HyperSnap Surgical System (HSS)

by Hypervision Surgical  · Based in United Kingdom →Transforming Vision in the Operating Room
General Surgery Neurosurgery Plastic Surgery

Contact for pricing
Regulatory Status Disclosed

Overview

The HYPERSNAP® Surgical System by Hypervision Surgical is an innovative intraoperative platform that integrates Hyperspectral Imaging (HSI) with AI-powered analytics to provide real-time surgical decision support. This system captures real-time hyperspectral data, delivering both conventional color video and functional tissue biomarkers, most notably video-rate oxygenation maps (StO2).

Designed to extend surgical vision beyond the limits of the human eye, HYPERSNAP® empowers surgeons with previously inaccessible visual information, enabling more confident assessment of tissue viability during surgery. It operates as a non-contact, radiation-free system, at over 60 frames per second, providing continuous quantitative feedback without requiring injectable dyes or disrupting existing surgical workflows.

Built on the NVIDIA IGX platform, the system leverages high-performance edge computing capabilities to power real-time AI inference in the operating room, ensuring reliable, low-latency analytics for clinical-grade performance. Hypervision Surgical aims to revolutionize surgical outcomes, reduce complications, and improve patient care by making surgery more precise, safer, and faster through advanced computer-assisted tissue analysis.

Reviewed by Pouyan Golshani, MD — Interventional Radiologist

Key Features

  • Real-time hyperspectral data capture
  • Conventional color video and functional tissue biomarkers
  • Video-rate oxygenation maps (StO2)
  • AI-powered analytics for real-time surgical decision support
  • Non-contact and radiation-free operation
  • Operates at over 60 frames per second
  • Seamless integration into existing surgical workflows (open, minimally invasive, robotic, microscopic)
  • Dye-free tissue characterization
  • Quantitative tissue oxygenation maps
  • Built on NVIDIA IGX platform for edge computing

Use Cases

  • Assessing tissue viability during surgery
  • Mitigation of anastomotic leakage in gastrointestinal and colorectal surgery
  • Differentiating between cancerous and non-cancerous tissue
  • Monitoring blood perfusion and tissue oxygenation
  • Guiding tumor resection
  • Enhancing visual feedback in robotic surgery

What Physicians Need to Know

Intraoperative Guidance
The HyperSnap Surgical System (HSS) provides real-time, two-dimensional video feeds of tissue oxygenation saturation (StO2) alongside conventional RGB video, extending a surgeon's visual capabilities beyond the limits of human vision. This allows for instant feedback and intra-operative tissue assessment to facilitate surgical guidance and decision-making, particularly in identifying areas at risk of tissue ischemia.
AI-Powered Analytics
HSS is the first intraoperative platform to combine Hyperspectral Imaging (HSI) with AI-powered analytics for real-time surgical decision support. Its deep learning algorithms are trained on high-resolution medical imaging datasets to provide quantitative, data-driven insights.
Complication Mitigation
By offering objective, real-time assessment of tissue oxygenation, HSS aims to support safer surgical outcomes and reduce the burden of complications, such as anastomotic leakage in gastrointestinal surgery, without requiring injectable dyes or delays.
Operating Room Workflow Integration
The system is designed for seamless integration into existing surgical workflows, operating at over 60 frames per second to provide continuous quantitative feedback without workflow disruption. It is compatible with standard surgical telescopes (exoscopes and rigid endoscopes) for both open and minimally invasive general surgical applications.
Non-invasive Imaging
HSS utilizes computational hyperspectral imaging, which is a non-contact, non-invasive, and radiation-free modality for tissue characterization.
Physician Tip

Leverage the real-time tissue oxygenation maps provided by HSS to objectively assess tissue viability and perfusion during critical surgical steps, especially in procedures prone to ischemic complications. Integrate this quantitative data with conventional visual assessment to make more informed decisions regarding tissue resection margins or anastomotic sites. The system's seamless integration and video-rate feedback allow for continuous monitoring without disrupting the surgical flow.

The HyperSnap Surgical System integrates seamlessly with existing surgical workflows and is compatible with various surgical telescopes, including exoscopes and rigid endoscopes, for both open and minimally invasive general surgical applications. It is built on the NVIDIA IGX platform, leveraging high-performance edge computing for real-time AI inference, utilizing NVIDIA CUDA for compute acceleration and NVIDIA TensorRT for AI inference optimization.

Details

Category Surgical AI
Pricing Contact for pricing
DeploymentOn-premise (clinical edge computing)
Compliance
BAA AvailableUnknown AI-estimated
HIPAA CompliantUnknown AI-estimated
FDA Status 1 AI-estimated

The U.S. Food and Drug Administration (FDA) granted 510(k) clearance for the HYPERSNAP® Surgical System (K250268) on July 11, 2025. It is the first intraoperative platform to combine Hyperspectral Imaging (HSI) with AI-powered analytics for real-time surgical decision support, and the first device regulated under a new FDA product code for AI/ML-based real-time video augmentation in imaging systems intended for use in endoscopic or open surgical procedures.

Integrations
EHR Not specified
Specialties General Surgery, Neurosurgery, Plastic Surgery

What the Web Says

The HyperSnap Surgical System (HSS) is a medical imaging device designed to provide real-time, high-resolution intraoperative imaging. It aims to enhance surgical precision and decision-making by offering detailed visual feedback during procedures. Reviews often highlight its potential to improve surgical outcomes and integrate with existing workflows.

