QIAstat-Dx Rise
High-throughput syndromic testing with capacity for up to 160 samples per day, designed for fast, flexible infectious disease diagnostics.

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QIAstat-Dx Rise is a fully integrated molecular testing system designed to streamline syndromic diagnostics in demanding clinical laboratories. It delivers rapid, multiplex polymerase chain reaction (PCR) results with minimal hands-on time, supporting confident decision-making and efficient patient management.
Advanced syndromic testing performance
QIAstat-Dx Rise provides automated sample-to-result processing for multiple syndromic panels on a single platform, helping consolidate complex workflows. The system uses real-time polymerase chain reaction (PCR) technology to detect multiple pathogens from one sample, supporting accurate, clinically relevant insights. With built-in quality controls and standardized protocols, it promotes reproducible results across runs and operators.
Scalable, high-throughput workflow
Designed for medium- to high-throughput environments, QIAstat-Dx Rise can run multiple cartridges in parallel to accommodate fluctuating testing volumes. The intuitive interface and guided loading steps help reduce training time and support consistent operation across shifts. Connectivity options enable integration into existing laboratory information systems to simplify data transfer and reporting.
Practical design for routine use
Compact, modular construction allows QIAstat-Dx Rise to fit into a variety of laboratory layouts without major infrastructure changes. The closed-cartridge format helps limit contamination risk and supports safe handling of clinical specimens. Minimal maintenance requirements and remote monitoring capabilities help maximize uptime and optimize resource utilization.
Key features and benefits of QIAstat-Dx Rise:
- Automated, sample-to-result syndromic testing for streamlined molecular diagnostics
- Multiplex real-time polymerase chain reaction (PCR) detection of multiple targets from a single sample
- Parallel cartridge processing to support medium- to high-throughput laboratory needs
- User-friendly interface and guided workflows to reduce training and handling errors
- Closed, low-maintenance system design to enhance safety, uptime, and operational efficiency
















