Keep patient video on premises
Analysis runs on the edge system inside the clinical network. Patient video does not leave the room to reach a model.

Solutions — Medical imaging
Deploy capture, recording, and on-device analysis across operating rooms, endoscopy suites, and ultrasound carts without sending patient video off premises.
Analysis runs on the edge system inside the clinical network. Patient video does not leave the room to reach a model.
DICOM format support, PACS and WORKLIST server integration, and HL7 services ship in the SDK — interoperability is not an export step bolted on later.
Live surgical video rides SkyLink X, YUAN's proprietary low-latency transmission protocol. Latency figures await publication.
Start with the camera job. Pair the required SDK modules with real YUAN hardware.
Record procedure video with DICOM format support and PACS and WORKLIST server integration, so the file lands where the hospital system expects it.
Exchange patient and order information over the five HL7 services in the SDK: Patient Query QRY_A19, Patient Query ADR_A19, Laboratory Results ORU_R01, Patient ADT Management, and Clinical Orders OMG_O19.
Carry live surgical video over SkyLink X, YUAN's proprietary low-latency transmission protocol. Published latency figures are pending.
Capture HDMI or 12G-SDI output from ultrasound and endoscopy systems through SC710N1 or SC750N1 M.2 capture cards mounted in the edge system.
Run detection, segmentation, and feature matching against live imaging feeds on the edge system, with video staying inside the clinical network.
Capture → process → output
An ultrasound, endoscopy, or room-camera source enters through SC710N1 or SC750N1 M.2 capture cards mounted in the edge system. NexVDO Capture moves frames into the processing path. Record writes the procedure file with DICOM format support, and PACS, WORKLIST, and HL7 integration connects the recording to hospital information systems. Stream carries live surgical video over SkyLink X. HSB Holoscan bridges convert professional video into NVIDIA Holoscan-ready streams where that path applies.

Published ingest, interoperability, and hardware facts for a clinical imaging pipeline. Unpublished detail remains marked.
| Pipeline job | Published path | Hardware | SDK module | Status |
|---|---|---|---|---|
| Source ingest | HDMI, 12G-SDI from imaging systems | SC710N1 / SC750N1 M.2 capture | Capture | Published |
| Procedure recording | DICOM format, PACS, WORKLIST | VPP6N0-S-W NX | Capture + Record | Published |
| Hospital messaging | HL7: QRY_A19, ADR_A19, ORU_R01, ADT, OMG_O19 | VPP6N0-S-W NX | Capture | Published |
| Low-latency delivery | SkyLink X | VPP6N0-S-W NX | Stream | Latency figures — pending publication |
| On-device analysis | Detection, segmentation, feature matching | VPP6N0-S-W NX | Analysis | Published |
| Holoscan sensor bridging | HDMI / 12G-SDI to NVIDIA Holoscan streams | HSB Holoscan bridges | Capture | Bridge SKU scope — pending publication |
Published material stays with the supported evaluation path. Missing artifacts stay visible as honest states.
Capture hardware, edge systems, and SDK modules arranged by pipeline job.
A signal-to-output architecture for this vertical.
Module guides, support routes, and integration notes.
You are building your own device — NexVDO SDK plus YUAN hardware inside your product.
Start at the SDK →You need an integrated stack delivered and supported — hardware, software, and integration through Neteon.
Request scoping →Included free with YUAN hardware, delivered through a supported evaluation path — engineer answer within 48 hours.
Request an evaluation and get a substantive answer — from an engineer — within 48 hours. Evaluation hardware ships from U.S. stock.
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