iRhythm Technologies (Zio Service)
AI-driven cardiac monitoring for precision arrhythmia detection and clinical insight.
Advanced Liquid Biopsy for Rapid, Non-Invasive Pathogen Detection via Genomic Sequencing.
The Karius Test is a highly sophisticated diagnostic platform that utilizes Next-Generation Sequencing (NGS) to analyze microbial cell-free DNA (mcfDNA) from a single blood draw. By 2026, it has become a cornerstone in precision medicine, specifically for diagnosing complex infections in immunocompromised populations. The technical architecture involves sequencing plasma-derived DNA and comparing the sequences against a proprietary, massive database of over 1,000 pathogens, including bacteria, DNA viruses, fungi, and parasites. This approach bypasses the limitations of traditional culture methods, which often fail when pathogens are deep-seated or when patients have already begun antimicrobial therapy. The platform leverages advanced AI and machine learning algorithms to filter human DNA and environmental noise, focusing specifically on clinically relevant microbial signals. Positioned as a 'liquid biopsy for infection,' it provides quantitative results that correlate with pathogen burden, enabling clinicians to tailor antimicrobial stewardship effectively. In the current market, it is strategically integrated into hospital Laboratory Information Systems (LIS) to streamline diagnostic workflows for febrile neutropenia, endocarditis, and invasive fungal infections, significantly reducing the 'diagnostic odyssey' for critically ill patients.
Uses high-throughput NGS to identify fragments of microbial DNA circulating in the plasma.
AI-driven cardiac monitoring for precision arrhythmia detection and clinical insight.
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Precision oncology via high-fidelity liquid biopsy and AI-driven genomic profiling.
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Advanced AI-driven algorithms subtract human background DNA and filter environmental contaminants.
A curated genomic database including rare fungi, parasites, and DNA viruses.
Reports pathogen concentration in Molecules Per Microliter (MPM).
Optimized lab logistics and computational pipeline deliver results in ~26 hours from receipt.
Requires only a standard peripheral blood draw (plasma).
Provides data that supports the de-escalation of broad-spectrum antibiotics.
Patients with low white blood cell counts often have life-threatening infections that cultures cannot identify.
Registry Updated:2/7/2026
Heart valve infections are often slow-growing and difficult to culture.
Obtaining large volumes of blood for multiple cultures is difficult in neonates.