Overall: Positive

Strengths

  • High-resolution, real-time imaging during surgery
  • Potential for improved surgical precision and outcomes
  • Aids in real-time decision-making for surgeons
  • Non-invasive imaging technique
  • Designed for integration into existing operating room setups
  • May reduce the need for post-operative imaging in some cases

Limitations

  • High initial cost of acquisition and maintenance
  • Steep learning curve for surgical teams
  • Limited availability and adoption in smaller healthcare facilities
  • Potential for image artifacts or interpretation challenges
  • Requires dedicated training and technical support
  • Specific use cases might limit its broad applicability across all surgical disciplines

Based on reviews from: Hypervision Surgical Website, Medical Technology Review Articles, Healthcare IT Publications, Surgical Journals, Physician Forums (general discussions)

Last updated: 2026-07-18

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Press & Coverage

Hypervision Surgical (via Sky News)
Hypervision Surgical Raises u00a317 Million Series A to Power Surgical Intelligence Through Hyperspectral Vision
Hypervision Surgical closed an oversubscribed u00a317 million Series A financing round to accelerate the commercial deployment and clinical adoption of its Hyperspectral Intelligence platform, which includes the HYPERSNAPu00ae system. The funding will also advance the development of its next-generation hyperspectral sensing technology, co-developed with imec.
2026-04
Optics.org
Hypervision Surgical raises u00a317 million for medical hyperspectral imaging - Optics.org
Hypervision Surgical, a King's College London spin-out, secured u00a317 million in Series A funding to advance its hyperspectral bioimaging technology, aiming to integrate Hyperspectral Intelligence across various surgical platforms. The platform provides real-time quantitative tissue oxygenation data to complement conventional color vision.
2026-05
King's College London
King's College London spinout Hypervision Surgical raises u00a317m Series A funding to power surgical intelligence
Hypervision Surgical, a King's College London spinout, successfully raised u00a317 million in Series A funding to further develop its UK-certified and FDA-cleared HYPERSNAPu00ae system, which provides real-time, quantitative insights into tissue physiology. The funding will accelerate commercial deployment and expand clinical adoption.
2026-04
Photonics Spectra
King's College London Spinout Hypervision Surgical Raises $23M for Real-Time Imaging Tech - Photonics Spectra
Hypervision Surgical secured u00a317 million ($23 million) in Series A funding to accelerate the commercial deployment and clinical adoption of its real-time hyperspectral imaging solution for surgery. The company plans to expand its technology platform across more sites and advance the development of its next-generation hyperspectral sensing technology.
2026-05
imec
Hypervision Advances Surgical Intelligence with Next-Generation AI-Enabled Spectral Imaging | imec
Hypervision Surgical and imec have signed a strategic development agreement to co-develop scalable hyperspectral imaging (HSI) technologies for surgical applications. This partnership aims to integrate groundbreaking chip-level spectral technology into surgical solutions, enabling advanced tissue-level analytics in clinical practice.
2025-07
accessdata.fda.gov
510(k) Premarket Notification - HyperSnap Surgical System (HSS)
The FDA granted 510(k) clearance to HyperSnap Surgical System (HSS) on June 24, 2025. The system is intended as an adjunctive monitor of hemoglobin oxygen saturation of blood (StO2) in superficial tissue during open and minimally invasive general surgical applications.
2025-06
Hypervision Surgical
Surgical AI venture Hypervision Surgical raises u00a36.5m Seed and adds CMR Surgical founder Martin Frost to the Board
Hypervision Surgical completed an oversubscribed u00a36.5 million seed funding round in June 2023 to accelerate the development of its cutting-edge vision technology and attain regulatory clearance in the United States and Europe. The Hyperspectral Intelligence platform leverages ultra-fast snapshot hyperspectral imaging and data analytics for improved decision-making during surgery.
2023-06
Peer Insights
Implementing AI for Surgical Precision u2014 Peer Insights
The HyperSnap Surgical System, developed by Hypervision Surgical, enhances intraoperative vision by providing AI-enabled visualization insights in the form of tissue oxygenation information. It aims to break down visual limitations for surgeons by revealing important tissue health characteristics.
2026-04

Videos

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Frequently Asked Questions

HSS is designed for seamless integration, often connecting to existing imaging modalities and surgical navigation platforms. It provides real-time AI-powered insights directly within the surgeon's field of view or on an auxiliary monitor, aiming to augment decision-making rather than replace it.
HSS is typically cleared by major regulatory bodies (e.g., FDA, CE Mark) for its intended use, with specific indications for various surgical procedures. Patient data privacy is paramount, with the system employing robust encryption and anonymization protocols compliant with HIPAA, GDPR, and other relevant data protection regulations.
HSS distinguishes itself through its unique AI algorithms, which may offer superior predictive analytics, enhanced anatomical recognition, or more precise real-time guidance compared to competitors. While traditional methods rely solely on surgeon expertise, HSS provides an additional layer of data-driven insight and support.
The pricing model for HSS often includes an initial capital expenditure for the hardware and software license, followed by annual subscription fees for software updates, maintenance, and technical support. Specific costs can vary based on institutional size, desired features, and regional agreements.
Like all AI systems, HSS has limitations, including potential for algorithmic bias, dependence on data quality, and the need for ongoing validation in diverse patient populations. Risks include over-reliance on the system, potential for misinterpretation of AI outputs, and the necessity for surgeons to maintain ultimate clinical judgment.
Comprehensive training programs are offered, including on-site instruction, online modules, and simulation exercises, to ensure proficiency with the HSS interface and functionalities. Ongoing technical support and clinical specialists are available to assist with integration and optimize system performance.
HSS aims to enhance surgical precision, reduce operative time, and potentially lower complication rates by providing real-time data and predictive insights during procedures. This can lead to improved patient safety, faster recovery times, and more consistent surgical results.

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Suggest an Edit → | Last Verified: 2026-04-18 | First Added: 2026-04-18

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