Administration & Analytics
Deep PACS Configuration Engine: A centralized dashboard to control the core Orthanc server, DICOM thread counts, concurrent jobs, and HTTP server ports directly from the web UI.
Multi-Tenant Management: Manage complex networks by adding, modifying, and isolating specific clinics and hospital profiles within a single PACS deployment, complete with customized timezones and reporting notifications.
Automated Business Intelligence: Generate detailed operational analytics, including Modality-Wise Breakdown Reports, Storage Usage Reports, and Radiologist Production Reports. Data can be exported directly to Excel for financial auditing.
Security & Audit Logging: A dedicated User Last Login Report to track account activity and identify inactive accounts for strict compliance auditing.
DICOM Modality Management: Add and configure external modalities with specific permission scopes (Echo, Find, Move, Store) and perform live web-based Echo testing to verify network connectivity.
Teleradiology & Remote Workflow
Zero-Footprint Web Viewer: Diagnostic-quality image rendering directly within the browser, requiring no local software installations or heavy client plugins.
Optimized Bandwidth Streaming: Utilizes lossless progressive compression and intelligent caching, allowing remote radiologists to instantly scroll through massive 3D volumetric series over standard internet connections.
REST API Automation: Comprehensive web APIs designed for deep, bidirectional integration with existing Hospital Information Systems (HIS) and Radiology Information Systems (RIS).
Multi-Specialty & Veterinary Expansion
Native Veterinary PACS Support: Fully equipped to handle complex veterinary imaging data, effortlessly organizing cases across small animal and exotic patient profiles.
Universal Modality Support: Uncompromised rendering quality across the entire clinical spectrum, from rich 3D CT/MRI volumes to high-framerate ultrasound (US) M-mode and Doppler captures.
Deployment, Security & Compliance
Containerized Microservices: Isolated, Docker-based deployment for all AI models and database engines, ensuring rapid deployment, high stability, and seamless updates.
True Omnichannel Deployment: Available as a fully managed SaaS cloud platform, a hybrid network, or a 100% offline, air-gapped on-premise installation for maximum data sovereignty.
Strict Role-Based Access Control (RBAC): A highly detailed permission engine dictating exactly which pages, modalities, and clinics specific users can access, complete with swift profile-cloning tools.
Granular Deletion Controls: Maintain compliance and database cleanliness by choosing to safely delete an entire study or just the associated report.
End-to-End Encryption: All DICOM pixel data and patient metadata are encrypted at rest and in transit, built from the ground up to meet strict global healthcare compliance standards.

