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Cyber Resilience for the Minimum Viable Hospital

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A ransomware attack impacts patient care, not just IT systems. 

Cohesity Data Cloud combined with HPE Zerto Software delivers resilience at scale, helping healthcare organizations stay operational throughout a cyberattack. The solution protects critical data and response plans from attackers, helps you identify what's safe to restore, and enables rapid recovery of your clinical systems to minimize disruption to patient care. 

What is a Minimum Viable Hospital? 

A minimum viable hospital (MVH) is a health system’s capability to restore its most critical clinical services to a trusted operational state, even when systems, records, and identities have been rendered untrustworthy or unavailable. That capability starts with the minimum set of trusted tools, credentials, and configurations required to initiate response, rebuild systems, and safely restore services that preserve the continuity of patient care: identity, EHR systems (Epic, Oracle Health, MEDITECH), imaging, labs, and critical subspecialty services. 


Why is a Minimum Viable Hospital important? 

The impact is clinical 

~75% of healthcare organizations reported patient care disruption due to cyberattacks 

The target is critical recovery systems  

Ransomware attacks shift to recovery denial - targeting backup infrastructure, identity systems, and virtualization management planes – so outages run longer and restoring safely gets harder. 

Knowing what matters isn't enough. You need the ability to bring critical clinical services back to a state you can trust.


How the Cohesity and HPE partnership helps operationalize your Minimum Viable Hospital  

A validated, joint architecture that combines Cohesity Data Cloud's AI-powered data security platform with HPE's production-grade infrastructure and HPE Zerto continuous data protection – so healthcare organizations can recover their clinical and operational ecosystem faster than any point solution on the market.

1. Isolated and trusted copy of your critical data – so you can recover even when everything else is compromised

Get a physically and logically air-gapped vault with Zero Trust architecture. No exposed management port. No single point of compromise. Hardened solution design with HPE's Silicon Root of Trust technology and locked immutable snapshots deliver a deeper level of security and a virtual air gap for increased resilience.

2. Advanced threat detection – find a safe and clean point in time to recover from

Continuously scan your backup data for threats, before an incident and during one. AI-driven anomaly detection, hash-based malware scanning, and threat intelligence feeds surface malware and suspicious activity in your backup data. When an incident hits, the same capabilities help identify safe recovery points.  

3. Clean room automation – investigate faster without risking reinfection

When an incident strikes, you need a safe place to rapidly respond without touching compromised production. Automate the provisioning of an isolated environment or clean room – where investigation, remediation, validation, recovery, and decisions happen. Restore essential response capabilities quickly so incident teams can initiate response during a crisis. Validate application health and security posture before returning systems to production. 

4. Rapid recovery for your MVH – with near-zero RPO

Get your critical services back to a trusted state rapidly – identity systems, Epic, Oracle Health, and MEDITECH databases, and imaging archives – with minimal data loss. Cohesity's orchestrated recovery on HPE hardware delivers rapid, large-scale restores, supporting both forensics and recovery efforts while HPE Zerto Software continuous data protection shrinks recovery time and recovery point objectives to near zero. The solution also supports Megafile (large-file parallelism) and Minion (small-file parallelism), enabling high-speed backup and restore of even the most demanding workloads. 

Learn More

Visit Cohesity and HPE to learn more about our joint solutions.

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