惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

MyScale Blog
MyScale Blog
F
Fortinet All Blogs
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
D
Docker
freeCodeCamp Programming Tutorials: Python, JavaScript, Git & More
爱范儿
爱范儿
V
Visual Studio Blog
Last Week in AI
Last Week in AI
WordPress大学
WordPress大学
aimingoo的专栏
aimingoo的专栏
小众软件
小众软件
L
LangChain Blog
Vercel News
Vercel News
阮一峰的网络日志
阮一峰的网络日志
IT之家
IT之家
P
Proofpoint News Feed
博客园_首页
D
DataBreaches.Net
T
The Blog of Author Tim Ferriss
The GitHub Blog
The GitHub Blog
酷 壳 – CoolShell
酷 壳 – CoolShell
C
Check Point Blog
Engineering at Meta
Engineering at Meta
Microsoft Azure Blog
Microsoft Azure Blog

Cisco Blogs

Cisco Live 2026: Bringing the Future of Customer Experience to Las Vegas Edge opportunity for service providers: Turn infrastructure into new services MRC and SRv6: How Foundational Networking Innovations Are Enabling the Next Generation of AI Supercomputers The SMB Marketing Reset: Winning Customer Trust in a Digital-First Economy Inside the SOC: AI-powered DNS defense against ransomware Our Path Forward Securing the Federal Digital Experience with Cisco ThousandEyes for Government Cisco at ONUG Dallas 2026: Securing the AI Data Center in the Agentic Era Cisco and Red Hat are powering intelligent core to edge: Red Hat Summit insights Building the Capabilities That Win: How Cisco Partners Can Lead in the SMB & Mid-Market Era How Two Hours Felt Bigger Than My To-Do List Announcing Foundry Security Spec Ace the CCIE Collaboration Lab: Success Tips from a TAC Engineer Turned CCIE Protecting Agents with Cisco AI Defense and Google Agent Development Kit Powering an Inclusive Future: Your guide to the Purpose Pavilion at Cisco Live Las Vegas The Infrastructure Behind the Mission: SOF Week 2026 Cisco Networking App Marketplace Partners at Cisco Live 2026 Beyond the Pilot: Building the Clinical Data Fabric for the Agentic Era Benchmarking scale-out AI fabrics with Cisco N9000 + AMD Pensando™ Pollara 400 NICs Month of Developer Productivity: Build and Forget The race to autonomous transport networks: A new study Lean IT, future-ready: How to save time and simplify wireless management with AI Reading Between the Pixels: Failure Modes in Vision Language Models Biochar’s triple win: Healthier soils, improved crops, and decarbonization Designing a Proactive Customer Journey Modernize your data center operations with Cisco Nexus Dashboard Why your automation stack needs Cisco Agentic Workflows Try Cisco AI Defense Explorer Edition in this hands-on lab From Bandwidth to Intelligence: How Cisco is Powering AI-Ready Networks Spotlight on digital transformation | FY25 Purpose Report
How connectivity is shaping the future of surgical care
Garif Yalak · 2026-04-29 · via Cisco Blogs

What if the future of surgery didn’t begin in an operating room – but in a fully connected digital sandbox?

Here at Cisco, we’re one step closer to making this vision a reality.

Why we need to rethink surgical training

Conventional surgical training is costly, time-intensive (requiring at least 13 years of training), and often dependent on real-world operating rooms and live patients.

In a country like Switzerland — home to the world’s second most expensive healthcare system — solutions that increase efficiency and training while improving outcomes aren’t optional; they are essential. With Switzerland’s aging population and rise in chronic diseases, the need for qualified surgeons is only accelerating.

The question becomes pressing: How do we train aspiring surgeons around the globe more effectively without compromising the safety of all involved?

The answer lies at the intersection of connectivity, real-time data collection, and digital innovation.

Introducing Operation Room-X

A surgical room.
OR-X at Balgrist University Hospital: A connected innovation environment where Cisco technology enables the next generation of surgical training and research.

At Balgrist University Hospital in Zurich, Switzerland, Cisco is exploring the art of what’s possible through OR-X, short for “Operation Room X.”

But OR-X isn’t just another surgical hub.

It’s a connected innovation environment designed for surgical training and research, powered behind the scenes by Cisco’s intelligent networking infrastructure.

Through Cisco’s Country Digital Acceleration program, in-kind and financial support helped to create a space where surgeons-in-training could test ideas, validate use cases, and build robust training models – all without compromising patient safety. OR-X includes:

  • Surgical training: Infrastructure for researchers to bring new innovations into surgical treatment for the first time.
  • Research & Development: Infrastructure for surgical training, allowing surgeons-in-training to practice in a simulated surgical environment.
  • Clinical Translation: A platform promoting clinical translation, allowing these innovations to be quickly and safely transferred into clinical practice.

But while the concept of OR-X is visionary, its success depends on something fundamental: reliable, secure connectivity.

The infrastructure behind the innovation

Cisco technology.
The backbone of innovation: Cisco Nexus 9316D-GX switches provide the resilient, high-speed connectivity required to power the OR-X digital ecosystem in real time.

Behind the scenes, Cisco’s data centers and resilient networking infrastructure enable OR-X to function as a flexible experimentation environment.

In the data center, Cisco Application Centric Infrastructure (ACI) with Nexus components enables efficient configuration, segmentation, and management. For wireless communication, the facility relies on the latest generation of Cisco Access Points using the Wi-Fi 6E standard.

Within the OR-X space, transmitter boxes capture and exchange audio and video streams in real time. This allows surgical procedures, simulations, and experiments to be recorded, analyzed, and shared instantly with researchers and trainees.

The result is a flexible, future-ready infrastructure capable of integrating any device or technology – from certified medical equipment to early-stage prototypes.

In practice, this means surgeons and innovators can test new surgical techniques, explore advanced visualization tools, and experiment with emerging technologies in a safe and controlled environment. The platform also enables performance analysis and cross-disciplinary collaboration, allowing clinicians, researchers, and medical technology developers to evaluate and refine new approaches before they reach clinical settings.

A blueprint for the future of healthcare innovation

This approach for OR-X has the potential to accelerate the development of surgical technologies while also improving training opportunities for future surgeons. This work sets a standard of excellence that other industry verticals can emulate, using Cisco as a benchmark.

It also demonstrates that solving healthcare’s most complex challenges requires more than standalone innovation. It requires collaboration between hospitals, governments, and technology providers — united by a shared digital blueprint.

Cisco technology is helping to power that very collaboration. Across more than 17,000 healthcare organizations worldwide, Cisco is helping healthcare systems modernize infrastructure, connect devices securely, and unlock new possibilities for patient care and surgical training.

At its core, this work is about more than just infrastructure.

It’s about enabling the next generation of surgeons and reducing strain on healthcare systems. It’s about designing a future where connectivity strengthens care without compromising safety.

At Cisco, our Purpose is to Power an Inclusive Future for All. That means ensuring that quality care — and the innovation that sustains it — is within reach for every community.

To learn more about how Cisco is powering the digital infrastructure that’s reshaping patient care, view our session from Cisco Live EMEA, “The Digital Health Blueprint: Uniting Government Policy and Strategic Investment.”

Explore this initiative and other Country Digital Acceleration (CDA) projects on our Interactive Map.